VECTOR MECH. ENG. STATICS W/CONNECT >BI
VECTOR MECH. ENG. STATICS W/CONNECT >BI
12th Edition
ISBN: 9781260585612
Author: BEER
Publisher: MCG
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Chapter 10, Problem 10.101RP

Determine the vertical force P that must be applied at G to maintain the equilibrium of the linkage.

Chapter 10, Problem 10.101RP, Determine the vertical force P that must be appliedat G to maintain the equilibrium of the linkage.

Fig. P10.101 and P10.102

Expert Solution & Answer
Check Mark
To determine

Find the vertical force P that should be applied at G for which the equilibrium is maintained.

Answer to Problem 10.101RP

The vertical force P required for the equilibrium is 60.0lb()_.

Explanation of Solution

Show the free-body diagram of the arrangement as in Figure 1.

VECTOR MECH. ENG. STATICS W/CONNECT >BI, Chapter 10, Problem 10.101RP

Consider the vertical displacement at A as (δyA).

Find the vertical displacement (δyC) at C as follows;

8δyA=12δyCδyC=128δyAδyC=1.5δyA()

Find the vertical displacement (δyE) at E as follows;

δyE=δyC=1.5δyA()

Find the vertical displacement (δyD) at D as follows;

18δyD=6δyEδyD=186δyEδyD=3(1.5δyA)=4.5δyA()

Find the vertical displacement (δyG) at G as follows;

18δyD=10δyGδyG=1018δyDδyG=1018(4.5δyA)=2.5δyA()

Use the virtual work principle:

δU=0300δyA100δyD+PδyG=0

Substitute 4.5δyA for δyD and 2.5δyA for δyG.

300δyA100(4.5δyA)+P(2.5δyA)=0300450+2.5P=02.5P=150P=60.0lb()

Therefore, the vertical force P required for the equilibrium is 60.0lb()_.

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Chapter 10 Solutions

VECTOR MECH. ENG. STATICS W/CONNECT >BI

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Derive an expression for the mechanical...Ch. 10.1 - Denoting the coefficient of static friction...Ch. 10.1 - Knowing that the coefficient of static...Ch. 10.1 - Using the method of virtual work,...Ch. 10.1 - Using the method of virtual work, determine...Ch. 10.1 - Referring to Prob. 10.43 and using the value...Ch. 10.1 - Prob. 10.56PCh. 10.1 - Prob. 10.57PCh. 10.1 - Prob. 10.58PCh. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.29....Ch. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.30....Ch. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.31....Ch. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.32....Ch. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.34....Ch. 10.2 - Prob. 10.64PCh. 10.2 - Using the method of Sec. 10.2C, solve Prob. 10.37....Ch. 10.2 - Prob. 10.66PCh. 10.2 - Prob. 10.67PCh. 10.2 - Show that equilibrium is neutral in Prob. 10.7....Ch. 10.2 - Two uniform rods, each with a mass m, areattached...Ch. 10.2 - Two uniform rods, AB and CD, are attached to gears...Ch. 10.2 - 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Rod AB is attached to a hinge at A and to...Ch. 10.2 - Two bars are attached to a single spring of...Ch. 10.2 - Prob. 10.94PCh. 10.2 - The horizontal bar BEH is connected to three...Ch. 10.2 - The horizontal bar BEH is connected to three...Ch. 10.2 - Bars AB and BC, each with a length l and of...Ch. 10.2 - Prob. 10.98PCh. 10.2 - Prob. 10.99PCh. 10.2 - Prob. 10.100PCh. 10 - Determine the vertical force P that must be...Ch. 10 - Determine the couple M that must be applied...Ch. 10 - Determine the force P required to maintain...Ch. 10 - Derive an expression for the magnitude of the...Ch. 10 - Derive an expression for the magnitude of the...Ch. 10 - A vertical load W is applied to the linkage at B....Ch. 10 - A force P with a magnitude of 240 N is applied to...Ch. 10 - Two identical rods ABC and DBE are connected bya...Ch. 10 - Solve Prob. 10.108 assuming that the 24-lb load...Ch. 10 - Two uniform rods each with a mass m and length...Ch. 10 - A homogeneous hemisphere with a radius r isplaced...Ch. 10 - 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