Biomechanical engineers developing artificial limbs for prosthetic and robotic applications have developed a two-spring design for their replacement Achilles tendon. The first spring has constant k and the second ak , where a > 1. When the artificial tendon is stretched from x = 0 to x = x 1 , only the first spring is engaged. For x > x 1 a mechanism engages the second spring, giving a configuration like that described in part (a) of Chapter 4’s Problem 62. Find an expression for the energy stored in the artificial tendon when it’s stretched a distance 2 x 1 .
Biomechanical engineers developing artificial limbs for prosthetic and robotic applications have developed a two-spring design for their replacement Achilles tendon. The first spring has constant k and the second ak , where a > 1. When the artificial tendon is stretched from x = 0 to x = x 1 , only the first spring is engaged. For x > x 1 a mechanism engages the second spring, giving a configuration like that described in part (a) of Chapter 4’s Problem 62. Find an expression for the energy stored in the artificial tendon when it’s stretched a distance 2 x 1 .
Biomechanical engineers developing artificial limbs for prosthetic and robotic applications have developed a two-spring design for their replacement Achilles tendon. The first spring has constant k and the second ak, where a > 1. When the artificial tendon is stretched from x = 0 to x = x1, only the first spring is engaged. For x > x1 a mechanism engages the second spring, giving a configuration like that described in part (a) of Chapter 4’s Problem 62. Find an expression for the energy stored in the artificial tendon when it’s stretched a distance 2x1.
19. Mount Everest, Earth's highest mountain above sea level, has a peak of 8849 m above sea level. Assume
that sea level defines the height of Earth's surface.
(re
= 6.38 × 106 m, ME =
5.98 × 1024 kg, G = 6.67 × 10
-11
Nm²/kg²)
a. Calculate the strength of Earth's gravitational field at a point at the peak of Mount Everest.
b. What is the ratio of the strength of Earth's gravitational field at a point 644416m below the surface of
the Earth to a point at the top of Mount Everest?
C.
A tourist watching the sunrise on top of Mount Everest observes a satellite orbiting Earth at an altitude
3580 km above his position. Determine the speed of the satellite.
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Work and Energy - Physics 101 / AP Physics 1 Review with Dianna Cowern; Author: Physics Girl;https://www.youtube.com/watch?v=rKwK06stPS8;License: Standard YouTube License, CC-BY