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Q.A block slides down an incline of 30 degrees with an acceleration g/4. Find the co-efficient of kinetic friction. OR A horizontal force of 1.2 kg wt is applied to a 1.5 kg block, which rests on a horizontal surface. If the co-efficient of friction is 0.3, find the acceleration produced in the block.

Meghalaya MboseMBOSE Meghalaya 11th Board 2022Subjective· 3mImportance★★★★★
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Applying Newton's second law along a 30° incline, with the block's acceleration given as g/4, gives a coefficient of kinetic friction of about 0.29.

Step 1: Set up the forces along the incline.

For a block of mass m sliding down an incline of angle θ = 30°, two forces act along the slope direction:

  • The component of gravity pulling it down the slope: mg sinθ
  • Kinetic friction opposing the motion (acting up the slope, since the block slides down): μmg cosθ (where the normal force N = mg cosθ on this incline)

Step 2: Apply Newton's second law along the incline.

Net force = mass × acceleration

mg sinθ − μmg cosθ = ma

Step 3: Cancel the mass m (it appears in every term).

g sinθ − μg cosθ = a

Step 4: Substitute the given values.

θ = 30°, so sinθ = 0.5, cosθ = √3/2 ≈ 0.866

a = g/4

g(0.5) − μg(0.866) = g/4

Step 5: Divide throughout by g.

0.5 − 0.866μ = 0.25

Step 6: Solve for μ.

0.866μ = 0.5 − 0.25 = 0.25 …

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