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Karnataka Board PUCPUC Science 2nd PUC Class 12

PUC Science 2nd PUC Class 12 - Karnataka Board PUC Question Bank Solutions for Physics

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Physics
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Consider a neutron and an electron bound to each other due to gravitational force. Assuming Bohr's quantization rule for angular momentum to be valid in this case, derive an expression for the energy of the neutron-electron system.

[12] Atoms
Chapter: [12] Atoms
Concept: undefined >> undefined

Suppose in an imaginary world the angular momentum is quantized to be even integral multiples of h/2π. What is the longest possible wavelength emitted by hydrogen atoms in visible range in such a world according to Bohr's model?

[12] Atoms
Chapter: [12] Atoms
Concept: undefined >> undefined

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By what fraction does the mass of a spring change when it is compressed by 1 cm? The mass of the spring is 200 g at its natural length and the spring constant is 500 N m−1.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Find the increase in mass when 1 kg of water is heated from 0°C to 100°C. Specific heat capacity of water = 4200 J kg−1 K−1.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Find the loss in the mass of 1 mole of an ideal monatomic gas kept in a rigid container as it cools down by 100°C. The gas constant R = 8.3 J K−1 mol−1.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

By what fraction does the mass of a boy increase when he starts running at a speed of 12 km h−1?

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

A 100 W bulb together with its power supply is suspended from a sensitive balance. Find the change in the mass recorded after the bulb remains on for 1 year.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

The energy from the sun reaches just outside the earth's atmosphere at a rate of 1400 W m−2. The distance between the sun and the earth is 1.5 × 1011 m.
(a) Calculate the rate  which the sun is losing its mass.
(b) How long will the sun last assuming a constant decay at this rate? The present mass of the sun is 2 × 1030 kg.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

An electron and a positron moving at small speeds collide and annihilate each other. Find the energy of the resulting gamma photon.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Find the mass, the kinetic energy and the momentum of an electron moving at 0.8c.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Through what potential difference should an electron be accelerated to give it a speed of (a) 0.6c, (b) 0.9c and (c) 0.99c?

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Find the speed of an electron with kinetic energy (a) 1 eV, (b) 10 keV and (c) 10 MeV.

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

What is the kinetic energy of an electron in electron volts with mass equal to double its rest mass?

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Find the speed at which the kinetic energy of a particle will differ by 1% from its nonrelativistic value \[\frac{1}{2} m_o v^2 .\]

[16] The Special Theory of Relativity
Chapter: [16] The Special Theory of Relativity
Concept: undefined >> undefined

Define self-inductance of a coil.

[4] Moving Charges and Magnetism
Chapter: [4] Moving Charges and Magnetism
Concept: undefined >> undefined

Write the two processes that take place in the formation of a p-n junction.

[14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Chapter: [14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Concept: undefined >> undefined

Explain two features to distinguish between the interference pattern in Young's double slit experiment with the diffraction pattern obtained due to a single slit.

[10] Wave Optics
Chapter: [10] Wave Optics
Concept: undefined >> undefined

A monochromatic light of wavelength 500 nm is incident normally on a single slit of width 0.2 mm to produce a diffraction pattern. Find the angular width of the central maximum obtained on the screen.

Estimate the number of fringes obtained in Young's double slit experiment with fringe width 0.5 mm, which can be accommodated within the region of total angular spread of the central maximum due to single slit.

[10] Wave Optics
Chapter: [10] Wave Optics
Concept: undefined >> undefined

A zener diode is fabricated by heavily doping both p- and n- sides of the junction. Explain, why?

[14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Chapter: [14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Concept: undefined >> undefined

Explain briefly with the help of necessary diagrams, the forward biasing of a p-n junction diode. Also draw characteristic curves.

[14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Chapter: [14] Semiconductor Electronics - Materials, Devices and Simple Circuits
Concept: undefined >> undefined
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