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A lift of weight 500 kg is moving upwards with a uniform acceleration of 2 m/s2. The tension in the cable supporting the lift is _________ kgf. (Answer up to the nearest integer)
    Correct answer is '602'. Can you explain this answer?
    Most Upvoted Answer
    A lift of weight 500 kg is moving upwards with a uniform acceleration...
    Understanding the Problem
    To find the tension in the cable supporting the lift, we need to consider both the weight of the lift and the force due to its upward acceleration.
    Given Data
    - Weight of the lift (mass) = 500 kg
    - Acceleration of the lift = 2 m/s²
    - Gravitational acceleration (g) = 9.81 m/s²
    Calculating Forces
    1. Weight of the Lift:
    - The weight (W) can be calculated using the formula:
    - W = mass × g
    - W = 500 kg × 9.81 m/s² = 4905 N
    2. Net Force Required for Acceleration:
    - To find the net force (F_net) acting on the lift, use Newton's second law:
    - F_net = mass × acceleration
    - F_net = 500 kg × 2 m/s² = 1000 N
    3. Total Tension in the Cable:
    - The tension (T) in the cable must overcome both the weight of the lift and provide the necessary force for upward acceleration:
    - T = Weight + F_net
    - T = 4905 N + 1000 N = 5905 N
    Converting to kgf
    - To convert Newtons to kilograms-force (kgf), use the conversion factor:
    - 1 kgf = 9.81 N
    - Therefore,
    - T (in kgf) = 5905 N / 9.81 N/kgf ≈ 602 kgf
    Conclusion
    The tension in the cable supporting the lift is approximately 602 kgf.
    Free Test
    Community Answer
    A lift of weight 500 kg is moving upwards with a uniform acceleration...
    Given: W = 500 kg and f = 2 m/s2
    g = 9.81 m/s2
    Tension in the cable supporting the lift is
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    A lift of weight 500 kg is moving upwards with a uniform acceleration of 2 m/s2. The tension in the cable supporting the lift is _________ kgf. (Answer up to the nearest integer)Correct answer is '602'. Can you explain this answer?
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