Q1/ The 500-kg uniform beam is subjected to the three external loads shown. Compute the reactions at the support point O. The x-y plane is vertical. 30 15 kN.m 3 kN A В C 1.4 kN 1.2 m 1.8 m 1.8 m

Elements Of Electromagnetics
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وضع الطائرة 4
Homework 3.p...
Homework (2)
Q1/ The 500-kg uniform beam is subjected to the three external loads shown. Compute the
reactions at the support point O. The x-y plane is vertical.
y
30°/
15 kN.m
3 kN
A
B
1.4 kN
- 1.2 m →
1.8 m
1.8 m
Q2/ A former student of mechanics wishes to weigh himself but has access only to a scale
A with capacity limited to 100 lb and a small 20-lb spring dynamometer B. With the rig
shown he discovers that when he exerts a pull on the rope so that B registers 19 lb, the
scale A reads 67 lb. What is his correct weight?
В
A
Q3/ When the 0.05-kg body is in the position shown, the linear spring is stretched 10 mm.
Determine the force P required to break contact at C. Complete solutions for (a) including the
effects of the weight and (b) neglecting the weight.
P
60 mm
60 mm
A
40 mm
В
k = 1750 N/m
40 mm
Q4/ For equilibrium condition, determine M, and the reaction at O.
Transcribed Image Text:وضع الطائرة 4 Homework 3.p... Homework (2) Q1/ The 500-kg uniform beam is subjected to the three external loads shown. Compute the reactions at the support point O. The x-y plane is vertical. y 30°/ 15 kN.m 3 kN A B 1.4 kN - 1.2 m → 1.8 m 1.8 m Q2/ A former student of mechanics wishes to weigh himself but has access only to a scale A with capacity limited to 100 lb and a small 20-lb spring dynamometer B. With the rig shown he discovers that when he exerts a pull on the rope so that B registers 19 lb, the scale A reads 67 lb. What is his correct weight? В A Q3/ When the 0.05-kg body is in the position shown, the linear spring is stretched 10 mm. Determine the force P required to break contact at C. Complete solutions for (a) including the effects of the weight and (b) neglecting the weight. P 60 mm 60 mm A 40 mm В k = 1750 N/m 40 mm Q4/ For equilibrium condition, determine M, and the reaction at O.
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