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State what is meant by the moment of inertia of an object about an axis - AQA - A-Level Physics - Question 1 - 2020 - Paper 5

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State what is meant by the moment of inertia of an object about an axis. A student does an experiment using the apparatus shown in Figure 1. Figure 1 A solid disc... show full transcript

Worked Solution & Example Answer:State what is meant by the moment of inertia of an object about an axis - AQA - A-Level Physics - Question 1 - 2020 - Paper 5

Step 1

State what is meant by the moment of inertia of an object about an axis.

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Answer

The moment of inertia of an object about an axis is defined as the sum of the products of the mass of each constituent particle and the square of its distance from the axis of rotation. Mathematically, it can be expressed as:

I=extSumof(miri2)I = ext{Sum of } (m_i r_i^2)

where mim_i is the mass of each particle and rir_i is the distance from the axis.

Step 2

Show that the acceleration of the load is $0.5g$.

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Answer

  1. Start with the forces acting on the falling mass:

    Fnet=mimesa=0.5MimesgTF_{net} = m imes a = 0.5M imes g - T

    where TT is the tension in the string.

  2. For the pulley, use the rotational form of Newton's second law:

    au=Iimesextangularacceleration au = I imes ext{angular acceleration}

    Here, Torque au=RimesT au = R imes T, and the moment of inertia I=0.5MR2I = 0.5MR^2. Therefore:

    R imes T = 0.5MR^2 imes rac{a}{R}

    Simplifying gives:

    T=0.25MimesaT = 0.25M imes a

  3. Substitute TT back into the net force equation:

    0.5Mimesg0.25Mimesa=0.5Mimesa0.5M imes g - 0.25M imes a = 0.5M imes a

  4. Rearrange to solve for aa:

    0.5g=0.75Mimesa0.5g = 0.75M imes a

    This leads to:

    a = rac{0.5g}{0.75} = 0.5g

Step 3

Compare the acceleration of the load in this experiment with its acceleration in the previous experiment.

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Answer

  1. For the spoked pulley, the same mass MM and radius RR are used. However, the moment of inertia may differ depending on the design of the pulley.

  2. The load's acceleration in the case of the spoked pulley will still be affected by the mass of the load and the inertia of the pulley. Due to less mass being concentrated at the axis of rotation in spoked solutions, it is typically found that:

    aspoked>asolida_{spoked} > a_{solid}

    This means the acceleration of the load will be greater in the second experiment, as there is less energy lost to rotational inertia.

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