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HSC Science (Electronics) 12th Standard Board Exam - Maharashtra State Board Important Questions

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Differentiate between free and forced vibrations.

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Free and Forced Vibrations

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

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Study of Vibrations of Air Columns

Show that only odd harmonics are present in an air column vibrating in a pipe closed at one end.

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Free and Forced Vibrations

Explain the formation of stationary waves by analytical method. Show that nodes and antinodes are equally spaced in stationary waves.

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Formation of Stationary Waves on String

In the law of tension, the fundamental frequency of the vibrating string is, ______   

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Study of Vibrations of Air Columns

A sonometer wire of length 1 m is stretched by a weight of 10 kg. The fundamental frequency of vibration is 100 Hz. Determine the linear density of the material of the wire.

Appears in 2 question papers
Chapter: [8] Stationary Waves
Concept: Study of Vibrations of Air Columns

State Wein's displacement law

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Wien's Displacement Law

Draw a neat labelled diagram for Ferry's perfectly black body.

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Qualitative Ideas of Black Body Radiation

Show graphical representation of energy distribution spectrum of perfectly black body.

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Qualitative Ideas of Black Body Radiation

State any four assumptions of kinetic theory of gases.

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Assumptions of Kinetic Theory of Gases

On what factors do the degrees of freedom depend?

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Law of Equipartition of Energy

Draw a p-V diagram and explain the concept of positive and negative work. Give one example each.

Appears in 2 question papers
Chapter: [9] Kinetic Theory of Gases and Radiation
Concept: Heat Engine

Four resistances 6Ω, 6Ω, 6Ω and 18Ω form a Wheatstone bridge. Find the resistance which connected across the 18Ω resistance will balance the network.

Appears in 2 question papers
Chapter: [9] Current Electricity
Concept: Wheatstone Bridge

Which one of the following particles cannot be accelerated by a cyclotron?

(A) Electrons

(B) Protons

(C) Deuterons

(D) α- particles

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Cyclotron

State Ampere’s circuital law.

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Ampere’s Circuital Law

Obtain an expression for magnetic induction along the axis of the toroid.

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Ampere’s Circuital Law

Currents of equal magnitude pass through two long parallel wires having a separation of 1.35 cm. If the force per unit length on each of the wires is 4.76 x 10-2 N, what must be I ?

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Magnetic Field Produced by a Current in a Circular Arc of a Wire

A circular loop of radius 9.7 cm carries a current 2.3 A. Obtain the magnitude of the magnetic field
(a) at the centre of the loop
(b) at a distance of 9.7 cm from the centre of the loop but on the axis.

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Magnetic Lines for a Current Loop

The magnetic field at a distance of 2.4 cm from a long straight [current-carrying] wire is 16 µT. What is the current through the wire?

Appears in 2 question papers
Chapter: [10] Magnetic Fields Due to Electric Current
Concept: Magnetic Field Produced by a Current in a Circular Arc of a Wire

Prove that the frequency of beats is equal to the difference between the frequencies of the two sound notes giving rise to beats.

Appears in 2 question papers
Chapter: [10] Wave Theory of Light
Concept: Beats
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