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  3. Study Set
    Calculus A Complete Course
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    Exam 7: Techniques of Integration
  5. Question
    Let G(x) = Dt\(\approx\) 085562, G(x) = B) G(1)
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Let G(x) = Dt ≈\approx≈ 085562, G(x) =
B) G(1)

Question 82

Question 82

Multiple Choice

Let G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1) correct to 5 decimal places, and also to calculate  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) .


A) G(1) ≈\approx≈ 0.85562,  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =
B) G(1) ≈\approx≈ 0.85558,  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =
C) G(1) ≈\approx≈ 0.74682,  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =    Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =
D) G(1) ≈\approx≈ 0.74685,  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =    Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =
E) G(1) ≈\approx≈ 0.87649,  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =   G(x) =  Let G(x)  =   dt. Use Maple or another computer algebra system to calculate G(1)  correct to 5 decimal places, and also to calculate   G(x) . A)  G(1)   \approx  0.85562,   G(x)  =   B)  G(1)   \approx  0.85558,   G(x)  =   C)  G(1)   \approx  0.74682,   G(x)  =     D)  G(1)   \approx  0.74685,   G(x)  =     E)  G(1)   \approx  0.87649,   G(x)  =

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