Physics Syllabus (JEE Main)
Q. Which of the following statements is true regarding the mean free path of gas molecules?
A.
It increases with increasing temperature.
B.
It decreases with increasing pressure.
C.
It is independent of the size of the gas molecules.
D.
It is constant for all gases.
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Solution
The mean free path decreases with increasing pressure because more molecules are present in a given volume, leading to more frequent collisions.
Correct Answer: B — It decreases with increasing pressure.
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Q. Which of the following statements is true regarding the moment of inertia?
A.
It depends on the mass distribution
B.
It is always constant
C.
It is independent of the axis of rotation
D.
It is only relevant for rigid bodies
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Solution
The moment of inertia depends on the mass distribution relative to the axis of rotation.
Correct Answer: A — It depends on the mass distribution
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Q. Which of the following statements is true regarding the photoelectric effect?
A.
Electrons are emitted only if the light is of high intensity
B.
Electrons are emitted regardless of the frequency of light
C.
There is a threshold frequency below which no electrons are emitted
D.
The photoelectric effect can occur with any type of electromagnetic radiation
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Solution
The photoelectric effect requires a minimum threshold frequency; below this frequency, no electrons are emitted regardless of the intensity of the light.
Correct Answer: C — There is a threshold frequency below which no electrons are emitted
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Q. Which of the following statements is true regarding the second law of thermodynamics?
A.
It allows for the conversion of heat into work with 100% efficiency
B.
It states that energy can be created from nothing
C.
It introduces the concept of entropy
D.
It applies only to mechanical systems
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Solution
The second law of thermodynamics introduces the concept of entropy, stating that the total entropy of an isolated system can never decrease over time.
Correct Answer: C — It introduces the concept of entropy
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Q. Which of the following statements is true regarding the use of a potentiometer?
A.
It can measure current directly
B.
It requires a galvanometer for operation
C.
It can only measure AC voltages
D.
It is not affected by the internal resistance of the source
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Solution
A potentiometer is not affected by the internal resistance of the source because it measures voltage by balancing it against a known voltage.
Correct Answer: D — It is not affected by the internal resistance of the source
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Q. Which of the following statements is true regarding the Wheatstone bridge?
A.
It can only measure AC resistances
B.
It can measure unknown resistances
C.
It requires a power source to operate
D.
It is only used in high voltage applications
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Solution
The Wheatstone bridge is primarily used to measure unknown resistances by balancing it against known resistances.
Correct Answer: B — It can measure unknown resistances
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Q. Which of the following statements is true regarding total internal reflection?
A.
It occurs when light travels from a denser to a rarer medium.
B.
It occurs when light travels from a rarer to a denser medium.
C.
It can occur at any angle.
D.
It requires a prism.
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Solution
Total internal reflection occurs when light travels from a denser medium to a rarer medium.
Correct Answer: A — It occurs when light travels from a denser to a rarer medium.
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Q. Which of the following surfaces is the best emitter of radiation?
A.
Shiny surface
B.
Dull black surface
C.
White surface
D.
Transparent surface
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Solution
A dull black surface is the best emitter of radiation according to Kirchhoff's law of thermal radiation.
Correct Answer: B — Dull black surface
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Q. Which of the following surfaces is the best emitter of thermal radiation?
A.
Shiny metal
B.
White paint
C.
Black paint
D.
Glass
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Solution
A black surface is the best emitter of thermal radiation due to its high emissivity.
Correct Answer: C — Black paint
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Q. Which of the following transitions in a hydrogen atom would emit the highest energy photon?
A.
n=2 to n=1
B.
n=3 to n=2
C.
n=4 to n=3
D.
n=5 to n=4
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Solution
The transition from n=2 to n=1 emits the highest energy photon as it involves the largest energy difference.
Correct Answer: A — n=2 to n=1
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Q. Which of the following waves can travel through a vacuum?
A.
Sound waves
B.
Water waves
C.
Electromagnetic waves
D.
Seismic waves
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Solution
Electromagnetic waves can travel through a vacuum, while sound waves, water waves, and seismic waves require a medium.
Correct Answer: C — Electromagnetic waves
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Q. Which of the following waves is an example of a longitudinal wave?
A.
Light wave
B.
Sound wave
C.
Water wave
D.
Seismic S-wave
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Solution
A sound wave is an example of a longitudinal wave, where the particle displacement is parallel to the direction of wave propagation.
Correct Answer: B — Sound wave
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Q. Which of the following waves requires a medium to propagate?
A.
Electromagnetic waves
B.
Sound waves
C.
Light waves
D.
Radio waves
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Solution
Sound waves are mechanical waves that require a medium (solid, liquid, or gas) to propagate, while electromagnetic waves can travel through a vacuum.
Correct Answer: B — Sound waves
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Q. Which particle is emitted during beta decay?
A.
Alpha particle
B.
Beta particle
C.
Gamma ray
D.
Neutron
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Solution
Beta decay involves the emission of a beta particle, which is an electron or positron.
Correct Answer: B — Beta particle
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Q. Which particle is responsible for mediating the weak nuclear force?
A.
Photon
B.
Gluon
C.
W and Z bosons
D.
Graviton
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Solution
The weak nuclear force is mediated by the W and Z bosons.
Correct Answer: C — W and Z bosons
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Q. Which phenomenon demonstrates the particle nature of light as evidenced by the photoelectric effect?
A.
Interference
B.
Diffraction
C.
Photoelectric effect
D.
Refraction
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Solution
The photoelectric effect demonstrates the particle nature of light, as it shows that light can be thought of as consisting of particles (photons) that can impart energy to electrons.
Correct Answer: C — Photoelectric effect
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Q. Which phenomenon demonstrates the particle nature of light as evidenced in the photoelectric effect?
A.
Interference
B.
Diffraction
C.
Emission spectra
D.
Photon emission
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Solution
The photoelectric effect demonstrates the particle nature of light, as it involves the emission of electrons due to the absorption of photons.
Correct Answer: D — Photon emission
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Q. Which phenomenon demonstrates the particle nature of light as explained by the photoelectric effect?
A.
Diffraction
B.
Interference
C.
Emission of electrons
D.
Refraction
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Solution
The photoelectric effect demonstrates the particle nature of light, as it shows that light can be thought of as consisting of particles (photons) that can impart energy to electrons.
Correct Answer: C — Emission of electrons
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Q. Which phenomenon demonstrates the particle nature of light in the context of the photoelectric effect?
A.
Interference
B.
Diffraction
C.
Emission of electrons
D.
Refraction
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Solution
The emission of electrons in the photoelectric effect demonstrates the particle nature of light, as it involves the transfer of energy from photons to electrons.
Correct Answer: C — Emission of electrons
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Q. Which phenomenon demonstrates the particle nature of light?
A.
Diffraction
B.
Interference
C.
Photoelectric effect
D.
Refraction
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Solution
The photoelectric effect demonstrates the particle nature of light as it involves photons colliding with electrons.
Correct Answer: C — Photoelectric effect
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Q. Which phenomenon describes the splitting of light into two rays upon entering a birefringent material?
A.
Refraction
B.
Reflection
C.
Double refraction
D.
Diffraction
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Solution
The splitting of light into two rays in a birefringent material is known as double refraction.
Correct Answer: C — Double refraction
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Q. Which phenomenon explains the bending of waves around obstacles?
A.
Reflection
B.
Refraction
C.
Diffraction
D.
Interference
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Solution
Diffraction is the phenomenon that explains the bending of waves around obstacles and the spreading of waves when they pass through openings.
Correct Answer: C — Diffraction
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Q. Which phenomenon explains the change in frequency of a wave in relation to the observer's motion?
A.
Doppler effect
B.
Interference
C.
Diffraction
D.
Refraction
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Solution
The Doppler effect describes the change in frequency (and wavelength) of a wave in relation to an observer moving relative to the wave source.
Correct Answer: A — Doppler effect
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Q. Which phenomenon explains the formation of a rainbow?
A.
Reflection
B.
Refraction
C.
Diffraction
D.
Interference
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Solution
The formation of a rainbow is primarily due to the refraction of light as it enters and exits water droplets in the atmosphere, along with reflection inside the droplets.
Correct Answer: B — Refraction
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Q. Which phenomenon explains the polarization of light by scattering?
A.
Refraction
B.
Reflection
C.
Diffraction
D.
Rayleigh scattering
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Solution
Rayleigh scattering is responsible for the polarization of light, especially in the atmosphere, as shorter wavelengths scatter more than longer wavelengths.
Correct Answer: D — Rayleigh scattering
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Q. Which phenomenon explains why a needle can float on water despite being denser?
A.
Buoyancy
B.
Surface tension
C.
Viscosity
D.
Capillarity
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Solution
Surface tension allows the needle to float on water, as it creates a 'skin' on the surface that can support the weight of the needle.
Correct Answer: B — Surface tension
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Q. Which phenomenon explains why a straw can draw liquid upwards?
A.
Capillary action
B.
Surface tension
C.
Viscosity
D.
Hydrostatic pressure
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Solution
Capillary action allows liquids to rise in narrow spaces, such as a straw, due to adhesive and cohesive forces.
Correct Answer: A — Capillary action
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Q. Which phenomenon is primarily responsible for the shape of small liquid droplets?
A.
Viscosity
B.
Surface tension
C.
Density
D.
Capillarity
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Solution
Surface tension causes small droplets to minimize their surface area, resulting in a spherical shape.
Correct Answer: B — Surface tension
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Q. Which phenomenon is responsible for the blue color of the sky?
A.
Refraction
B.
Reflection
C.
Scattering
D.
Polarization
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Solution
The blue color of the sky is due to Rayleigh scattering, which is a form of polarization.
Correct Answer: C — Scattering
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Q. Which phenomenon occurs when a wave passes from one medium to another and changes speed?
A.
Reflection
B.
Refraction
C.
Diffraction
D.
Interference
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Solution
Refraction occurs when a wave passes from one medium to another and changes speed, resulting in a change in direction.
Correct Answer: B — Refraction
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