17 An object of mass m is lifted a vertical distance h above the surface of Earth at constant speed v in time t. The total gravitational potential energy with respect to Earth's surface gained by the object is equal to the (1) average force applied to the object (2) total weight of the object (3) total work done on the object (4) total momentum gained by the object
17 An object of mass m is lifted a vertical distance h above the surface of Earth at constant speed v in time t. The total gravitational potential energy with respect to Earth's surface gained by the object is equal to the (1) average force applied to the object (2) total weight of the object (3) total work done on the object (4) total momentum gained by the object
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![17 An object of mass m is lifted a vertical distance h
above the surface of Earth at constant speed v in
time t. The total gravitational potential energy
with respect to Earth's surface gained by the
object is equal to the
(1) average force applied to the object
(2) total weight of the object
(3) total work done on the object
(4) total momentum gained by the object](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fae2b771b-bf91-4711-b684-71d4ef66645a%2Fcea80652-d693-481d-83d1-2cb0ab7ef8a8%2Fda3gng8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:17 An object of mass m is lifted a vertical distance h
above the surface of Earth at constant speed v in
time t. The total gravitational potential energy
with respect to Earth's surface gained by the
object is equal to the
(1) average force applied to the object
(2) total weight of the object
(3) total work done on the object
(4) total momentum gained by the object
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