EBK VECTOR MECH...,COMBINED
EBK VECTOR MECH...,COMBINED
11th Edition
ISBN: 9780077687434
Author: BEER
Publisher: MCGRAW-HILL HIGHER EDUCATION
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Chapter 4.2, Problem 4.69P

A 50-kg crate is attached to the trolley-beam system shown. Knowing that a = 1.5 m, determine (a) the tension in cable CD, (b) the reaction at B

Chapter 4.2, Problem 4.69P, A 50-kg crate is attached to the trolley-beam system shown. Knowing that a = 1.5 m, determine (a)

Fig.P4.69

(a)

Expert Solution
Check Mark
To determine

The tension in the cable CD.

Answer to Problem 4.69P

The tension in the cable CD is 499N

Explanation of Solution

Calculation:

If the rigid body subjected to three forces, such a body is commonly called a three-force body. If a two force body is in equilibrium the lines of action of the three forces must be either concurrent or parallel.

EBK VECTOR MECH...,COMBINED, Chapter 4.2, Problem 4.69P , additional homework tip  1

The figure 1 represents the free body diagram of the system. The weight is acting downwards. The W and TCD intersect at E. The three forces W, TCD and B are intersect at E.

Write the expression for the angle β from the given figure.

tanβ=0.749mWB (I)

Here, β is the angle.

Write the expression for the weight acting on the system.

W=mg

Here, m is the mass, g is the acceleration due to gravity

EBK VECTOR MECH...,COMBINED, Chapter 4.2, Problem 4.69P , additional homework tip  2

Figure 2 represents a force triangle as shown in the above figure with its interior angles computed from the known directions of the forces. Then use the law of sines to find the unknown forces.

Write the expression for the law of sines from the force triangle.

Wsin(61.55°)=TCDsin(90β)°=Asin(55°) (II)

Conclusion:

Substitute 1.5m for WB in equation I to find β.

tanβ=0.7497m1.5m=0.499β=tan1(0.499)=26.55°

Substitute 50kg for m and 9.81m/s2 in equation II to find g.

W=(50kg)(9.81m/s2)=490.5N

Substitute 490.5N for W, and 26.55° for β in equation III to find B and TCD.

490.5Nsin(61.55°)=TCDsin(9026.55)°=Asin(55°)Wsin(61.55°)=TCDsin63.44°=Asin(55°)490.50.879=TCD0.894=A0.819

On rearranging the above equation to find T.

TCD×0.879=438.50TCD=438.500.879=498.87N=499N

Therefore, the tension in the cable CD is 499N

(b)

Expert Solution
Check Mark
To determine

The reaction at B.

Answer to Problem 4.69P

The reaction at B is 457N.

Explanation of Solution

Calculation:

If the rigid body subjected to three forces, such a body is commonly called a three-force body. If a two force body is in equilibrium the lines of action of the three forces must be either concurrent or parallel.

The figure 1 represents the free body diagram of the system. The weight is acting downwards. The W and TCD intersect at E. The three forces W, TCD and B are intersect at E.

Write the expression for the angle β from the given figure.

tanβ=0.749mWB (I)

Here, β is the angle.

Write the expression for the weight acting on the system.

W=mg

Here, m is the mass, g is the acceleration due to gravity

Figure 2 represents a force triangle as shown in the above figure with its interior angles computed from the known directions of the forces. Then use the law of sines to find the unknown forces.

Write the expression for the law of sines from the force triangle.

Wsin(61.55°)=TCDsin(90β)°=Bsin(55°) (II)

Conclusion:

Substitute 1.5m for WB in equation I to find β.

tanβ=0.7497m1.5m=0.499β=tan1(0.499)=26.55°

Substitute 50kg for m and 9.81m/s2 in equation II to find g.

W=(50kg)(9.81m/s2)=490.5N

Substitute 490.5N for W, and 26.55° for β in equation III to find B and TCD.

490.5Nsin(61.55°)=TCDsin(9026.55)°=Bsin(55°)Wsin(61.55°)=TCDsin63.44°=Bsin(55°)490.50.879=TCD0.894=B0.819

Rearrange the above equation to find B.

490.50N×0.819=B×0.879B=457.01N

Therefore, reaction at B is 457N.

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Chapter 4 Solutions

EBK VECTOR MECH...,COMBINED

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Find...Ch. 4.3 - Prob. 4.94PCh. 4.3 - A 250 400-mm plate of mass 12 kg and a...Ch. 4.3 - Prob. 4.96PCh. 4.3 - Prob. 4.97PCh. 4.3 - Prob. 4.98PCh. 4.3 - Prob. 4.99PCh. 4.3 - Prob. 4.100PCh. 4.3 - PROBLEM 4.101 Two steel pipes AB and BC, each...Ch. 4.3 - PROBLEM 4.102 For the pipe assembly of Problem...Ch. 4.3 - PROBLEM 4.103 The 24-lb square plate shown is...Ch. 4.3 - PROBLEM 4.104 The table shown weighs 30 lb and has...Ch. 4.3 - PROBLEM 4.105 A 10-ft boom is acted upon by the...Ch. 4.3 - PROBLEM 4.106 The 6-m pole ABC is acted upon by a...Ch. 4.3 - PROBLEM 4.107 Solve Problem 4.106 for a = 1.5 m....Ch. 4.3 - Prob. 4.108PCh. 4.3 - Prob. 4.109PCh. 4.3 - Prob. 4.110PCh. 4.3 - PROBLEM 4.111 A 48-in. boom is held by a...Ch. 4.3 - PROBLEM 4.112 Solve Problem 4.111, assuming that...Ch. 4.3 - PROBLEM 4.114 The bent rod ABEF is supported by...Ch. 4.3 - The bent rod ABEF is supported by bearings at C...Ch. 4.3 - The horizontal platform ABCD weighs 60 lb and...Ch. 4.3 - Prob. 4.116PCh. 4.3 - Prob. 4.117PCh. 4.3 - Solve Prob. 4.117, assuming that cable DCE is...Ch. 4.3 - PROBLEM 4.119 Solve Prob. 4.113, assuming that the...Ch. 4.3 - PROBLEM 4.120 Solve Prob. 4.115, assuming that the...Ch. 4.3 - PROBLEM 4.121 The assembly shown is used to...Ch. 4.3 - Prob. 4.122PCh. 4.3 - Prob. 4.123PCh. 4.3 - Prob. 4.124PCh. 4.3 - Prob. 4.125PCh. 4.3 - Prob. 4.126PCh. 4.3 - Prob. 4.127PCh. 4.3 - Prob. 4.128PCh. 4.3 - Frame ABCD is supported by a ball-and-socket joint...Ch. 4.3 - Prob. 4.130PCh. 4.3 - The assembly shown consists of an 80-mm rod AF...Ch. 4.3 - Prob. 4.132PCh. 4.3 - The frame ACD is supported by ball-and-socket...Ch. 4.3 - Prob. 4.134PCh. 4.3 - Prob. 4.135PCh. 4.3 - Prob. 4.136PCh. 4.3 - Prob. 4.137PCh. 4.3 - Prob. 4.138PCh. 4.3 - Prob. 4.139PCh. 4.3 - Prob. 4.140PCh. 4.3 - Prob. 4.141PCh. 4 - Prob. 4.142RPCh. 4 - 4. 143 The lever BCD is hinged at C and attached...Ch. 4 - Prob. 4.144RPCh. 4 - Neglecting friction and the radius of the pulley,...Ch. 4 - Prob. 4.146RPCh. 4 - PROBLEM 4.147 A slender rod AB, of weight W, is...Ch. 4 - PROBLEM 4.148 Determine the reactions at A and B...Ch. 4 - Prob. 4.149RPCh. 4 - PROBLEM 4.150 A 200-mm lever and a 240-mm-diameter...Ch. 4 - Prob. 4.151RPCh. 4 - Prob. 4.152RPCh. 4 - A force P is applied to a bent rod ABC, which may...
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