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NEET / AIIMS · Practice Sheet 2

Sheet code: NEET-S02 · 20 questions

Name: ______________
Date: ______________
  1. 1.
    Quantitative Aptitude

    A vehicle covers 162 km in 3 hours. Find its average speed.

    Formula:Speed, Distance & Time
    Speed=DistanceTime\text{Speed} = \dfrac{\text{Distance}}{\text{Time}}
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  2. 2.
    Physics

    A body moving at 2 m/s accelerates at 5 m/s² for 3 s. Find the distance travelled.

    Formula:Equation of Motion (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^{2}
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  3. 3.
    Quantitative Aptitude

    A vehicle covers 205 km in 5 hours. Find its average speed.

    Formula:Speed, Distance & Time
    Speed=DistanceTime\text{Speed} = \dfrac{\text{Distance}}{\text{Time}}
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  4. 4.
    Chemistry

    71 mL of a 2 M solution is diluted to 191 mL. Find the new concentration.

    Formula:Dilution
    M1V1=M2V2M_1V_1 = M_2V_2
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  5. 5.
    Biology

    Calculate the BMI of a person weighing 79 kg with height 1.59 m.

    Formula:Body Mass Index
    BMI=mh2BMI = \dfrac{m}{h^{2}}
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  6. 6.
    Physics

    Find the electrical power when 153 V drives a current of 10 A.

    Formula:Electrical Power
    P=VIP = VI
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  7. 7.
    Physics

    If 2,536 J of work is done in 36 s, find the power.

    Formula:Power
    P=WtP = \dfrac{W}{t}
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  8. 8.
    Physics

    A body moving at 12 m/s accelerates at 1 m/s² for 2 s. Find the distance travelled.

    Formula:Equation of Motion (s = ut + ½at²)
    s=ut+12at2s = ut + \tfrac{1}{2}at^{2}
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  9. 9.
    Physics

    Find the force required to accelerate a 9 kg mass at 13 m/s².

    Formula:Newton's Second Law (F = ma)
    F=maF = ma
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  10. 10.
    Biology

    In a monohybrid cross (Aa × Aa) producing 132 F₂ offspring, how many are expected to show the dominant and the recessive phenotype (3:1 ratio)?

    Formula:Monohybrid Cross (3:1)
    Dominant:Recessive=3:1\text{Dominant}:\text{Recessive} = 3:1
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  11. 11.
    Biology

    In a population at Hardy–Weinberg equilibrium, the recessive allele frequency q = 0.1. Find the dominant allele frequency p and the percentage of heterozygous carriers.

    Formula:Hardy–Weinberg Equilibrium
    p+q=1,    2pq=carriersp + q = 1,\;\; 2pq = \text{carriers}
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  12. 12.
    Physics

    Find the force required to accelerate a 44 kg mass at 4 m/s².

    Formula:Newton's Second Law (F = ma)
    F=maF = ma
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  13. 13.
    Chemistry

    76 mL of a 10 M solution is diluted to 212 mL. Find the new concentration.

    Formula:Dilution
    M1V1=M2V2M_1V_1 = M_2V_2
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  14. 14.
    Chemistry

    A solution is made by dissolving 15 g of solute in 101 g of solvent. Find the mass percentage of the solute.

    Formula:Mass Percentage
    %mass=solutesolution×100\%\,\text{mass} = \dfrac{\text{solute}}{\text{solution}}\times 100
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  15. 15.
    Physics

    An object starts at 7 m/s and accelerates at 10 m/s² for 11 s. Find its final velocity.

    Formula:Equation of Motion (v = u + at)
    v=u+atv = u + at
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  16. 16.
    Physics

    A force of 129 N acts on an area of 31 m². Find the pressure.

    Formula:Pressure
    P=FAP = \dfrac{F}{A}
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  17. 17.
    Chemistry

    54 mL of a 2 M solution is diluted to 123 mL. Find the new concentration.

    Formula:Dilution
    M1V1=M2V2M_1V_1 = M_2V_2
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  18. 18.
    Chemistry

    Find the molarity of a solution containing 1.5 mol of solute in 4 L of solution.

    Formula:Molarity
    M=nVM = \dfrac{n}{V}
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  19. 19.
    Chemistry

    50 mL of a 2 M solution is diluted to 212 mL. Find the new concentration.

    Formula:Dilution
    M1V1=M2V2M_1V_1 = M_2V_2
    View formula →
  20. 20.
    Physics

    Find the force required to accelerate a 7 kg mass at 17 m/s².

    Formula:Newton's Second Law (F = ma)
    F=maF = ma
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