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Physics
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The dielectric strength of air is 3.0 × 106 V/m. A parallel-plate air-capacitor has area 20 cm2 and plate separation 0.10 mm. Find the maximum rms voltage of an AC source that can be safely connected to this capacitor.

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

A proton and an electron are accelerated by the same potential difference. Let λe and λpdenote the de Broglie wavelengths of the electron and the proton, respectively.

[11] Dual Nature of Radiation and Matter
Chapter: [11] Dual Nature of Radiation and Matter
Concept: undefined >> undefined

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A capacitor of capacitance 10 μF is connected to an oscillator with output voltage ε = (10 V) sin ωt. Find the peak currents in the circuit for ω = 10 s−1, 100 s−1, 500 s−1 and 1000 s−1.

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

A coil of inductance 5.0 mH and negligible resistance is connected to the oscillator of the previous problem. Find the peak currents in the circuit for ω = 100 s−1, 500 s−1, 1000 s−1.

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

A resistor of resistance 100 Ω is connected to an AC source ε = (12 V) sin (250 π s−1)t. Find the energy dissipated as heat during t = 0 to t = 1.0 ms.

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

In a series RC circuit with an AC source, R = 300 Ω, C = 25 μF, ε0 = 50 V and ν = 50/π Hz. Find the peak current and the average power dissipated in the circuit.

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

In a laboratory experiment on emission from atomic hydrogen in a discharge tube, only a small number of lines are observed whereas a large number of lines are present in the hydrogen spectrum of a star. This is because in a laboratory

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

A spectroscopic instrument can resolve two nearby wavelengths λ and λ + Δλ if λ/Δλ is smaller than 8000. This is used to study the spectral lines of the Balmer series of hydrogen. Approximately how many lines will be resolved by the instrument?

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

How are eddy currents generated in a conductor which is subjected to a magnetic field?

[6] Electromagnetic Induction
Chapter: [6] Electromagnetic Induction
Concept: undefined >> undefined

Write two examples of their useful applications .

[6] Electromagnetic Induction
Chapter: [6] Electromagnetic Induction
Concept: undefined >> undefined

How can the disadvantages of eddy currents be minimized?

[6] Electromagnetic Induction
Chapter: [6] Electromagnetic Induction
Concept: undefined >> undefined

What do you mean by bandwidth of a signal? Give its importance. 

[15] Communication Systems
Chapter: [15] Communication Systems
Concept: undefined >> undefined

Differentiate between Analog and Digital communication. 

[15] Communication Systems
Chapter: [15] Communication Systems
Concept: undefined >> undefined

Can the interference pattern be produced by two independent monochromatic sources of light? Explain.

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

State with reason, how the linear width of the central maximum will be affected if
(i) monochromatic yellow  light is replaced with red light, and
(ii) distance between the slit and the screen is increased.

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

An electric dipole of dipole moment `vecP` is placed in a uniform electric field `vecE` with its axis inclined to the field. Write an expression for the torque `vecT` experienced by the dipole in vector form. Show diagrammatically how the dipole should be kept in the electric field so that the torque acting on it is:

  1. maximum
  2. Zero
[5] Magnetism and Matter
Chapter: [5] Magnetism and Matter
Concept: undefined >> undefined

Answer the following question.
Two bulbs are rated (P1, V) and (P2, V). If they are connected (i) in series and (ii) in parallel across a supply V, find the power dissipated in the two combinations in terms of P1 and P2.

[3] Current Electricity
Chapter: [3] Current Electricity
Concept: undefined >> undefined

Answer the following question.
A small town with a demand of 1200 kW of electric power at 220 V is situated 20 km away from an electric plant generating power at 440 V. The resistance of the two wirelines carrying power is 0.5 Ω per km. The town gets the power from the line through a 4000-220 V step-down transformer at a sub-station in the town. Estimate the line power loss in the form of heat. 

[7] Alternating Current
Chapter: [7] Alternating Current
Concept: undefined >> undefined

Answer the following question.
In the diffraction due to a single slit experiment, the aperture of the slit is 3 mm. If monochromatic light of wavelength 620 nm is incident normally on the slit, calculate the separation between the first order minima and the 3rd order maxima on one side of the screen. The distance between the slit and the screen is 1.5 m.

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

Answer the following question.
Obtain the expression for the ratio of the de-Broglie wavelengths associated with the electron orbiting in the second and third excited states of the hydrogen atom.

[11] Dual Nature of Radiation and Matter
Chapter: [11] Dual Nature of Radiation and Matter
Concept: undefined >> undefined
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