3. In the 4- cable set-up shown, find the tension in each cable to maintain equilibrium of the system. Figure 1,320 N block 1,760 N block Properties: Cable AD is horizontal Angle ADE = 120° Angle BDE = 105° Angle CED = 105°

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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TOPIC; EQUILIBRIUM OF CONCURRENT FORCE SYSTEM

3. In the 4- cable set-up shown, find the tension in each cable to maintain equilibrium of the system.
Figure
A
C
1,320 N
block
1,760 N
block
Properties: Cable AD is horizontal
Angle ADE = 120°
Angle BDE = 105°
Angle CED = 105°
4. The 300 KN sphere is supported by a pull P and a 200 KN weight passing over a frictionless pulley.
a =30°. compute the value of P and o.
a=30°-
200 kN
300
Transcribed Image Text:3. In the 4- cable set-up shown, find the tension in each cable to maintain equilibrium of the system. Figure A C 1,320 N block 1,760 N block Properties: Cable AD is horizontal Angle ADE = 120° Angle BDE = 105° Angle CED = 105° 4. The 300 KN sphere is supported by a pull P and a 200 KN weight passing over a frictionless pulley. a =30°. compute the value of P and o. a=30°- 200 kN 300
1. Cords are looped around a small spacer separating two cylinders each weighing 400 KN and pass
over a frictionless pulleys to weights of 200 KN and 400 KN. Determine the angle ø and the normal
pressure N between the cylinders and smooth horizontal surface.
800
400 kN
200 kN
2. Forces P and F acting along the bar shown in the figure, to maintain equilibrium of pin A. Determine
the value of P and F.
9m
6m
B.
12m
F
A
300 N
180 N
Transcribed Image Text:1. Cords are looped around a small spacer separating two cylinders each weighing 400 KN and pass over a frictionless pulleys to weights of 200 KN and 400 KN. Determine the angle ø and the normal pressure N between the cylinders and smooth horizontal surface. 800 400 kN 200 kN 2. Forces P and F acting along the bar shown in the figure, to maintain equilibrium of pin A. Determine the value of P and F. 9m 6m B. 12m F A 300 N 180 N
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