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HSC Science (General) १२ वीं कक्षा - Maharashtra State Board Question Bank Solutions for Physics

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Physics
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A pipe open at both ends resonates to a frequency ‘n1’ and a pipe closed at one end resonates to a frequency ‘n2’. If they are joined to form a pipe closed at one end, then the fundamental frequency will be ______.

(A)  `(n_1n_2)/(2n_2+n_1)`

(B) `(2n_2n_1)/(2n_2+n_1)`

(C) `(2n_2n_1)/(n_1+n_2)`

(D) `(n_2+2n_1)/(n_1n_2)` 

 
 
[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Two sound notes have wavelengths 83/170 m and 83/172 m in the air. These notes when sounded together produce 8 beats per second. Calculate the velocity of sound in the air and frequencies of the two notes.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

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Explain self induction and mutual induction

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

Discuss different modes of vibrations in an air column of a pipe open at both the ends.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

State the cause of end correction.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Find the end correction for the pipe open at both the ends in fundamental mode.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

A tube open at both ends has length 47 em. Calculate the fundamental frequency of air column. (Neglect end correction. Speed of sound in air is 3.3 x 102m/s}

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Draw neat labelled diagrams for modes of vibration of an air column in a pipe when it is closed at one end.

Hence derive an expression for fundamental frequency in each case.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Define coefficient of mutual induction. 

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

Explain the phenomenon of mutual induction.

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

What is meant by harmonics?

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Show that only odd harmonics are present as overtones in the case of an air column vibrating in a pipe closed at one end.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

Show that even as well as odd harmonics are present as overtones in the case of an air column vibrating in a pipe open at both the ends.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

A wheel of moment of inertia 1 kg.m2 is rotating at a speed of 30 rad/s. Due to friction on the axis, it comes to rest in 10 minutes. Calculate the average torque of the friction.

[6] Superposition of Waves
Chapter: [6] Superposition of Waves
Concept: undefined >> undefined

State the Stefan-Boltzmann law.

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

A pair of adjacent coils has a mutual inductance of 1.5 H. If the current in one coil changes from 0 to 10 A in 0.2 s, what is the change of flux linkage with the other coil?

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

An emf of 96.0 mV is induced in the windings of a coil when the current in a nearby coil is increasing at the rate of 1.20 A/s. What is the mutual inductance (M) of the two coils?

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

A long solenoid of length l, cross-sectional area A and having N1 turns (primary coil), has a small coil of N2 turns (secondary coil) wound about its center. Determine the Mutual inductance (M) of the two coils.

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

Calculate the binding energy of an alpha particle given its mass to be 4.00151 u.

[15] Structure of Atoms and Nuclei
Chapter: [15] Structure of Atoms and Nuclei
Concept: undefined >> undefined

An electron in hydrogen atom stays in its second orbit for 10−8 s. How many revolutions will it make around the nucleus at that time?

[15] Structure of Atoms and Nuclei
Chapter: [15] Structure of Atoms and Nuclei
Concept: undefined >> undefined
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