Prove that the frictional relationship between the coefficient of friction u, angle of contact a, belt tension, and 8 for the V-helt is T, = T,sin Impending motion Figure 1

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Prove that the frictional relationship between the coefficient of friction u, angle of contact a, belt tension,
and 8 for the V-helt is T2 = T,esin
Impending
motion
Figure 1
Question 2
In Figure 2, each block has a weight of 400ON. Determine how far the force P can compress the spring
until block B slips on Block A. What is the magnitude of P for this to occur?
H; = 0.5
30°
t- 800 N/m
H. = 0.2
Figure 2
Question 3
In Figure 3, the coefficient of static fricion between the shoes at A and B of the tongs and the pallet is
given as u'= 0.5, and between the pallet and the floor us = 0.4. IF a horizontal towering force of P = 300N
is applied to the tongs, determire the largest mass that can be towed
75 mm
75 mm
20 mn
30 m
Figure 3
Transcribed Image Text:Question Prove that the frictional relationship between the coefficient of friction u, angle of contact a, belt tension, and 8 for the V-helt is T2 = T,esin Impending motion Figure 1 Question 2 In Figure 2, each block has a weight of 400ON. Determine how far the force P can compress the spring until block B slips on Block A. What is the magnitude of P for this to occur? H; = 0.5 30° t- 800 N/m H. = 0.2 Figure 2 Question 3 In Figure 3, the coefficient of static fricion between the shoes at A and B of the tongs and the pallet is given as u'= 0.5, and between the pallet and the floor us = 0.4. IF a horizontal towering force of P = 300N is applied to the tongs, determire the largest mass that can be towed 75 mm 75 mm 20 mn 30 m Figure 3
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