Major Competitive Exams

Q. A charged sphere has a radius R and a total charge Q. What is the electric potential at a point outside the sphere at a distance r from the center (r > R)?
  • A. kQ/R
  • B. kQ/r
  • C. kQ/(R+r)
  • D. 0
Q. A child is sitting on a merry-go-round that is rotating. If the child moves towards the center, what happens to the rotational speed of the merry-go-round?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. A child is sitting on a merry-go-round that is spinning. If the child moves closer to the center, what happens to the angular velocity of the merry-go-round?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. A child is sitting on a merry-go-round that is spinning. If the child moves towards the center, what happens to the angular velocity of the merry-go-round?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. A child sitting at the edge of a merry-go-round throws a ball tangentially. What happens to the angular momentum of the system (merry-go-round + child + ball)?
  • A. Increases
  • B. Decreases
  • C. Remains constant
  • D. Becomes zero
Q. A circuit contains a 12 V battery and two resistors of 4 ohms and 8 ohms in series. What is the current flowing through the circuit?
  • A. 0.5 A
  • B. 1 A
  • C. 1.5 A
  • D. 2 A
Q. A circuit contains a 12V battery and two resistors of 4 ohms and 8 ohms in series. What is the total current in the circuit?
  • A. 1 A
  • B. 0.5 A
  • C. 2 A
  • D. 3 A
Q. A circuit contains a 9V battery and two resistors in series: 3Ω and 6Ω. What is the voltage across the 6Ω resistor?
  • A. 6V
  • B. 3V
  • C. 9V
  • D. 0V
Q. A circuit contains a 9V battery and two resistors of 3 ohms and 6 ohms in series. What is the voltage across the 6 ohm resistor?
  • A. 6V
  • B. 3V
  • C. 9V
  • D. 4.5V
Q. A circuit contains a 9V battery and two resistors of 3 ohms and 6 ohms in series. What is the voltage drop across the 6 ohm resistor?
  • A. 3 V
  • B. 6 V
  • C. 9 V
  • D. 4.5 V
Q. A circuit contains a 9V battery and two resistors of 3Ω and 6Ω in series. What is the voltage across the 6Ω resistor?
  • A. 6V
  • B. 3V
  • C. 9V
  • D. 0V
Q. A circuit has a voltage of 12V and a resistance of 4Ω. What is the current flowing through the circuit?
  • A. 3A
  • B. 4A
  • C. 12A
  • D. 48A
Q. A circular loop of radius R carries a current I. What is the magnetic field at the center of the loop?
  • A. μ₀I/(2R)
  • B. μ₀I/R
  • C. μ₀I/(4R)
  • D. μ₀I/(8R)
Q. A circular loop of wire carries a current. What is the direction of the magnetic field at the center of the loop?
  • A. Out of the plane
  • B. Into the plane
  • C. Clockwise
  • D. Counterclockwise
Q. A circular loop of wire is placed in a uniform magnetic field. If the magnetic field is increased, what happens to the induced EMF in the loop?
  • A. Increases
  • B. Decreases
  • C. Remains constant
  • D. Becomes zero
Q. A circular loop of wire is placed in a uniform magnetic field. What happens to the induced EMF if the magnetic field strength is doubled?
  • A. Induced EMF is halved
  • B. Induced EMF remains the same
  • C. Induced EMF is doubled
  • D. Induced EMF is quadrupled
Q. A circular loop of wire is placed in a uniform magnetic field. What happens to the induced EMF if the area of the loop is increased?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Depends on the magnetic field strength
Q. A coil of wire is placed in a changing magnetic field. What phenomenon is observed?
  • A. Electromagnetic induction
  • B. Magnetic resonance
  • C. Electrolysis
  • D. Thermal conduction
Q. A coil of wire is placed in a magnetic field. If the magnetic field strength is doubled, what happens to the induced EMF?
  • A. It doubles
  • B. It remains the same
  • C. It halves
  • D. It quadruples
Q. A coil with 100 turns is placed in a magnetic field that changes at a rate of 0.5 T/s. What is the induced EMF in the coil?
  • A. 50 V
  • B. 100 V
  • C. 200 V
  • D. 25 V
Q. A coil with 100 turns is placed in a magnetic field that changes from 0.5 T to 1.5 T in 2 seconds. What is the induced EMF?
  • A. 50 V
  • B. 100 V
  • C. 200 V
  • D. 400 V
Q. A conical pendulum consists of a mass attached to a string that swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the expression for the tension in the string?
  • A. mg/cos(θ)
  • B. mg/sin(θ)
  • C. mg/tan(θ)
  • D. mg
Q. A conical pendulum consists of a mass m attached to a string of length L, swinging in a horizontal circle. What is the expression for the tension in the string?
  • A. T = mg
  • B. T = mg/cos(θ)
  • C. T = mg/sin(θ)
  • D. T = m(v²/r)
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the relationship between the tension in the string and the gravitational force?
  • A. T = mg
  • B. T = mg/cos(θ)
  • C. T = mg/sin(θ)
  • D. T = mg/tan(θ)
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the expression for the tension in the string?
  • A. T = mg
  • B. T = mg/cos(θ)
  • C. T = mg/sin(θ)
  • D. T = mg tan(θ)
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the relationship between the tension and the gravitational force acting on the pendulum bob?
  • A. T = mg
  • B. T = mg cos(θ)
  • C. T = mg sin(θ)
  • D. T = mg tan(θ)
Q. A conical pendulum swings with a constant speed. If the angle of the string with the vertical is θ, what is the expression for the tension in the string?
  • A. mg/cos(θ)
  • B. mg/sin(θ)
  • C. mg/tan(θ)
  • D. mg
Q. A convex lens has a focal length of 15 cm. What is the power of the lens?
  • A. +6.67 D
  • B. +7.5 D
  • C. +10 D
  • D. +15 D
Q. A copper wire has a resistivity of 1.68 x 10^-8 Ω·m. What is the resistance of a 100 m long wire with a cross-sectional area of 1 mm²?
  • A. 1.68 Ω
  • B. 0.168 Ω
  • C. 0.0168 Ω
  • D. 16.8 Ω
Q. A cube of side length a has a charge Q at one of its corners. What is the total electric flux through the cube?
  • A. Q/ε₀
  • B. Q/(6ε₀)
  • C. Q/(12ε₀)
  • D. 0
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