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HSC Science (General) 12th Standard Board Exam - Maharashtra State Board Question Bank Solutions for Physics

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The power factor for a choke coil is ______.

[13] AC Circuits
Chapter: [13] AC Circuits
Concept: undefined >> undefined

Where is the power dissipated in an alternating current circuit?

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

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Explain the term choke coil.

[13] AC Circuits
Chapter: [13] AC Circuits
Concept: undefined >> undefined

Obtain an expression for Energy Density of a magnetic field.

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

A spring breaks under tension of 10 kg wt.If the string is used to revolve a body of mass 1.2 kg in a horizontal circle. of radius 50 cm, what is the maximum speed with which a body can be revolved?

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

The dimensional formula of surface tension is ______.

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

Two tuning forks having frequencies 320 Hz and 340 Hz are sounded together to produce sound waves. The velocity of sound in air is 340 m/s. Find the difference in wavelength of these waves. 

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

The fundamental frequency of an air column in a pipe closed at one end is in unison with the third overtone of an open pipe. Calculate the ratio of lengths of their air columns

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

The co-efficient of mutual induction between primary and secondary coil is 2H. Calculate induced e.m.f. if current of 4A is cut off in 2.5 x 10-4 seconds

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

What is mass defect?

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

In a set, 21 turning forks are arranged in a series of decreasing frequencies. Each tuning fork produces 4 beats per second with the preceding fork. If the first fork is an octave of the last fork, find the frequencies of the first and tenth fork.

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

If the radius of a sphere is doubled without changing the charge on it, then electric flux originating from the sphere is ______.

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

The value of end correction for an open organ pipe of radius 'r' is .........................

A) 0.3 r

B) 0.6 r

C) 0.9 r

D) 1.2 r

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

Derive the relation between surface tension and surface energy per unit area.

[2] Mechanical Properties of Fluids
Chapter: [2] Mechanical Properties of Fluids
Concept: undefined >> undefined

With a neat labelled diagram, show that all harmonics are present in an air column contained in a pipe open at both the ends. Define end correction.

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

A pipe which is open at both ends is 47 cm long and has an inner diameter 5 cm. If the speed of sound in air is 348 m/s, calculate the fundamental frequency of air column in that pipe.

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

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

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
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