A Hot Wheels car starts from rest on top of an inclined plane and rolls down the incline through a loop and along a horizontal surface. If we ignore the effect of friction and air resistance on the car, the work-energy bar Initial Energy + Work= Final Energy KE PEG PEs Who KE PEG PEs charts would look like this: Which of the work-energy bar charts would apply if we DID consider the effects of friction and air resistance?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A Hot Wheels car starts from rest on top of an inclined plane and rolls down the incline through a loop and along a horizontal
surface.
If we ignore the effect of friction and air resistance on the car, the work-energy bar
Initial Energy + Work=
KE PEG PEs Wnc
Final Energy
KE PE, PEs
charts would look like this:
Which of the work-energy bar charts would apply if we DID consider the effects of
friction and air resistance?
Initial Energy + Work= Final Energy
KE PE, PE, W
KE PE PE
Initial Energy + Work Final Energy
KE PE
PEPES
JI
0
Initial Energy + Work= Final Energy
E PE, PE; We
KE PE, PE
Initial Energy+Work = Final Energy
KE PE PE
Transcribed Image Text:A Hot Wheels car starts from rest on top of an inclined plane and rolls down the incline through a loop and along a horizontal surface. If we ignore the effect of friction and air resistance on the car, the work-energy bar Initial Energy + Work= KE PEG PEs Wnc Final Energy KE PE, PEs charts would look like this: Which of the work-energy bar charts would apply if we DID consider the effects of friction and air resistance? Initial Energy + Work= Final Energy KE PE, PE, W KE PE PE Initial Energy + Work Final Energy KE PE PEPES JI 0 Initial Energy + Work= Final Energy E PE, PE; We KE PE, PE Initial Energy+Work = Final Energy KE PE PE
Ben Laborin applies a force to push a crate from the bottom
of an inclined plane to the top at a constant speed.
The initial state is the crate in motion at the bottom of the hill
and the final state is the crate in motion at the top of the hill.
Ignore frictional effects.
x Clear ← Undo
Redo
Initial
Energy
KE PE
+ Work
KE¡ + PE¡ + Wext
↑
=
Final
Energy
KE PE
KEf + PEf
Transcribed Image Text:Ben Laborin applies a force to push a crate from the bottom of an inclined plane to the top at a constant speed. The initial state is the crate in motion at the bottom of the hill and the final state is the crate in motion at the top of the hill. Ignore frictional effects. x Clear ← Undo Redo Initial Energy KE PE + Work KE¡ + PE¡ + Wext ↑ = Final Energy KE PE KEf + PEf
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