Deck 2: Limits and Derivatives

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Differentiate. Differentiate.  <div style=padding-top: 35px>
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The position function of a particle is given by The position function of a particle is given by  <div style=padding-top: 35px>
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Find an equation of the tangent line to the given curve at the indicated point. Find an equation of the tangent line to the given curve at the indicated point.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of
intersection of the curves.Show that the curves of the given equations are orthogonal. Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of intersection of the curves.Show that the curves of the given equations are orthogonal.  <div style=padding-top: 35px>
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Differentiate. Differentiate.  <div style=padding-top: 35px>
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.  <div style=padding-top: 35px>
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Two chemicals react to form another chemical.Suppose that the amount of chemical formed in
time t (in hours) is given by Two chemicals react to form another chemical.Suppose that the amount of chemical formed in time t (in hours) is given by  <div style=padding-top: 35px>
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Find an equation of the tangent line to the curve Find an equation of the tangent line to the curve  <div style=padding-top: 35px>
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Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of
intersection of the curves.Show that the curves of the given equations are orthogonal. Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of intersection of the curves.Show that the curves of the given equations are orthogonal.  <div style=padding-top: 35px>
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In an adiabatic process (one in which no heat transfer takes place), the pressure P and volume V of an ideal gas such as oxygen satisfy the equation In an adiabatic process (one in which no heat transfer takes place), the pressure P and volume V of an ideal gas such as oxygen satisfy the equation  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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The mass of the part of a metal rod that lies between its left end and a point x meters to the right is The mass of the part of a metal rod that lies between its left end and a point x meters to the right is  <div style=padding-top: 35px>
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The cost (in dollars) of producing x units of a certain commodity is The cost (in dollars) of producing x units of a certain commodity is  <div style=padding-top: 35px>
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Differentiate. Differentiate.  <div style=padding-top: 35px>
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Use implicit differentiation to find an equation of the tangent line to the curve at the given point. Use implicit differentiation to find an equation of the tangent line to the curve at the given point.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Find the derivative of the function. Find the derivative of the function.  <div style=padding-top: 35px>
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Deck 2: Limits and Derivatives
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Differentiate. Differentiate.
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The position function of a particle is given by The position function of a particle is given by
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Find an equation of the tangent line to the given curve at the indicated point. Find an equation of the tangent line to the given curve at the indicated point.
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Find the derivative of the function. Find the derivative of the function.
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Find the derivative of the function. Find the derivative of the function.
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14
Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of
intersection of the curves.Show that the curves of the given equations are orthogonal. Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of intersection of the curves.Show that the curves of the given equations are orthogonal.
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Differentiate. Differentiate.
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.
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Find the derivative of the function. Find the derivative of the function.
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.
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Two chemicals react to form another chemical.Suppose that the amount of chemical formed in
time t (in hours) is given by Two chemicals react to form another chemical.Suppose that the amount of chemical formed in time t (in hours) is given by
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Find an equation of the tangent line to the curve Find an equation of the tangent line to the curve
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39
Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of
intersection of the curves.Show that the curves of the given equations are orthogonal. Two curves are said to be orthogonal if their tangent lines are perpendicular at each point of intersection of the curves.Show that the curves of the given equations are orthogonal.
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44
In an adiabatic process (one in which no heat transfer takes place), the pressure P and volume V of an ideal gas such as oxygen satisfy the equation In an adiabatic process (one in which no heat transfer takes place), the pressure P and volume V of an ideal gas such as oxygen satisfy the equation
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Find the derivative of the function. Find the derivative of the function.
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The mass of the part of a metal rod that lies between its left end and a point x meters to the right is The mass of the part of a metal rod that lies between its left end and a point x meters to the right is
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The cost (in dollars) of producing x units of a certain commodity is The cost (in dollars) of producing x units of a certain commodity is
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56
Differentiate. Differentiate.
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Find the differential of the function at the indicated number. Find the differential of the function at the indicated number.
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Find the derivative of the function. Find the derivative of the function.
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65
Use implicit differentiation to find an equation of the tangent line to the curve at the given point. Use implicit differentiation to find an equation of the tangent line to the curve at the given point.
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Find the derivative of the function. Find the derivative of the function.
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Find the derivative of the function. Find the derivative of the function.
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