Deck 7: Logarithmic, Exponential, and Hyperbolic Functions

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Question
Find the derivative of y with respect to x, t, or ?, as appropriate

-y = ln(ln 8x)

A) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
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Question
Find the derivative of y with respect to x, t, or ?, as appropriate

-y = ln(cos(ln θ\theta )

A) -tan(ln θ\theta )
B) tan(ln θ\theta )
C)  <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(cos(ln  \theta )</strong> A) -tan(ln  \theta ) B) tan(ln \theta ) C)   D) -   <div style=padding-top: 35px>
D) -  <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(cos(ln  \theta )</strong> A) -tan(ln  \theta ) B) tan(ln \theta ) C)   D) -   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px>

A) -7 ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> + C
B) ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> + C
C) - <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> + C
D) - <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C <div style=padding-top: 35px>

A) 6 sin x + C
B) 6 ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C <div style=padding-top: 35px> + C
C) ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px>
B) ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> + C
B) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> + C
C) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px> dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)   <div style=padding-top: 35px>

A) - <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)   <div style=padding-top: 35px>
B) ln 2
C) <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 42 ln 3 B) -42 ln 3 C) 21 ln 3 D) -21 ln 3 <div style=padding-top: 35px>

A) 42 ln 3
B) -42 ln 3
C) 21 ln 3
D) -21 ln 3
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 2 ln 2 B) 2 ln 3 C) 4 ln 2 D) -2 ln 2 <div style=padding-top: 35px>

A) 2 ln 2
B) 2 ln 3
C) 4 ln 2
D) -2 ln 2
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C <div style=padding-top: 35px> dx

A) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C <div style=padding-top: 35px> + C
B) ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C <div style=padding-top: 35px> + C
C) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C <div style=padding-top: 35px> + C
D) -ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px>

A) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> + C
B) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> + C
C) 2 <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> + C
D) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> dx

A) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> + C
B) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> + C
C) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> dx

A) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
B) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
C) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px>

A) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> + C
B) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> + C
C) -6 <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) - 5 B) 14 C) 9 D) 5 <div style=padding-top: 35px> dx

A) - 5
B) 14
C) 9
D) 5
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C <div style=padding-top: 35px> + C
B) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C <div style=padding-top: 35px> + C
C) - <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e <div style=padding-top: 35px> <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e <div style=padding-top: 35px> 4x dx

A) e
B) - <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e <div style=padding-top: 35px>
D) 4e
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 1 - cos 1 B) 1 C) 1 + cos 1 D) -1 <div style=padding-top: 35px> dx

A) 1 - cos 1
B) 1
C) 1 + cos 1
D) -1
Question
Evaluate the integral.

- <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C <div style=padding-top: 35px>  d θ\theta

A)  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C <div style=padding-top: 35px>  + C
B)  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C <div style=padding-top: 35px>  + C
C) 4 ln (1 +  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C <div style=padding-top: 35px>  ) + C
D) ln (1 +  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C <div style=padding-top: 35px>  ) + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)   <div style=padding-top: 35px> dx

A) 21
B) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   <div style=padding-top: 35px> dx

A) 52,464
B) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3 <div style=padding-top: 35px> sin t dt

A) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3 <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3 <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3 <div style=padding-top: 35px>
D) 3
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px> dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
B) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
C) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C <div style=padding-top: 35px>

A) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C <div style=padding-top: 35px> + C
B) 1
C) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C <div style=padding-top: 35px> + C
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   <div style=padding-top: 35px> dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   <div style=padding-top: 35px> - 1
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   <div style=padding-top: 35px> + C
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   <div style=padding-top: 35px>
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6 <div style=padding-top: 35px> dt

A) <strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6 <div style=padding-top: 35px> - <strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6 <div style=padding-top: 35px>
B) 2 ln 6
C) 12
D) 6
Question
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 <div style=padding-top: 35px> dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 <div style=padding-top: 35px>
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 <div style=padding-top: 35px> + C
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 <div style=padding-top: 35px>
D) 8
Question
Solve the problem.

-A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that   to find the value of k in the equation  </strong> A) 0.00897 B) -0.00003 C) 0.00003 D) -0.01005 <div style=padding-top: 35px> to find the value of k in the equation <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that   to find the value of k in the equation  </strong> A) 0.00897 B) -0.00003 C) 0.00003 D) -0.01005 <div style=padding-top: 35px>

A) 0.00897
B) -0.00003
C) 0.00003
D) -0.01005
Question
Solve the problem.

-A certain radioactive isotope decays at a rate of 2% per 100 years. If t represents time in years and y represents the amount of the isotope left then the equation for the situation is <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 2% per 100 years. If t represents time in years and y represents the amount of the isotope left then the equation for the situation is   In how many years will there be 90% of the isotope left?</strong> A) 527 years B) 1000 years C) 500 years D) 246 years <div style=padding-top: 35px> In how many years will there be 90% of the isotope left?

A) 527 years
B) 1000 years
C) 500 years
D) 246 years
Question
Solve the problem.

-A loaf of bread is removed from an oven at <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min <div style=padding-top: 35px> and cooled in a room whose temperature is <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min <div style=padding-top: 35px> . If the bread cools to <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min <div style=padding-top: 35px> in 20 minutes, how much longer will it take the bread to cool to <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min <div style=padding-top: 35px>

A) 17 min
B) 4 min
C) 24 min
D) 5 min
Question
Solve the problem.

-In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g <div style=padding-top: 35px> , when t is measured in hours. If there are <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g <div style=padding-top: 35px> of reactant present when t = 0, how many grams will be left after <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g <div style=padding-top: 35px> ? Give your answer to the nearest tenth of a gram.

A) 3.7 g
B) 11 g
C) 7.3 g
D) 0.1 g
Question
Solve the problem.

-The charcoal from a tree killed in a volcanic eruption contained 64.7% of the <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years <div style=padding-top: 35px> found in living matter. How old is the tree, to the nearest year? Use <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years <div style=padding-top: 35px> for the half-life of <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years <div style=padding-top: 35px>

A) 1720 years
B) 5700 years
C) 3581 years
D) 2482 years
Question
Solve the problem.

-The barometric pressure p at an altitude of h miles above sea level satisfies the differential equation <strong>Solve the problem.  -The barometric pressure p at an altitude of h miles above sea level satisfies the differential equation   If the pressure at sea level is 29.92 inches of mercury, find the barometric pressure at 22,000 ft.</strong> A) 6.5 in. B) 68.85 in. C) 13 in. D) 0.37 in. <div style=padding-top: 35px> If the pressure at sea level is 29.92 inches of mercury, find the barometric pressure at 22,000 ft.

A) 6.5 in.
B) 68.85 in.
C) 13 in.
D) 0.37 in.
Question
Solve the problem.

-The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is, <strong>Solve the problem.  -The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is,   . If   for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.</strong> A) 2.1 hr B) 1.4 hr C) 0.3 hr D) 2.8 hr <div style=padding-top: 35px> . If <strong>Solve the problem.  -The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is,   . If   for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.</strong> A) 2.1 hr B) 1.4 hr C) 0.3 hr D) 2.8 hr <div style=padding-top: 35px> for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.

A) 2.1 hr
B) 1.4 hr
C) 0.3 hr
D) 2.8 hr
Question
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity using the definitions of hyperbolic functions. coth x = Write the word or phrase that best completes each statement or answers the question.  -Verify the identity using the definitions of hyperbolic functions. coth x =  <div style=padding-top: 35px>
Question
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity using the definitions of hyperbolic functions. coth (-x) = -coth x
Question
Write the word or phrase that best completes each statement or answers the question.

-Use the fundamental identity Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x<div style=padding-top: 35px> x - Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x<div style=padding-top: 35px> x = 1 to verify the identity. 1 - Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x<div style=padding-top: 35px> x = Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x<div style=padding-top: 35px> x
Question
Write the word or phrase that best completes each statement or answers the question.

-Derive the formula given that d/dx (cosh x) = sinh x and d/dx (sinh x) = cosh x. d/dx (coth x) = - Write the word or phrase that best completes each statement or answers the question.  -Derive the formula given that d/dx (cosh x) = sinh x and d/dx (sinh x) = cosh x. d/dx (coth x) = -   x <div style=padding-top: 35px> x
Question
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity. cosh( Write the word or phrase that best completes each statement or answers the question.  -Verify the identity. cosh(   x) =   , for all x<div style=padding-top: 35px> x) = Write the word or phrase that best completes each statement or answers the question.  -Verify the identity. cosh(   x) =   , for all x<div style=padding-top: 35px> , for all x
Question
Compute dy/dx for the function.

-y = sinh 7x

A) 7 cosh 6x
B) 7 cosh 7x
C) <strong>Compute dy/dx for the function.  -y = sinh 7x</strong> A) 7 cosh 6x B) 7 cosh 7x C)   D) 7 sinh 7x <div style=padding-top: 35px>
D) 7 sinh 7x
Question
Compute dy/dx for the function.

-y = <strong>Compute dy/dx for the function.  -y =   6x</strong> A) 2 cosh 6x B) 12 sinh 6x cosh 6x C) 2 sinh 6x cosh 6x D) 12 cosh 6x <div style=padding-top: 35px> 6x

A) 2 cosh 6x
B) 12 sinh 6x cosh 6x
C) 2 sinh 6x cosh 6x
D) 12 cosh 6x
Question
Compute dy/dx for the function.

-y = <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px>

A) - <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px>
B) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px>
C) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px>
D) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px> <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <div style=padding-top: 35px>
Question
Compute dy/dx for the function.

-y = ln sinh 5x

A) <strong>Compute dy/dx for the function.  -y = ln sinh 5x</strong> A)   B) coth 5x C) 5 coth 5x D) 5 csch 5x <div style=padding-top: 35px>
B) coth 5x
C) 5 coth 5x
D) 5 csch 5x
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C <div style=padding-top: 35px> cosh 8x + C
B) <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C <div style=padding-top: 35px> 8x + C
C) - <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C <div style=padding-top: 35px> cosh 8x + C
D) cosh 8x + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C <div style=padding-top: 35px> x + C
B) sech x tanh x + C
C) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C <div style=padding-top: 35px> + C
D) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C <div style=padding-top: 35px> x + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C <div style=padding-top: 35px> + C
B) <strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C <div style=padding-top: 35px> x + C
C) ln(1 + cosh x) + C
D) -ln(1 + cosh x) + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px> x + C
B) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px> x <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px> x + C
C) - <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px> + C
D) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C <div style=padding-top: 35px> + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <div style=padding-top: 35px> (Simplify the answer using the definitions of hyperbolic functions.)

A) <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <div style=padding-top: 35px> + C
B) x + <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <div style=padding-top: 35px> + C
C) <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <div style=padding-top: 35px> + C
D) cosh x + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> , x > 4

A) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> + C
B) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> + C
C) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> + C
D) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <div style=padding-top: 35px> + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
B) <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
C) - <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
D) - <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> , x < ln 4

A) <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> + C
B) - <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> + C
C) - <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> + C
D) <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <div style=padding-top: 35px> + C
Question
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px>

A) <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
B) <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
C) - <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
D) - <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <div style=padding-top: 35px> + C
Question
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)   <div style=padding-top: 35px>

A) - <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln   <div style=padding-top: 35px>

A) ln <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln   <div style=padding-top: 35px>
B) <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln   <div style=padding-top: 35px>
C) ln 2
D) ln <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln   <div style=padding-top: 35px>
Question
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28   <div style=padding-top: 35px>

A) -14
B) <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28   <div style=padding-top: 35px>
C) 14 <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28   <div style=padding-top: 35px>
D) 28 <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28   <div style=padding-top: 35px>
Question
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  -  (Give an approximate answer rounded to two decimal places if necessary.)</strong> A) 1 B) 0.71 C) 0.73 D) 0.75 <div style=padding-top: 35px> (Give an approximate answer rounded to two decimal places if necessary.)

A) 1
B) 0.71
C) 0.73
D) 0.75
Question
Find the value of the x-coordinate of the points at which the functions intersect, and approximate the area of the region described. Round to two decimal places when necessary.

-f(x) = sinh x, g(x) = tanh x; the region bounded by the graphs of f, g, and ln 5

A) x = 0; 0.54
B) x = 0; 0.22
C) x = 0; 1
D) x = 0; 0.64
Question
Evaluate the derivative.

-f(x) = <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px> <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the derivative.

-f(t) = 5 <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px> <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the derivative.

-f(v) = 3 <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px> <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the derivative.

-f(x) = <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   <div style=padding-top: 35px> ( 6/x)

A) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   <div style=padding-top: 35px>
B) - <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   <div style=padding-top: 35px>
C) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   <div style=padding-top: 35px>
D) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   <div style=padding-top: 35px>
Question
Evaluate the derivative.

-f(x) = 9 <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   <div style=padding-top: 35px> (cos x)

A) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   <div style=padding-top: 35px>
B) ln <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   <div style=padding-top: 35px> sin x
C) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   <div style=padding-top: 35px>
D) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   <div style=padding-top: 35px>
Question
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px>

A) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px> + 3)
B) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px> + <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px> )
C) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px> + 2)
D) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   <div style=padding-top: 35px>
Question
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px>

A) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px>
B) ln 2
C) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px>
D) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   <div style=padding-top: 35px>
Question
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   <div style=padding-top: 35px>

A) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   <div style=padding-top: 35px> - 1
B) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   <div style=padding-top: 35px>
C) ln 6
D) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   <div style=padding-top: 35px>
Question
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px>

A) - <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px>
B) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px>
C) -ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px>
D) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px> ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   <div style=padding-top: 35px>
Question
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) <div style=padding-top: 35px>

A) ln( 8 + 3 <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) <div style=padding-top: 35px> )
B) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) <div style=padding-top: 35px> )
C) ln 9
D) ln( 8 + <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) <div style=padding-top: 35px> )
Question
Solve the problem.

-Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms. <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px>

A) 22(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> ) + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> )
B) 22(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> )
C) 11(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> )
D) 66 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px> ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   <div style=padding-top: 35px>
Question
Solve the problem.

-When an object falling from rest encounters air resistance proportional to the square of its velocity, the distance it falls (in meters) after t seconds is given by <strong>Solve the problem.  -When an object falling from rest encounters air resistance proportional to the square of its velocity, the distance it falls (in meters) after t seconds is given by   where m is the mass of the object in kilograms, g = 9.8 m/s<sup>2</sup>  is the acceleration due to gravity, and k is a physical constant. A BASE jumper (m = 76kg)  leaps from a tall cliff and performs a ten-second delay (she free falls for 10 s and then opens her chute). How far does she fall in 10 s? Assume   k = 0.2 Round the answer to one decimal place if necessary. </strong> A) 14.5 m B) 331.2 m C) 361.9 m D) 72.4 m <div style=padding-top: 35px> where m is the mass of the object in kilograms, g = 9.8 m/s2 is the acceleration due to gravity, and k is a physical constant. A BASE jumper (m = 76kg) leaps from a tall cliff and performs a ten-second delay (she free falls for 10 s and then opens her chute). How far does she fall in 10 s? Assume k = 0.2 Round the answer to one decimal place if necessary.

A) 14.5 m
B) 331.2 m
C) 361.9 m
D) 72.4 m
Question
Solve the problem.

-A BASE jumper's velocity (in meters per second) after t seconds is given by <strong>Solve the problem.  -A BASE jumper's velocity (in meters per second) after t seconds is given by    where m is the mass of the object in kilograms, g = 9.8 m/ s<sup>2</sup> is the acceleration due to gravity, and k is a physical constant. How fast is the BASE jumper falling at the end of a  12 second delay? Use  m = 75kg  and  k = 0.2 Round the answer to one decimal place if necessary.   </strong> A) 19.2 m/s B) 58.2 m/s C) 63.2 m/s D) 698 m/s <div style=padding-top: 35px> where m is the mass of the object in kilograms, g = 9.8 m/ s2 is the acceleration due to gravity, and k is a physical constant. How fast is the BASE jumper falling at the end of a 12 second delay? Use m = 75kg and k = 0.2 Round the answer to one decimal place if necessary.



A) 19.2 m/s
B) 58.2 m/s
C) 63.2 m/s
D) 698 m/s
Question
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-coth 2

A) 3.7622
B) 0.964
C) 0.2658
D) 1.0373
Question
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -  5</strong> A) 1.0001 B) 0.9999 C) 0.2027 D) does not exist <div style=padding-top: 35px> 5

A) 1.0001
B) 0.9999
C) 0.2027
D) does not exist
Question
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -  9</strong> A) 4.0515 B) 0.0998 C) 0.0002 D) 0.1109 <div style=padding-top: 35px> 9

A) 4.0515
B) 0.0998
C) 0.0002
D) 0.1109
Question
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-csch x <strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -csch x  </strong> A) -2.9085 B) -1.571 C) 0.0371 D) -0.9103 <div style=padding-top: 35px>

A) -2.9085
B) -1.571
C) 0.0371
D) -0.9103
Question
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  - </strong> A) -0.1105 B) -0.0552 C) -0.2209 D) -0.0131 <div style=padding-top: 35px>

A) -0.1105
B) -0.0552
C) -0.2209
D) -0.0131
Question
Evaluate the expression without using a calculator, or state that the value does not exist. Simplify the answer to the extent possible.

-sech 0

A) 0
B) 1
C) 2
D) <strong>Evaluate the expression without using a calculator, or state that the value does not exist. Simplify the answer to the extent possible.  -sech 0</strong> A) 0 B) 1 C) 2 D)   <div style=padding-top: 35px>
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Deck 7: Logarithmic, Exponential, and Hyperbolic Functions
1
Find the derivative of y with respect to x, t, or ?, as appropriate

-y = ln(ln 8x)

A) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)
B) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)
C) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)
D) <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(ln 8x)</strong> A)   B)   C)   D)

2
Find the derivative of y with respect to x, t, or ?, as appropriate

-y = ln(cos(ln θ\theta )

A) -tan(ln θ\theta )
B) tan(ln θ\theta )
C)  <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(cos(ln  \theta )</strong> A) -tan(ln  \theta ) B) tan(ln \theta ) C)   D) -
D) -  <strong>Find the derivative of y with respect to x, t, or ?, as appropriate  -y = ln(cos(ln  \theta )</strong> A) -tan(ln  \theta ) B) tan(ln \theta ) C)   D) -
- -
3
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C

A) -7 ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C + C
B) ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C + C
C) - <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C + C
D) - <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C ln <strong>Evaluate the integral.  - </strong> A) -7 ln   + C B) ln   + C C) -   ln   + C D) -   ln   + C + C
- -   ln   + C ln -   ln   + C + C
4
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln

A) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln
B) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln
C) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln
D) <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B)   ln   C)   ln   D)   ln
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5
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C

A) 6 sin x + C
B) 6 ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C + C
C) ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C + C
D) <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C ln <strong>Evaluate the integral.  - </strong> A) 6 sin x + C B) 6 ln   + C C) ln   + C D)   ln   + C + C
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6
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln

A) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln
B) ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln
C) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln
D) <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln   ln <strong>Evaluate the integral.  - </strong> A)   ln   B) ln   C)   D)   ln
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7
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C

A) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C + C
B) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C + C
C) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C + C
D) <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C ln <strong>Evaluate the integral.  - </strong> A)   ln   + C B)   ln   + C C)   ln   + C D)   ln   + C + C
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8
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
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9
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)

A) - <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)
B) ln 2
C) <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)
D) <strong>Evaluate the integral.  - </strong> A) -   B) ln 2 C)   D)
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10
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 42 ln 3 B) -42 ln 3 C) 21 ln 3 D) -21 ln 3

A) 42 ln 3
B) -42 ln 3
C) 21 ln 3
D) -21 ln 3
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11
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) 2 ln 2 B) 2 ln 3 C) 4 ln 2 D) -2 ln 2

A) 2 ln 2
B) 2 ln 3
C) 4 ln 2
D) -2 ln 2
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12
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C dx

A) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C + C
B) ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C + C
C) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C + C
D) -ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B) ln   + C C) 2 ln   + C D) -ln   + C + C
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13
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C

A) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C + C
B) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C + C
C) 2 <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C + C
D) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) 2   + C D) -     + C + C
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14
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C dx

A) 2 ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C + C
B) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C + C
C) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C ln <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C + C
D) <strong>Evaluate the integral.  -  dx</strong> A) 2 ln   + C B)     + C C)   ln   + C D)   + C + C
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15
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C dx

A) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C + C
B) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C + C
C) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C + C
D) <strong>Evaluate the integral.  -  dx</strong> A)     + C B)   + C C)   + C D)   + C + C
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16
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C

A) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C + C
B) - <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C + C
C) -6 <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C + C
D) <strong>Evaluate the integral.  - </strong> A) -     + C B) -     + C C) -6   + C D)   + C + C
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17
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)

A)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)
B)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)
C)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)
D)
<strong>Evaluate the integral.  - </strong> A)   B)   C)   D)
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18
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) - 5 B) 14 C) 9 D) 5 dx

A) - 5
B) 14
C) 9
D) 5
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19
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C

A) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C + C
B) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C + C
C) - <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C) -   + C D)   + C + C
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20
Evaluate the integral.

-<strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e 4x dx

A) e
B) - <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e
C) <strong>Evaluate the integral.  -    4x dx</strong> A) e B) -   C)   D) 4e
D) 4e
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21
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 1 - cos 1 B) 1 C) 1 + cos 1 D) -1 dx

A) 1 - cos 1
B) 1
C) 1 + cos 1
D) -1
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22
Evaluate the integral.

- <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C  d θ\theta

A)  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C  + C
B)  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C  + C
C) 4 ln (1 +  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C  ) + C
D) ln (1 +  <strong>Evaluate the integral.  -  d \theta </strong> A)   + C B)   + C C) 4 ln (1 +   ) + C D) ln (1 +   ) + C  ) + C
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23
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)   dx

A) 21
B) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)
C) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)
D) <strong>Evaluate the integral.  -  dx </strong> A) 21 B)   C)   D)
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24
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   dx

A) 52,464
B) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)
C) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)   + C
D) <strong>Evaluate the integral.  -  dx</strong> A) 52,464 B)   C)   + C D)
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25
Evaluate the integral.

-<strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3 sin t dt

A) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3
B) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3
C) <strong>Evaluate the integral.  -  sin t dt</strong> A)   B)   C)   D) 3
D) 3
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26
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)   dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   C)   D)
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27
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C

A) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C + C
B) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C + C
C) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B)   + C C)   + C D)   + C + C
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28
Evaluate the integral.

-<strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C

A) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C + C
B) 1
C) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C + C
D) <strong>Evaluate the integral.  - </strong> A)   + C B) 1 C)   + C D)   + C + C
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29
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   - 1
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)   + C
D) <strong>Evaluate the integral.  -  dx</strong> A)   B)   - 1 C)   + C D)
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30
Evaluate the integral.

-<strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6 dt

A) <strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6 - <strong>Evaluate the integral.  -  dt</strong> A)   -   B) 2 ln 6 C) 12 D) 6
B) 2 ln 6
C) 12
D) 6
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31
Evaluate the integral.

-<strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 dx

A) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8
B) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8 + C
C) <strong>Evaluate the integral.  -  dx</strong> A)   B)   + C C)   D) 8
D) 8
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32
Solve the problem.

-A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that   to find the value of k in the equation  </strong> A) 0.00897 B) -0.00003 C) 0.00003 D) -0.01005 to find the value of k in the equation <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 1% per 300 years. If t represents time in years and y represents the amount of the isotope left, use the condition that   to find the value of k in the equation  </strong> A) 0.00897 B) -0.00003 C) 0.00003 D) -0.01005

A) 0.00897
B) -0.00003
C) 0.00003
D) -0.01005
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33
Solve the problem.

-A certain radioactive isotope decays at a rate of 2% per 100 years. If t represents time in years and y represents the amount of the isotope left then the equation for the situation is <strong>Solve the problem.  -A certain radioactive isotope decays at a rate of 2% per 100 years. If t represents time in years and y represents the amount of the isotope left then the equation for the situation is   In how many years will there be 90% of the isotope left?</strong> A) 527 years B) 1000 years C) 500 years D) 246 years In how many years will there be 90% of the isotope left?

A) 527 years
B) 1000 years
C) 500 years
D) 246 years
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34
Solve the problem.

-A loaf of bread is removed from an oven at <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min and cooled in a room whose temperature is <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min . If the bread cools to <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min in 20 minutes, how much longer will it take the bread to cool to <strong>Solve the problem.  -A loaf of bread is removed from an oven at   and cooled in a room whose temperature is   . If the bread cools to   in 20 minutes, how much longer will it take the bread to cool to  </strong> A) 17 min B) 4 min C) 24 min D) 5 min

A) 17 min
B) 4 min
C) 24 min
D) 5 min
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35
Solve the problem.

-In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g , when t is measured in hours. If there are <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g of reactant present when t = 0, how many grams will be left after <strong>Solve the problem.  -In a chemical reaction, the rate at which the amount of a reactant changes with time is proportional to the amount present, such that   , when t is measured in hours. If there are   of reactant present when t = 0, how many grams will be left after   ? Give your answer to the nearest tenth of a gram.</strong> A) 3.7 g B) 11 g C) 7.3 g D) 0.1 g ? Give your answer to the nearest tenth of a gram.

A) 3.7 g
B) 11 g
C) 7.3 g
D) 0.1 g
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36
Solve the problem.

-The charcoal from a tree killed in a volcanic eruption contained 64.7% of the <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years found in living matter. How old is the tree, to the nearest year? Use <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years for the half-life of <strong>Solve the problem.  -The charcoal from a tree killed in a volcanic eruption contained 64.7% of the   found in living matter. How old is the tree, to the nearest year? Use   for the half-life of  </strong> A) 1720 years B) 5700 years C) 3581 years D) 2482 years

A) 1720 years
B) 5700 years
C) 3581 years
D) 2482 years
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37
Solve the problem.

-The barometric pressure p at an altitude of h miles above sea level satisfies the differential equation <strong>Solve the problem.  -The barometric pressure p at an altitude of h miles above sea level satisfies the differential equation   If the pressure at sea level is 29.92 inches of mercury, find the barometric pressure at 22,000 ft.</strong> A) 6.5 in. B) 68.85 in. C) 13 in. D) 0.37 in. If the pressure at sea level is 29.92 inches of mercury, find the barometric pressure at 22,000 ft.

A) 6.5 in.
B) 68.85 in.
C) 13 in.
D) 0.37 in.
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38
Solve the problem.

-The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is, <strong>Solve the problem.  -The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is,   . If   for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.</strong> A) 2.1 hr B) 1.4 hr C) 0.3 hr D) 2.8 hr . If <strong>Solve the problem.  -The amount of alcohol in the bloodstream, A, declines at a rate proportional to the amount, that is,   . If   for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.</strong> A) 2.1 hr B) 1.4 hr C) 0.3 hr D) 2.8 hr for a particular person, how long will it take for his alcohol concentration to decrease from 0.10% to 0.05%? Give your answer to the nearest tenth of an hour.

A) 2.1 hr
B) 1.4 hr
C) 0.3 hr
D) 2.8 hr
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39
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity using the definitions of hyperbolic functions. coth x = Write the word or phrase that best completes each statement or answers the question.  -Verify the identity using the definitions of hyperbolic functions. coth x =
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40
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity using the definitions of hyperbolic functions. coth (-x) = -coth x
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41
Write the word or phrase that best completes each statement or answers the question.

-Use the fundamental identity Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x x - Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x x = 1 to verify the identity. 1 - Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x x = Write the word or phrase that best completes each statement or answers the question.  -Use the fundamental identity   x -   x = 1 to verify the identity. 1 -   x =   x x
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42
Write the word or phrase that best completes each statement or answers the question.

-Derive the formula given that d/dx (cosh x) = sinh x and d/dx (sinh x) = cosh x. d/dx (coth x) = - Write the word or phrase that best completes each statement or answers the question.  -Derive the formula given that d/dx (cosh x) = sinh x and d/dx (sinh x) = cosh x. d/dx (coth x) = -   x x
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43
Write the word or phrase that best completes each statement or answers the question.

-Verify the identity. cosh( Write the word or phrase that best completes each statement or answers the question.  -Verify the identity. cosh(   x) =   , for all x x) = Write the word or phrase that best completes each statement or answers the question.  -Verify the identity. cosh(   x) =   , for all x , for all x
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44
Compute dy/dx for the function.

-y = sinh 7x

A) 7 cosh 6x
B) 7 cosh 7x
C) <strong>Compute dy/dx for the function.  -y = sinh 7x</strong> A) 7 cosh 6x B) 7 cosh 7x C)   D) 7 sinh 7x
D) 7 sinh 7x
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45
Compute dy/dx for the function.

-y = <strong>Compute dy/dx for the function.  -y =   6x</strong> A) 2 cosh 6x B) 12 sinh 6x cosh 6x C) 2 sinh 6x cosh 6x D) 12 cosh 6x 6x

A) 2 cosh 6x
B) 12 sinh 6x cosh 6x
C) 2 sinh 6x cosh 6x
D) 12 cosh 6x
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46
Compute dy/dx for the function.

-y = <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)

A) - <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)
B) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)
C) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)
D) <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)     <strong>Compute dy/dx for the function.  -y =  </strong> A) -   B)   C)   D)
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47
Compute dy/dx for the function.

-y = ln sinh 5x

A) <strong>Compute dy/dx for the function.  -y = ln sinh 5x</strong> A)   B) coth 5x C) 5 coth 5x D) 5 csch 5x
B) coth 5x
C) 5 coth 5x
D) 5 csch 5x
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48
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C

A) <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C cosh 8x + C
B) <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C 8x + C
C) - <strong>Determine the indefinite integral.  - </strong> A)   cosh 8x + C B)   8x + C C) -   cosh 8x + C D) cosh 8x + C cosh 8x + C
D) cosh 8x + C
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49
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C

A) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C x + C
B) sech x tanh x + C
C) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C + C
D) <strong>Determine the indefinite integral.  - </strong> A)   x + C B) sech x tanh x + C C)   + C D)   x + C x + C
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50
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C

A) <strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C + C
B) <strong>Determine the indefinite integral.  - </strong> A)   + C B)   x + C C) ln(1 + cosh x) + C D) -ln(1 + cosh x) + C x + C
C) ln(1 + cosh x) + C
D) -ln(1 + cosh x) + C
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51
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C

A) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C x + C
B) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C x <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C x + C
C) - <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C + C
D) <strong>Determine the indefinite integral.  - </strong> A)   x + C B)   x   x + C C) -   + C D)   + C + C
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52
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C (Simplify the answer using the definitions of hyperbolic functions.)

A) <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C + C
B) x + <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C + C
C) <strong>Determine the indefinite integral.  -    (Simplify the answer using the definitions of hyperbolic functions.)</strong> A)   + C B) x +   + C C)   + C D) cosh x + C + C
D) cosh x + C
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53
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C , x > 4

A) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C + C
B) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C + C
C) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C + C
D) <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C <strong>Determine the indefinite integral.  -  , x > 4</strong> A)       + C B)     + C C)     + C D)       + C + C
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54
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C

A) <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C + C
B) <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C + C
C) - <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C + C
D) - <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)     + C B)     + C C) -       + C D) -       + C + C
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55
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C , x < ln 4

A) <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C + C
B) - <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C + C
C) - <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C + C
D) <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C <strong>Determine the indefinite integral.  -  , x < ln 4</strong> A)       + C B) -       + C C) -       + C D)     + C + C
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56
Determine the indefinite integral.

-<strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C

A) <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C + C
B) <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C + C
C) - <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C + C
D) - <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C <strong>Determine the indefinite integral.  - </strong> A)       + C B)     + C C) -       + C D) -       + C + C
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57
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)

A) - <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)
B) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)
C) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)
D) <strong>Evaluate the definite integral.  - </strong> A) -   B)   C)   D)
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58
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln

A) ln <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln
B) <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln
C) ln 2
D) ln <strong>Evaluate the definite integral.  - </strong> A) ln   B)   C) ln 2 D) ln
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59
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28

A) -14
B) <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28
C) 14 <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28
D) 28 <strong>Evaluate the definite integral.  - </strong> A) -14 B)   C) 14   D) 28
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60
Evaluate the definite integral.

-<strong>Evaluate the definite integral.  -  (Give an approximate answer rounded to two decimal places if necessary.)</strong> A) 1 B) 0.71 C) 0.73 D) 0.75 (Give an approximate answer rounded to two decimal places if necessary.)

A) 1
B) 0.71
C) 0.73
D) 0.75
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61
Find the value of the x-coordinate of the points at which the functions intersect, and approximate the area of the region described. Round to two decimal places when necessary.

-f(x) = sinh x, g(x) = tanh x; the region bounded by the graphs of f, g, and ln 5

A) x = 0; 0.54
B) x = 0; 0.22
C) x = 0; 1
D) x = 0; 0.64
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62
Evaluate the derivative.

-f(x) = <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)   <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)

A) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)
B) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)
C) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)
D) <strong>Evaluate the derivative.  -f(x) =    </strong> A)   B)   C)   D)
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63
Evaluate the derivative.

-f(t) = 5 <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)   <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)

A) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)
B) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)
C) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)
D) <strong>Evaluate the derivative.  -f(t) = 5    </strong> A)   B)   C)   D)
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64
Evaluate the derivative.

-f(v) = 3 <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)   <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)

A) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)
B) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)
C) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)
D) <strong>Evaluate the derivative.  -f(v) = 3    </strong> A)   B)   C)   D)
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65
Evaluate the derivative.

-f(x) = <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)   ( 6/x)

A) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)
B) - <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)
C) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)
D) <strong>Evaluate the derivative.  -f(x) =   ( 6/x)</strong> A)   B) -   C)   D)
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66
Evaluate the derivative.

-f(x) = 9 <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   (cos x)

A) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -
B) ln <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -   sin x
C) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -
D) - <strong>Evaluate the derivative.  -f(x) = 9   (cos x)</strong> A) -   B) ln   sin x C) -   D) -
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67
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln

A) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   + 3)
B) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   + <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   )
C) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln   + 2)
D) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln(   + 3) B) ln(   +   ) C) ln(   + 2) D) ln
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68
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln

A) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln
B) ln 2
C) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln
D) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A)   ln   B) ln 2 C) ln   D)   ln
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69
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln

A) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   - 1
B) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln
C) ln 6
D) ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln   - 1 B)   ln   C) ln 6 D) ln
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70
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln

A) - <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln
B) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln
C) -ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln
D) <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln   ln <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) -   ln   B)   ln   C) -ln   D)   ln
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71
Evaluate the definite integral. Express the answer in terms of natural logarithms.

-<strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   )

A) ln( 8 + 3 <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) )
B) ln( <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) )
C) ln 9
D) ln( 8 + <strong>Evaluate the definite integral. Express the answer in terms of natural logarithms.  - </strong> A) ln( 8 + 3   ) B) ln(   ) C) ln 9 D) ln( 8 +   ) )
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72
Solve the problem.

-Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms. <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -

A) 22(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   ) + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   )
B) 22(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   )
C) 11(3 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   )
D) 66 ln(3 + <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -   ) - <strong>Solve the problem.  -Find the volume interior to the inverted catenary kiln (an oven used to fire pottery) shown in the figure. Give an exact answer in terms of logarithms.  </strong> A) 22(3 ln(3 +   ) +   ) B) 22(3 ln(3 +   ) -   ) C) 11(3 ln(3 +   ) -   ) D) 66 ln(3 +   ) -
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73
Solve the problem.

-When an object falling from rest encounters air resistance proportional to the square of its velocity, the distance it falls (in meters) after t seconds is given by <strong>Solve the problem.  -When an object falling from rest encounters air resistance proportional to the square of its velocity, the distance it falls (in meters) after t seconds is given by   where m is the mass of the object in kilograms, g = 9.8 m/s<sup>2</sup>  is the acceleration due to gravity, and k is a physical constant. A BASE jumper (m = 76kg)  leaps from a tall cliff and performs a ten-second delay (she free falls for 10 s and then opens her chute). How far does she fall in 10 s? Assume   k = 0.2 Round the answer to one decimal place if necessary. </strong> A) 14.5 m B) 331.2 m C) 361.9 m D) 72.4 m where m is the mass of the object in kilograms, g = 9.8 m/s2 is the acceleration due to gravity, and k is a physical constant. A BASE jumper (m = 76kg) leaps from a tall cliff and performs a ten-second delay (she free falls for 10 s and then opens her chute). How far does she fall in 10 s? Assume k = 0.2 Round the answer to one decimal place if necessary.

A) 14.5 m
B) 331.2 m
C) 361.9 m
D) 72.4 m
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74
Solve the problem.

-A BASE jumper's velocity (in meters per second) after t seconds is given by <strong>Solve the problem.  -A BASE jumper's velocity (in meters per second) after t seconds is given by    where m is the mass of the object in kilograms, g = 9.8 m/ s<sup>2</sup> is the acceleration due to gravity, and k is a physical constant. How fast is the BASE jumper falling at the end of a  12 second delay? Use  m = 75kg  and  k = 0.2 Round the answer to one decimal place if necessary.   </strong> A) 19.2 m/s B) 58.2 m/s C) 63.2 m/s D) 698 m/s where m is the mass of the object in kilograms, g = 9.8 m/ s2 is the acceleration due to gravity, and k is a physical constant. How fast is the BASE jumper falling at the end of a 12 second delay? Use m = 75kg and k = 0.2 Round the answer to one decimal place if necessary.



A) 19.2 m/s
B) 58.2 m/s
C) 63.2 m/s
D) 698 m/s
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75
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-coth 2

A) 3.7622
B) 0.964
C) 0.2658
D) 1.0373
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76
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -  5</strong> A) 1.0001 B) 0.9999 C) 0.2027 D) does not exist 5

A) 1.0001
B) 0.9999
C) 0.2027
D) does not exist
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77
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -  9</strong> A) 4.0515 B) 0.0998 C) 0.0002 D) 0.1109 9

A) 4.0515
B) 0.0998
C) 0.0002
D) 0.1109
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78
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-csch x <strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  -csch x  </strong> A) -2.9085 B) -1.571 C) 0.0371 D) -0.9103

A) -2.9085
B) -1.571
C) 0.0371
D) -0.9103
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79
Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.

-<strong>Use a calculator to evaluate the expression, or state that the value does not exist. Round the answer to four decimal places when necessary.  - </strong> A) -0.1105 B) -0.0552 C) -0.2209 D) -0.0131

A) -0.1105
B) -0.0552
C) -0.2209
D) -0.0131
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80
Evaluate the expression without using a calculator, or state that the value does not exist. Simplify the answer to the extent possible.

-sech 0

A) 0
B) 1
C) 2
D) <strong>Evaluate the expression without using a calculator, or state that the value does not exist. Simplify the answer to the extent possible.  -sech 0</strong> A) 0 B) 1 C) 2 D)
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Unlock Deck
Unlock for access to all 85 flashcards in this deck.