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The Velocity (Measured in Meters Per Second) of an Air-Dropped \ge

Question 2

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The velocity (measured in meters per second) of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t) = 57.2 tanh(0.12t) , t \ge 3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t) traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.
 The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh


A) 57.2 tanh(0.12 × (3.0 + 0.05) )
B) 57.2 tanh  The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh
C)  The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh   tanh(3.0 + 0.05)
D) 57.2 tanh  The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh
E)  The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh   tanh  The velocity (measured in meters per second)  of an air-dropped container of food and supplies affixed to a parachute is described by the function v(t)  = 57.2 tanh(0.12t) , t  \ge  3.0, where t is measured in seconds. You are interested in approximating the vertical distance s(t)  traveled by the package by time t = 3.05 seconds.Using a step size of h = 0.05 seconds, compute the vertical distance traveled in the first 3.05 seconds.   A)  57.2 tanh(0.12 × (3.0 + 0.05) )  B)  57.2 tanh   C)    tanh(3.0 + 0.05)  D)  57.2 tanh   E)    tanh

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