Physics Syllabus (JEE Main)

Q. Which of the following correctly describes the gravitational force?
  • A. It is always attractive
  • B. It can be repulsive
  • C. It acts only at short distances
  • D. It is stronger than electromagnetic force
Q. Which of the following correctly describes the relationship between gravitational potential and gravitational field?
  • A. Potential is the derivative of field.
  • B. Field is the derivative of potential.
  • C. Both are independent.
  • D. They are equal.
Q. Which of the following describes circular polarization?
  • A. Waves oscillate in a straight line
  • B. Waves oscillate in a plane at a constant angle
  • C. Waves rotate in a circular motion as they propagate
  • D. Waves are randomly oriented
Q. Which of the following describes overdamped oscillations?
  • A. System oscillates with decreasing amplitude
  • B. System returns to equilibrium without oscillating
  • C. System oscillates indefinitely
  • D. System oscillates with constant amplitude
Q. Which of the following describes Poisson's ratio?
  • A. Lateral strain / Longitudinal strain
  • B. Longitudinal strain / Lateral strain
  • C. Stress / Strain
  • D. Strain / Stress
Q. Which of the following describes the behavior of a Zener diode?
  • A. Acts as a regular diode
  • B. Allows current to flow in both directions
  • C. Maintains a constant voltage
  • D. Has no breakdown voltage
Q. Which of the following describes the behavior of gases?
  • A. They have a definite shape
  • B. They have a definite volume
  • C. They expand to fill their container
  • D. They are incompressible
Q. Which of the following describes the Doppler effect?
  • A. Change in frequency due to motion
  • B. Change in amplitude due to distance
  • C. Change in speed due to temperature
  • D. Change in wavelength due to pressure
Q. Which of the following describes the motion of a damped oscillator mathematically?
  • A. x(t) = A cos(ωt)
  • B. x(t) = A e^(-bt) cos(ωt)
  • C. x(t) = A sin(ωt)
  • D. x(t) = A e^(bt) cos(ωt)
Q. Which of the following describes the motion of a damped oscillator?
  • A. Simple harmonic motion
  • B. Exponential decay
  • C. Linear motion
  • D. Circular motion
Q. Which of the following describes the motion of a system undergoing overdamping?
  • A. Returns to equilibrium position quickly
  • B. Oscillates with decreasing amplitude
  • C. Returns to equilibrium position slowly without oscillating
  • D. Oscillates indefinitely
Q. Which of the following describes the polarization of light?
  • A. Light waves oscillate in all directions
  • B. Light waves oscillate in a single plane
  • C. Light waves oscillate in a circular motion
  • D. Light waves do not oscillate
Q. Which of the following describes the relationship between frequency and pitch?
  • A. Higher frequency means lower pitch
  • B. Lower frequency means higher pitch
  • C. Higher frequency means higher pitch
  • D. Frequency has no effect on pitch
Q. Which of the following describes viscosity?
  • A. Resistance to flow
  • B. Density of a fluid
  • C. Surface tension
  • D. Pressure exerted by a fluid
Q. Which of the following devices is based on the principle of semiconductors?
  • A. Transformer
  • B. Capacitor
  • C. Transistor
  • D. Inductor
Q. Which of the following equations is used to calculate dynamic viscosity?
  • A. Bernoulli's equation
  • B. Navier-Stokes equation
  • C. Poiseuille's law
  • D. Archimedes' principle
Q. Which of the following equations represents the condition for the first minimum in single-slit diffraction?
  • A. a sin(θ) = mλ
  • B. a sin(θ) = (m + 0.5)λ
  • C. a sin(θ) = (m + 1)λ
  • D. a sin(θ) = 0
Q. Which of the following equations represents the condition for the first minimum in a single-slit diffraction pattern?
  • A. a sin(θ) = λ
  • B. a sin(θ) = 2λ
  • C. a sin(θ) = 3λ
  • D. a sin(θ) = 0
Q. Which of the following equations represents the relationship between shear stress and shear rate in a Newtonian fluid?
  • A. τ = μ(du/dy)
  • B. τ = ρg
  • C. F = ma
  • D. P = F/A
Q. Which of the following factors does NOT affect surface tension?
  • A. Temperature
  • B. Impurities
  • C. Density
  • D. Nature of the liquid
Q. Which of the following factors does NOT affect the accuracy of a potentiometer?
  • A. Temperature
  • B. Length of the wire
  • C. Material of the wire
  • D. Color of the wire
Q. Which of the following factors does NOT affect the average kinetic energy of gas molecules?
  • A. Temperature.
  • B. Mass of the molecules.
  • C. Number of molecules.
  • D. Type of gas.
Q. Which of the following factors does NOT affect the buoyant force on an object submerged in a fluid?
  • A. Density of the fluid
  • B. Volume of the object
  • C. Depth of the object
  • D. Acceleration due to gravity
Q. Which of the following factors does NOT affect the buoyant force on an object?
  • A. Volume of fluid displaced
  • B. Density of the fluid
  • C. Shape of the object
  • D. Acceleration due to gravity
Q. Which of the following factors does NOT affect the coefficient of friction between two surfaces?
  • A. Surface roughness
  • B. Material type
  • C. Surface area
  • D. Normal force
Q. Which of the following factors does NOT affect the coefficient of kinetic friction?
  • A. Surface roughness
  • B. Normal force
  • C. Material of surfaces
  • D. Speed of sliding
Q. Which of the following factors does NOT affect the density of a fluid?
  • A. Temperature
  • B. Pressure
  • C. Volume
  • D. Composition
Q. Which of the following factors does NOT affect the gravitational force acting on a satellite?
  • A. Mass of the satellite
  • B. Mass of the Earth
  • C. Distance from the center of the Earth
  • D. Speed of the satellite
Q. Which of the following factors does NOT affect the gravitational force between a satellite and the Earth?
  • A. Mass of the satellite
  • B. Mass of the Earth
  • C. Distance between the satellite and the Earth
  • D. Speed of the satellite
Q. Which of the following factors does NOT affect the gravitational force on a satellite?
  • A. Mass of the satellite
  • B. Mass of the Earth
  • C. Distance from the center of the Earth
  • D. Speed of the satellite
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