A 4 kg block on a horizontal, rough surface is connected to an 8 kg block by a light, inelastic string that passes over a frictionless pulley as shown below - NSC Physical Sciences - Question 6 - 2016 - Paper 1
Question 6
A 4 kg block on a horizontal, rough surface is connected to an 8 kg block by a light, inelastic string that passes over a frictionless pulley as shown below. The coe... show full transcript
Worked Solution & Example Answer:A 4 kg block on a horizontal, rough surface is connected to an 8 kg block by a light, inelastic string that passes over a frictionless pulley as shown below - NSC Physical Sciences - Question 6 - 2016 - Paper 1
Step 1
Draw a free-body diagram showing the forces acting horizontally on the 4 kg block.
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Answer
To draw the free-body diagram for the 4 kg block, identify the forces acting on it:
Tension (T) acting horizontally to the right (towards the pulley).
Frictional force (f_f) acting to the left (opposing the motion).
In the horizontal direction, the equation can be represented as:
Fnet=T−ff
Step 2
Calculate the acceleration of the system.
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Answer
Using Newton's second law, we can find the acceleration (a) of the system. The forces acting on the 8 kg block and the 4 kg block must be considered.
For the 8 kg block (falling down):
m2g−T=m2a
Substituting values:
8g−T=8a
For the 4 kg block (being pulled horizontally):
T−ff=m1a
Where,
ff=extfriction=extcoefficientimesN=extcoefficientimesm1g
Here, N=m1g=4imes9.8=39.2extN, and the friction becomes:
ff=0.6imes39.2=23.52extN
Now the equations are:
For the 8 kg block: 8g−T=8a T=8g−8a
For the 4 kg block:
T−23.52=4a
Substituting T from the first equation into the second:
(8g−8a)−23.52=4a8g−23.52=12a
Using g=9.8extm/s2:
8(9.8)−23.52=12a78.4−23.52=12a54.88=12aa = rac{54.88}{12} = 4.57 ext{ m/s}^2
Step 3
Calculate the magnitude of the tension in the string.
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Answer
Using the calculated acceleration, substitute back into one of the equations to find the tension (T).
From the equation for the 8 kg block:
T=8g−8aT=8(9.8)−8(4.57)T=78.4−36.56T=41.84extN
Step 4
Calculate the magnitude of the frictional force that acts on the 4 kg block.
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Answer
The frictional force (f_f) can be calculated using the equation:
ff=extcoefficientimesN
Where:
Coefficient of kinetic friction = 0.6
Normal force (N) = m_1 g = 4 imes 9.8 = 39.2 ext{ N}
Thus:
ff=0.6imes39.2=23.52extN