Chapter 6: Q6-5P (page 138)
(II) What is the minimum work needed to push a 950-kg car 710 m up along a 9.0° incline? Ignore friction?
Short Answer
The obtained value of work done is \(1.0 \times {10^6}\;{\rm{J}}\).
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Chapter 6: Q6-5P (page 138)
(II) What is the minimum work needed to push a 950-kg car 710 m up along a 9.0° incline? Ignore friction?
The obtained value of work done is \(1.0 \times {10^6}\;{\rm{J}}\).
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(III) A cyclist intends to cycle up a 7.50° hill whose vertical height is 125 m. The pedals turn in a circle of diameter 36.0 cm. Assuming the mass of bicycle plus person is 75.0 kg, (a) calculate how much work must be done against gravity. (b) If each complete revolution of the pedals moves the bike 5.10 m along its path, calculate the average force that must be exerted on the pedals tangent to their circular path. Neglect work done by friction and other losses.
A sphere and a cylinder have the same radius and the same mass. They start from rest at the top of an incline. (a) Which reaches the bottom first? (b) Which has the greater speed at the bottom? (c) Which has the greater total kinetic energy at the bottom? (d) Which has the greater rotational kinetic energy? Explain your answers.
(II) An outboard motor for a boat is rated at 35 hp. If it can move a particular boat at a steady speed of 35 km/h,what is the total force resisting the motion of the boat?
You have two springs that are identical except that spring 1 is stiffer than spring 2 \(\left( {{k_{\bf{1}}}{\bf{ > }}{k_{\bf{2}}}} \right)\). On which spring is more work done: (a) if they are stretched using the same force; (b) if they are stretched the same distance?
A rectangular block of wood floats in a calm lake. Show that, if friction is ignored, when the block is pushed gently down into the water and then released, it will then oscillate with SHM. Also, determine an equation for the force constant.
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