EBK SYSTEM DYNAMICS
EBK SYSTEM DYNAMICS
3rd Edition
ISBN: 8220100254963
Author: Palm
Publisher: MCG
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Chapter 3, Problem 3.19P

The geared system shown in Figure P3.19 represents an elevator system. The motor has an inertia I 1 and supplies a torque T 1 . Neglect the inertias of the gears, and assume that the cable does not slip on the pulley. Derive an expression for the equivalent inertia I e felt on the input shaft (shaft 1). Then derive the dynamic model of the system in terms of the speed ω 1 and the applied torque T 1 . The pulley radius is R.

Chapter 3, Problem 3.19P, The geared system shown in Figure P3.19 represents an elevator system. The motor has an inertia I1

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The geared system shown in the figure below represents an elevator system. The motor has an inertia I1 and supplies a torque T1. Neglect the inertias of the gears, and assume that the cable does not slip on the pulley. Identify an expression for the equivalent inertia Ie felt on the input shaft (shaft 1). Then identify the dynamic model of the system in terms of the speed ω1 and the applied torque T1. The pulley radius is R.
1. Find the differential equations for a fixed axis of rotation system shown in Figure 1. The inertia is in contact with a mass M attached via a spring of stiffness K to a fixed wall. The inertia-mass contact is subject to viscous friction of coefficient fv. The motion of the mass with respect to the horizontal floor is subject to the same viscous friction coefficient fv. The system input is a horizontal force f(t) on the mass M and the output is the rotation e(t)of the inertia. K fv fv Figure 1 J M A f(t)
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Chapter 3 Solutions

EBK SYSTEM DYNAMICS

Ch. 3 - The motor in Figure P3.11 lifts the mass mL by...Ch. 3 - Instead of using the system shown in Figure 3.2.6a...Ch. 3 - Consider the cart shown in Figure P3.13. Suppose...Ch. 3 - Consider the cart shown in Figure P3.13. Suppose...Ch. 3 - Consider the spur gears shown in Figure P3.15,...Ch. 3 - Consider the spur gears shown in Figure P3.15,...Ch. 3 - Derive the expression for the equivalent inertia...Ch. 3 - Prob. 3.18PCh. 3 - The geared system shown in Figure P3.19 represents...Ch. 3 - Prob. 3.20PCh. 3 - Prob. 3.21PCh. 3 - Prob. 3.22PCh. 3 - For the geared system shown in Figure P3.23,...Ch. 3 - For the geared system discussed in Problem 3.23,...Ch. 3 - The geared system shown in Figure P3.25 is similar...Ch. 3 - Consider the rack-and-pinion gear shown in Figure...Ch. 3 - The lead screw (also called a power screw or a...Ch. 3 - Prob. 3.29PCh. 3 - Derive the equation of motion of the block of mass...Ch. 3 - Assume the cylinder in Figure P3.31 rolls without...Ch. 3 - Prob. 3.33PCh. 3 - Prob. 3.34PCh. 3 - A slender rod 1.4 m long and of mass 20 kg is...Ch. 3 - Prob. 3.36PCh. 3 - Prob. 3.37PCh. 3 - The pendulum shown in Figure P3.38 consists of a...Ch. 3 - Prob. 3.39PCh. 3 - A single link of a robot arm is shown in Figure...Ch. 3 - 3.41 It is required to determine the maximum...Ch. 3 - Figure P3.42 illustrates a pendulum with a base...Ch. 3 - Figure P3.43 illustrates a pendulum with a base...Ch. 3 - 3.44 The overhead trolley shown in Figure P3.44 is...Ch. 3 - Prob. 3.45PCh. 3 - The “sky crane” shown on the text cover was a...
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