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Question
a bottlenose dolphin (tursiops truncatus) is about (2.3\text{ m}) long and has a mass of (260\text{ kg}). it can jump (3.5\text{ m}) above the surface of the water while flipping nose-to-tail at (6.3\text{ rad/s}), fast enough to complete (1.5) rotations before landing in the water.
part a
how much energy must the dolphin generate to jump (3.5\text{ m}) above the surface of the water?
express your answer to two significant figures and include appropriate units.
part b
if the dolphins moment of inertia about its rotation axis is (300\text{ kg}cdot\text{m}^2), how much energy must the dolphin generate to rotate its body in this way?
express your answer to two significant figures and include appropriate units.
Calculate translational energy for the jump
Using the Conservation of Energy knowledge point
Calculate rotational kinetic energy
Using the Rotational Kinetic Energy knowledge point
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Question Part A
\(8.9 \times 10^3\text{ J}\)
Question Part B
\(6.0 \times 10^3\text{ J}\)