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HSC Science (Electronics) इयत्ता १२ वी - Maharashtra State Board Question Bank Solutions for Physics

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Physics
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A metal disc of radius 30 cm spins at 20 revolution per second about its transverse symmetry axis in a uniform magnetic field of 0.20 T. The field is parallel to the axis of rotation. Calculate
(a) the area swept out per second by the radius of the disc
(b) the flux cut per second by a radius of the disc
(c) the induced emf between the axle and rim of the disc.

[12] Electromagnetic Induction
Chapter: [12] Electromagnetic Induction
Concept: undefined >> undefined

The primary and secondary coils of a transformer each have an inductance of 200 x 10-6 H. The mutual inductance between the windings is 4 x 10-6 H. What percentage of the flux from one coil reaches the other?

[16] Electromagnetic Inductions
Chapter: [16] Electromagnetic Inductions
Concept: undefined >> undefined

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A circular coil of 100 turns with a cross-sectional area of 1 m2 is kept with its plane perpendicular to the magnetic field of 1 T. The magnetic flux linkage is ______.

[16] Electromagnetic Inductions
Chapter: [16] Electromagnetic Inductions
Concept: undefined >> undefined

Explain what you understand by the de Broglie wavelength of an electron. Will an electron at rest have an associated de Broglie wavelength? Justify your answer.

[14] Dual Nature of Radiation and Matter
Chapter: [14] Dual Nature of Radiation and Matter
Concept: undefined >> undefined

The de Broglie wavelengths associated with an electron and a proton are the same. What will be the ratio of

  1. their momenta
  2. their kinetic energies?
[14] Dual Nature of Radiation and Matter
Chapter: [14] Dual Nature of Radiation and Matter
Concept: undefined >> undefined

Two particles have the same de Broglie wavelength and one is moving four times as fast as the other. If the slower particle is an α-particle, what are the possibilities for the other particle?

[14] Dual Nature of Radiation and Matter
Chapter: [14] Dual Nature of Radiation and Matter
Concept: undefined >> undefined

Find the ratio of the de Broglie wavelengths of an electron and a proton when both are moving with the (a) same speed, (b) the same kinetic energy, and (c) the same momentum. State which of the two will have a longer wavelength in each case.

[14] Dual Nature of Radiation and Matter
Chapter: [14] Dual Nature of Radiation and Matter
Concept: undefined >> undefined

What is the amount of \[\ce{_27^60Co}\] necessary to provide a radioactive source of strength 10.0 mCi, its half-life being 5.3 years?

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
Concept: undefined >> undefined

Disintegration rate of a sample is 1010 per hour at 20 hours from the start. It reduces to 6.3 x 109 per hour after 30 hours. Calculate its half-life and the initial number of radioactive atoms in the sample.

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
Concept: undefined >> undefined

The isotope \[\ce{^57Co}\] decays by electron capture to \[\ce{^57Fe}\] with a half-life of 272 d. The \[\ce{^57Fe}\] nucleus is produced in an excited state, and it almost instantaneously emits gamma rays.
(a) Find the mean lifetime and decay constant for 57Co.
(b) If the activity of a radiation source 57Co is 2.0 µCi now, how many 57Co nuclei does the source contain?

c) What will be the activity after one year?

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
Concept: undefined >> undefined

A source contains two species of phosphorous nuclei, \[\ce{_15^32P}\] (T1/2 = 14.3 d) and \[\ce{_15^33P}\] (T1/2 = 25.3 d). At time t = 0, 90% of the decays are from \[\ce{_15^32P}\]. How much time has to elapse for only 15% of the decays to be from \[\ce{_15^32P}\]?

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
Concept: undefined >> undefined

Before the year 1900 the activity per unit mass of atmospheric carbon due to the presence of 14C averaged about 0.255 Bq per gram of carbon.
(a) What fraction of carbon atoms were 14C?
(b) An archaeological specimen containing 500 mg of carbon, shows 174 decays in one hour. What is the age of the specimen, assuming that its activity per unit mass of carbon when the specimen died was equal to the average value of the air? The half-life of 14C is 5730 years.

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
Concept: undefined >> undefined

A cyclist riding a bicycle at a speed of `14sqrt3` m/s takes a turn around a circular road of radius `20sqrt3` m without skidding. Given g = 9.8 m/s2, what is his inclination to the vertical ______.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

A string of length ℓ fixed at one end carries a mass m at the other. The string makes 2/π revolutions/sec around the vertical axis through the fixed end. The tension in the string is ______.

[3] Angular Momentum
Chapter: [3] Angular Momentum
Concept: undefined >> undefined

Find the radius of gyration of a uniform disc about an axis perpendicular to its plane and passing through its center.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
Concept: undefined >> undefined

State and explain the theorem of parallel axes.

[3] Angular Momentum
Chapter: [3] Angular Momentum
Concept: undefined >> undefined

The number of degrees of freedom, for the vibrational motion of a polyatomic molecule, depends on the ______ 

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

The power radiated by a perfect blackbody depends only on its ______ 

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

Calculate the value of λmax for radiation from a body having a surface temperature of 3000 K. (b = 2.897 x 10-3 m K) 

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined

Calculate the energy radiated in one minute by a blackbody of surface area 200 cm2 at 127 °C (σ = 5.7 x 10-8 J m-2 s-1 K-4)  

[3] Kinetic Theory of Gases and Radiation
Chapter: [3] Kinetic Theory of Gases and Radiation
Concept: undefined >> undefined
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