# Properties of Solids & Liquids (AIIMS (All India Institute of Medical Sciences) Physics): Questions 6 - 11 of 48

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## Question number: 6

» Properties of Solids & Liquids » Application of Surface Tension

Appeared in Year: 1976

MCQ▾

### Question

The spherical shape of rain-drop is due to [CPMT 90; NCERT 1982; JIPMER 99; DCE 99; AFMC 99; MHCET 2000; CPMT 01; AFMC 01]

### Choices

Choice (4) Response

a.

Density of the liquid

b.

Gravity

c.

Surface tension

d.

Atmospheric pressure

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## Question number: 7

» Properties of Solids & Liquids » Bernoulli's Principle and Its Applications

Appeared in Year: 2002

MCQ▾

### Question

Scent sprayer is based on [AIIMS]

### Choices

Choice (4) Response

a.

Boyle’s law

b.

Charles law

c.

Bernoulli’s theorem

d.

Archimedes’ principle

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## Question number: 8

» Properties of Solids & Liquids » Viscosity

Appeared in Year: 2004

MCQ▾

### Question

A sphere of mass M and radius R is falling in a viscous fluid. The terminal velocity attained by the falling object will be proportional to –

[AIIMS]

### Choices

Choice (4) Response

a.

b.

c.

d.

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## Question number: 9

» Properties of Solids & Liquids » Pressure Due to a Fluid Column

MCQ▾

### Question

A body is just floating in a liquid (their densities are equal). If the body is slightly pressed down and released then it will –

### Choices

Choice (4) Response

a.

Start oscillating

b.

Come back to the same position slowly.

c.

Sink to the bottom

d.

Come back to the same position immediately

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## Question number: 10

» Properties of Solids & Liquids » Boyle's Law & Applications

Appeared in Year: 1982

MCQ▾

### Question

The velocity of falling rain drop attain limited value because of [CPMT, AIIMS 2001]

### Choices

Choice (4) Response

a.

Up thrust due to air

b.

Surface tension

c.

Viscous force exerted by air

d.

Air current

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## Question number: 11

» Properties of Solids & Liquids » Bernoulli's Principle and Its Applications

Appeared in Year: 1996

MCQ▾

### Question

Bernoulli’s equation for steady, non-viscous, incompressible flow expresses the [AMU, 1998; AFMC 2000; CPMT 2000; AIIMS 2001; DCE 2003; AIIMS 2003; HARYANA PMT-2004]

### Choices

Choice (4) Response

a.

Conservation of density

b.

Conservation of angular momentum

c.

Conservation of energy.

d.

Conservation of momentum

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