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HSC Science (Computer Science) 12th Standard Board Exam - Maharashtra State Board Important Questions for Physics

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Represent Radioactive Decay curve using relation `N = N_o e^(-lambdat)` graphically

Appears in 1 question paper
Chapter: [18] Atoms, Molecules and Nuclei
Concept: Law of Radioactive Decay

Write notes on Nuclear fission

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Forms of Energy > Nuclear Energy >> Nuclear Fusion – Energy Generation in Stars

Write notes on Nuclear fusion

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Forms of Energy > Nuclear Energy >> Nuclear Fusion – Energy Generation in Stars

What do you mean by polar molecules and non-polar molecules? Give ‘one’ example each.

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Atomic Masses and Composition of Nucleus

Calculate the de-Broglie wavelength of an electron moving with one-fifth of the speed of light.Neglect relativistic effects. (`h = 6.63 xx 10^(-34)` J.s, c= `3xx10^8`m/s, mass of electron = `9 xx 10^(-31) kg)`

Appears in 1 question paper
Chapter: [18] Atoms, Molecules and Nuclei
Concept: de-Broglie Relation

An electron of energy 150 eV has wavelength of 10-10m. The wavelength of a 0.60 keV electron is?

Appears in 1 question paper
Chapter: [18] Atoms, Molecules and Nuclei
Concept: de-Broglie Relation

Using an expression for energy of electron, obtain the Bohr’s formula for hydrogen spectral lines.

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Hydrogen Spectrum

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?

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Mass-energy and Nuclear Binding Energy >> Nuclear Binding Energy

State the significance of binding energy per nucleon.

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Chapter: [18] Atoms, Molecules and Nuclei
Concept: Mass-energy and Nuclear Binding Energy >> Nuclear Binding Energy

What is binding energy of a hydrogen atom?

Appears in 1 question paper
Chapter: [18] Atoms, Molecules and Nuclei
Concept: Mass Defect and Binding Energy

Which logic gate corresponds to the truth table given below?

A

B

Y

0

0

I

0

1

0

1

0

0

1

1

0

Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Digital Electronics and Logic Gates

Explain the elementary idea of an oscillator with the help of block diagram

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Chapter: [19] Semiconductors
Concept: Oscillators

In a semiconductor, acceptor impurity is.................................

  1. antimony
  2. indium
  3. phosphorous
  4. arsenic
Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Properties of Solids: Electrical Properties >> Applications of n-type and p-type Semiconductors

What are α and β parameters for a transistor? Obtain a relation between them.

Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Transistor and Characteristics of a Transistor

The output of NOR gate is high, when _______.

Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Digital Electronics and Logic Gates

Explain the formation of energy band diagram in case of conductor and semiconductor.

Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Energy Bands in Solids

Colour of light emitted by LED depends upon__________________ .

  1. its forward bias
  2. its reverse bias
  3. the band gap of the material of semiconductor
  4. its size
Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Special Purpose P-n Junction Diodes

In case of transistor oscillator, to obtain sustained oscillations, the product of voltage gain without feedback and feedback factor should be __________.

Appears in 1 question paper
Chapter: [19] Semiconductors
Concept: Oscillators

Explain the working of P-N junction diode in forward and reverse biased mode.

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Chapter: [19] Semiconductors
Concept: Semiconductor Diode

When a hole is produced in P-type semiconductor, there is _______.

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Chapter: [19] Semiconductors
Concept: Properties of Solids: Electrical Properties >> Applications of n-type and p-type Semiconductors
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