A block of mass m rests on an inclined plane and is attached by a string to the wall as shown in the figure. The coefficient of static friction between the plane and the block is 0.25. The string can...


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A block of mass m rests on an inclined plane and<br>is attached by a string to the wall as shown in the<br>figure. The coefficient of static friction between<br>the plane and the block is 0.25. The string can<br>withstand a maximum force of 20 N. The maximum<br>value of the mass (m) for which the string will not<br>break and the block will be in static equilibrium is<br>kg.<br>Take cos 0 = 0.8 and sin 0 = 0.6.<br>Acceleration due to gravity g = 10 m/s2<br>%3D<br>

Extracted text: A block of mass m rests on an inclined plane and is attached by a string to the wall as shown in the figure. The coefficient of static friction between the plane and the block is 0.25. The string can withstand a maximum force of 20 N. The maximum value of the mass (m) for which the string will not break and the block will be in static equilibrium is kg. Take cos 0 = 0.8 and sin 0 = 0.6. Acceleration due to gravity g = 10 m/s2 %3D

Jun 11, 2022
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