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2. Energy on an Incline Plane. A wheel is initially positioned at A, at the top of an incline plane. The wheel is released and

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2. Energy on an Incline Plane. A wheel is initially positioned at A, at the top of an incline plane. The wheel is released and it rolls down the incline plane from position A to position F at the bottom of the incline. Answer the questions about the conversion of GPE to KE as the ball freefalls to the ground. Friction is negligible. Choose the best answer that describes the energy relationship of the moving wheel. E 7. At Position A, TOTAL ENERGY - A. 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE 8. At Position B, TOTAL ENERGY = A, 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE 9. At Position C, TOTAL ENERGY = A. 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE 10. At Position D, TOTAL ENERGY = A. 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE 11. At Position E, TOTAL ENERGY = A. 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE 12. At Position F, TOTAL ENERGY = A. 100% GPE + 0 KE C. 50% GPE + 50% KE E. GPE KE Follow Up Questions A. Which two forms of kinetic energy does the wheel have? B. Describe the wheel's motion at Position A (release) C. At position C, the wheel has GPE than KE because

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