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NEET-UG Biology

Degrees of freedom, equipartition and specific heats — practice questions

44 questions in the bank on this idea. Below are 10 of them, exactly as they appear in a test.

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  1. Question 1 · difficulty L2 · understanding

    The internal energy of air in 4 m×4 m×3 m4 \mathrm{~m} \times 4 \mathrm{~m} \times 3 \mathrm{~m} sized room at 1 atmospheric pressure will be___________________×106 J\times 10^6 \mathrm{~J} (Consider air as diatomic molecule)

  2. Question 2 · difficulty L2 · understanding

    The total internal energy of two mole monoatomic ideal gas at temperature T = 300 K will be _____________ J. (Given R = 8.31 J/mol.K)

  3. Question 3 · difficulty L2 · understanding

    If 2 mole of an ideal monoatomic gas at temperature TT, is mixed with 6 mole of another ideal monoatomic gas at temperature 2T2 T then the temperature of mixture is:

    • A. 52T\frac{5}{2} T
    • B. 54T\frac{5}{4} T
    • C. 72T\frac{7}{2} T
    • D. 74T\frac{7}{4} T
  4. Question 4 · difficulty L2 · understanding

    Match the List I with List II List - I List - II (A) Triatomic rigid gas (I) CpCv=53\frac{C_p}{C_v}=\frac{5}{3} (B) Diatomic non-rigid gas (II) CpCv=75\frac{C_p}{C_v}=\frac{7}{5} (C) Monoatomic gas (III) CpCv=43\frac{C_p}{C_v}=\frac{4}{3} (D) Diatomic rigid gas (IV) CpCv=97\frac{C_p}{C_v}=\frac{9}{7} Choose the correct answer from the options given below:

    • A. A-III, B-IV, C-I, D-II
    • B. A-II, B-IV, C-I, D-III
    • C. A-IV, B-II, C-III, D-I
    • D. A-III, B-II, C-IV, D-I
  5. Question 5 · difficulty L2 · understanding

    A mixture of one mole of monoatomic gas and one mole of a diatomic gas (rigid) are kept at room temperature (27C)(27^{\circ} \mathrm{C}). The ratio of specific heat of gases at constant volume respectively is:

    • A. 32\frac{3}{2}
    • B. 35\frac{3}{5}
    • C. 75\frac{7}{5}
    • D. 53\frac{5}{3}
  6. Question 6 · difficulty L2 · understanding

    The translational degrees of freedom (ft)\left(f_t\right) and rotational degrees of freedom (fr)\left(f_r\right) of CH4\mathrm{CH}_4 molecule are:

    • A. ft=2f_t=2 and fr=2f_r=2
    • B. ft=3f_t=3 and fr=3f_r=3
    • C. ft=3f_t=3 and 4fr=2f_r=2$
    • D. ft=2f_t=2 and fr=3f_r=3
  7. Question 7 · difficulty L2 · understanding

    Two moles a monoatomic gas is mixed with six moles of a diatomic gas. The molar specific heat of the mixture at constant volume is :

    • A. 32R\frac{3}{2} \mathrm{R}
    • B. 74R\frac{7}{4} \mathrm{R}
    • C. 52R\frac{5}{2} \mathrm{R}
    • D. 94R\frac{9}{4} \mathrm{R}
  8. Question 8 · difficulty L2 · understanding

    The mean free path of molecules of a certain gas at STP is 1500 d1500 \mathrm{~d}, where d\mathrm{d} is the diameter of the gas molecules. While maintaining the standard pressure, the mean free path of the molecules at 373 K373 \mathrm{~K} is approximately:

    • A. 750 d750 \mathrm{~d}
    • B. 1500 d1500 \mathrm{~d}
    • C. 2049 d\mathrm{2049~ d}
    • D. 1098 d1098 \mathrm{~d}
  9. Question 9 · difficulty L2 · understanding

    Three vessels of equal volume contain gases at the same temperature and pressure. The first vessel contains neon (monoatomic), the second contains chlorine (diatomic) and third contains uranium hexafloride (polyatomic). Arrange these on the basis of their root mean square speed (vrms)\left(v_{\mathrm{rms}}\right) and choose the correct answer from the options given below:

    • A. vrms(\mathrm{v}_{\mathrm{rms}}( mono )=vrms()=\mathrm{v}_{\mathrm{rms}}( dia )=vrms()=\mathrm{v}_{\mathrm{rms}}( poly ))
    • B. vrms\mathrm{v}_{\mathrm{rms}} (mono) >vrms( > \mathrm{v}_{\mathrm{rms}}( dia )>vrms) > \mathrm{v}_{\mathrm{rms}} (poly)
    • C. vrms\mathrm{v}_{\mathrm{rms}} (dia) <vrms < \mathrm{v}_{\mathrm{rms}} (poly) <vrms  < \mathrm{v}_{\text {rms }} (mono)
    • D. vrms\mathrm{v}_{\mathrm{rms}} (mono) <vrms < \mathrm{v}_{\mathrm{rms}} (dia) <vrms < \mathrm{v}_{\mathrm{rms}} (poly)
  10. Question 10 · difficulty L2 · understanding

    Match List I with List II : List I List II (A) 3 Translational degrees of freedom (I) Monoatomic gases (B) 3 Translational, 2 rotational degrees of freedoms (II) Polyatomic gases (C) 3 Translational, 2 rotational and 1 vibrational degrees of freedom (III) Rigid diatomic gases (D) 3 Translational, 3 rotational and more than one vibrational degrees of freedom (IV) Nonrigid diatomic gases Choose the correct answer from the options given below:

    • A. (A)-(I), (B)-(III), (C)-(IV), (D)-(II)
    • B. (A)-(IV), (B)-(III), (C)-(II), (D)-(I)
    • C. (A)-(IV), (B)-(II), (C)-(I), (D)-(III)
    • D. (A)-(I), (B)-(IV), (C)-(III), (D)-(II)

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