A roller coaster cart of mass m = 291 kg starts stationary at point A, where h1 = 35.2 m and a while later is at B, where h2 = 14.4 m. The acceleration of gravity is 9.8 m/s 2 . What is the potential energy of the cart relative to the ground at A? Answer in units of J. \ \ \ \ Part 2: What is the speed of the cart at B, ignoring the effect of friction? Answer in units of m/s.

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Step 1:

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(A)

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The initial velocity of the roller coaster at point A is 0 m/sec.

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Mass of the roller coaster cart is \"\".

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The height of mass at point A is \"\".

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The height of mass at point B is \"\".

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The acceleration due to gravity is 9.8 m/sec².

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Find the potential eneregy at point A.

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Potential energy at point A is \"\".

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\"\"

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\"\"

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Potential energy at point A is 100.38 kJ.

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Step 2:

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(B)

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Find the speed of the cart at point B.

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\"\"

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The speed of the cart at point B is \"\"

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Solution:

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(a) Potential energy at point A is 100.38 kJ.

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(b) The speed of the cart at point B is \"\"