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

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A particle executes S.H.M. of 2 cm. At the extreme position, the force is 4 N. What is the force at a point midway between mean and extreme positions?

[5] Oscillations
Chapter: [5] Oscillations
Concept: undefined >> undefined

State the formula for the frequency of S.H.M in terms of force constant. 

[5] Oscillations
Chapter: [5] Oscillations
Concept: undefined >> undefined

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An ideal transformer has 100 turns in the primary and 250 turns in the secondary. The peak value of the AC is 28 V. The rms secondary voltage is nearest to ______ 

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

State the mathematical relation between a number of turns in the primary coil to a secondary coil in the step-up transformer. 

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

Distinguish between Step up and Step Down Transformer.

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

What is Transformer?

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

Explain step up and step down transformer?

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

The primary of a transformer has 40 turns and works on 100 V and 100 W. Find a number of turns in the secondary to step up the voltage to 400 V. Also calculate the current in the secondary and primary.

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

Describe the construction and working of a transformer with a neat labelled diagram.

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

In Hydrogen, the electron jumps from the fourth orbit to the second orbit. The wavenumber of the radiations emitted by an electron is ______  

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

The decay constant λ of a certain radioactive material is 0.2166 per day. The average life τ of the radioactive material is ______ 

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

The half-life of a certain radioactive species is 6.93 × 105 seconds. What is the decay constant?  

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

Show that half life period of radioactive material varies inversely to decay constant λ.

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

The half-life of a certain radioactive nucleus is 3.2 days. Calculate (i) decay constant (ii) average life of radioactive nucleus.

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

Show that for radioactive decay N(t) = `"N"_"O" "e"^{-λ"t"}`, where symbols have their usual meaning.

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

Obtain an expression for the half-lifetime of radioactive material. Hence state the relation between an average life and half life time of radioactive material.

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

A radioactive substance decays to (1/10)th of its original value in 56 days. Calculate its decay constant. 

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

What is alpha decay?

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

What is beta decay?

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

A 0.1 H inductor a 25 × 10-6 F capacitor and a 15 Ω resistor are connected in series to a 120 V, 50 Hz AC source. Calculate the resonant frequency.

[5] Oscillations
Chapter: [5] Oscillations
Concept: undefined >> undefined
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