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Question
Diagram alongside shows a pulley system when a load of 30 kgf is attached to a movable block.

- What is the velocity ratio of pulley system?
- What is the mechanical advantage of pulley system assuming it is ideal?
- What is the magnitude of effort applied?
- If the pulley system is not ideal and is 60% efficient, what is the effort required?
Numerical
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Solution
(a) Velocity ratio = No. of supporting segments of the string = 3
(b) Assuming pulley system as ideal.
MA = Velocity ratio = 3
(c) \[\mathrm{MA} = \frac{l}{E} \]
\[ \therefore\ 3 = \frac{30\ \mathrm{kgf}}{E}\]
E = 10 kgf
(d) When efficiency of pulley is 60%.
\[ \eta = \frac{\mathrm{MA}}{\mathrm{VR}} \]
MA = η × VR
\[\frac{l}{E} = \eta \times \mathrm{VR} \]
\[\frac{30\ \mathrm{kgf}}{\mathrm{E}} = \frac{60}{100} \times 3 \]
\[ \therefore\ E = \frac{30\ \mathrm{kgf} \times 100}{3 \times 80}\]
\[= \frac{50}{3}\ \mathrm{kgf}\]
= 16.67 kgf
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