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Use the Position Equation to Write a Function That

Question 37

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Use the position equation Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     to write a function that represents the situation and give the average velocity of the object from time t1 to time t2. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second.
T1 = 1, t2 = 5


A) Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)
B) Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)
C) Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)
D) Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)
E) Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)     Use the position equation   to write a function that represents the situation and give the average velocity of the object from time t<sub>1</sub> to time t<sub>2</sub>. An object is thrown upward from a height of 174 feet at a velocity of 1 feet per second. T<sub>1</sub> = 1, t<sub>2</sub> = 5 A)      B)      C)      D)      E)

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