Engineering & Architecture Admissions

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Q. A solid sphere and a hollow sphere of the same mass and radius are released from rest at the same height. Which one will hit the ground first?
  • A. Solid sphere
  • B. Hollow sphere
  • C. Both hit at the same time
  • D. Depends on the mass
Q. A solid sphere and a hollow sphere of the same mass and radius are released from rest at the same height. Which one will have a greater translational speed when they reach the ground?
  • A. Solid sphere
  • B. Hollow sphere
  • C. Both will have the same speed
  • D. Depends on the mass
Q. A solid sphere and a hollow sphere of the same mass and radius are rolling down an incline. Which sphere will reach the bottom first?
  • A. Solid sphere
  • B. Hollow sphere
  • C. Both reach at the same time
  • D. Depends on the angle of incline
Q. A solid sphere of mass M and radius R is rolling without slipping on a horizontal surface. What is the expression for its total angular momentum about its center of mass?
  • A. (2/5)MR^2ω
  • B. MR^2ω
  • C. MR^2
  • D. 0
Q. A solid sphere of mass M and radius R is rolling without slipping. What is its moment of inertia about an axis through its center?
  • A. 2/5 MR^2
  • B. 3/5 MR^2
  • C. 1/2 MR^2
  • D. MR^2
Q. A solid sphere of mass M and radius R is rotating about an axis through its center. What is its moment of inertia?
  • A. 2/5 MR^2
  • B. 3/5 MR^2
  • C. 1/2 MR^2
  • D. 1/3 MR^2
Q. A solid sphere of mass m and radius r rolls without slipping down an inclined plane of angle θ. What is the acceleration of the center of mass of the sphere?
  • A. g sin(θ)
  • B. g sin(θ)/2
  • C. g sin(θ)/3
  • D. g sin(θ)/4
Q. A solid sphere of radius R rolls without slipping down an inclined plane of angle θ. What is the acceleration of the center of mass of the sphere?
  • A. g sin(θ)
  • B. g sin(θ)/2
  • C. g sin(θ)/3
  • D. g sin(θ)/4
Q. A solid sphere rolls down a frictionless incline. If it starts from rest, what is its final velocity at the bottom of the incline of height h?
  • A. √(gh)
  • B. √(5gh/7)
  • C. √(2gh)
  • D. √(3gh)
Q. A solid sphere rolls down a hill without slipping. If the height of the hill is h, what is the speed of the sphere at the bottom of the hill?
  • A. √(2gh)
  • B. √(3gh)
  • C. √(4gh)
  • D. √(5gh)
Q. A solid sphere rolls down an inclined plane without slipping. What is the ratio of its translational kinetic energy to its total kinetic energy at the bottom?
  • A. 1:2
  • B. 2:3
  • C. 1:3
  • D. 1:1
Q. A solid sphere rolls down an inclined plane without slipping. What is the ratio of its translational kinetic energy to its total kinetic energy at the bottom of the incline?
  • A. 1:2
  • B. 2:3
  • C. 1:3
  • D. 1:1
Q. A solid sphere rolls without slipping down an incline. What is the ratio of its translational kinetic energy to its total kinetic energy at the bottom?
  • A. 1:2
  • B. 2:3
  • C. 1:1
  • D. 1:3
Q. A solution contains 20% (w/w) of glucose. If the total mass of the solution is 200 g, what is the mass of glucose in the solution?
  • A. 20 g
  • B. 40 g
  • C. 60 g
  • D. 80 g
Q. A solution has a concentration of 0.1 M NaCl. How many grams of NaCl are present in 1 liter of this solution? (Molar mass of NaCl = 58.5 g/mol)
  • A. 5.85 g
  • B. 58.5 g
  • C. 0.1 g
  • D. 0.585 g
Q. A solution has a concentration of 0.2 M. How many moles of solute are present in 1.5 L of this solution?
  • A. 0.3 moles
  • B. 0.5 moles
  • C. 0.2 moles
  • D. 0.15 moles
Q. A solution has a density of 1.2 g/mL and contains 10% (w/v) NaCl. What is the mass of NaCl in 1 liter of this solution?
  • A. 100 g
  • B. 120 g
  • C. 80 g
  • D. 60 g
Q. A solution has a density of 1.2 g/mL and contains 10% (w/v) NaOH. What is the mass of NaOH in 1 L of this solution?
  • A. 100 g
  • B. 120 g
  • C. 80 g
  • D. 60 g
Q. A solution has a density of 1.2 g/mL and contains 30 g of solute. What is the molarity if the molar mass of the solute is 60 g/mol?
  • A. 0.5 M
  • B. 1 M
  • C. 2 M
  • D. 1.5 M
Q. A solution is prepared by dissolving 50 g of glucose (C6H12O6) in 250 g of water. What is the mass percent of glucose in the solution? (Molar mass of glucose = 180 g/mol)
  • A. 20%
  • B. 15%
  • C. 25%
  • D. 10%
Q. A solution is prepared by dissolving 58.5 g of NaCl in 1 L of water. What is the concentration in terms of molarity? (Molar mass of NaCl = 58.5 g/mol)
  • A. 1 M
  • B. 2 M
  • C. 0.5 M
  • D. 0.25 M
Q. A solution is prepared by dissolving 58.5 g of NaCl in 1 L of water. What is the molarity of the solution? (Molar mass of NaCl = 58.5 g/mol)
  • A. 1 M
  • B. 2 M
  • C. 0.5 M
  • D. 0.1 M
Q. A solution is prepared by dissolving 58.5 g of NaCl in enough water to make 1 L of solution. What is the molarity of the solution? (Molar mass of NaCl = 58.5 g/mol)
  • A. 1 M
  • B. 2 M
  • C. 0.5 M
  • D. 0.1 M
Q. A solution of 0.1 molal urea in water has a freezing point depression of how much? (K_f for water = 1.86 °C kg/mol)
  • A. 0.186 °C
  • B. 0.372 °C
  • C. 0.186 K
  • D. 0.372 K
Q. A sound wave travels at 340 m/s. If its frequency is 170 Hz, what is its wavelength?
  • A. 0.5 m
  • B. 1 m
  • C. 2 m
  • D. 3 m
Q. A sound wave travels at a speed of 340 m/s in air. If its frequency is 1700 Hz, what is its wavelength?
  • A. 0.2 m
  • B. 0.5 m
  • C. 1.0 m
  • D. 2.0 m
Q. A sound wave travels at a speed of 340 m/s in air. What is the wavelength of a sound wave with a frequency of 680 Hz?
  • A. 0.5 m
  • B. 1 m
  • C. 2 m
  • D. 4 m
Q. A sound wave travels at a speed of 340 m/s. If its frequency is 170 Hz, what is its wavelength?
  • A. 0.5 m
  • B. 1 m
  • C. 2 m
  • D. 3 m
Q. A sound wave travels from air into water. What happens to its speed?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. A sound wave travels in air at a speed of 340 m/s. If the frequency of the sound wave is 1700 Hz, what is its wavelength?
  • A. 0.2 m
  • B. 0.5 m
  • C. 2 m
  • D. 1 m
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