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energy exam in the roller coaster diagram above, at which point would t…

Question

energy exam
in the roller coaster diagram above, at which point would the kinetic energy of the cart be at its highest?

Explanation:

Step1: Recall the relationship between kinetic energy and potential energy

According to the law of conservation of mechanical energy (assuming no non - conservative forces like friction, \(E = K+U\), where \(E\) is the total mechanical energy, \(K=\frac{1}{2}mv^{2}\) is the kinetic energy and \(U = mgh\) is the gravitational potential energy (\(m\) is mass, \(v\) is velocity, \(g\) is the acceleration due to gravity and \(h\) is the height).

Step2: Analyze the height at each point

The gravitational potential energy \(U\) is directly proportional to the height \(h\) (\(U=mgh\)). At point \(c\), the height \(h\) of the roller - coaster cart is the lowest among points \(a\), \(b\), \(c\) and \(d\). Since \(E = K + U\) and \(E\) is constant (assuming no non - conservative forces), when \(U\) is the smallest, \(K\) is the largest.

Answer:

C. c