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A lift weighing 1000 kg is moving upwards with an accelertion of  1 m/s2. The tension in the supporting cable is [2002]
  • a)
    980N
  • b)
    10800N
  • c)
    9800N
  • d)
    8800N
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
A lift weighing 1000 kg is moving upwards with an accelertion of 1 m/s...
T – (1000 × 9.8) = 1000 × 1
⇒  T = 10800N
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Most Upvoted Answer
A lift weighing 1000 kg is moving upwards with an accelertion of 1 m/s...
Given:
Weight of lift, W = 1000 kg
Acceleration, a = 1 m/s²
Tension in the cable, T = ?

Formula used:
Newton's second law of motion states that the force applied on an object is directly proportional to its mass and acceleration i.e. F = ma, where F is the force applied, m is the mass of the object and a is the acceleration.

Calculation:
Using the formula F = ma, we can find the force acting on the lift as:
F = ma
F = 1000 kg × 1 m/s²
F = 1000 N

The force acting on the lift is equal to the tension in the cable. Therefore, the tension in the cable is equal to 1000 N.

Answer:
The tension in the supporting cable is 1000 N, which is equal to option B - 10800 N.
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A lift weighing 1000 kg is moving upwards with an accelertion of 1 m/s...
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