Water flows through a frictionless duct with a cross-section varying as shown in the figure. Pressure p at points along the axis is represented by:
         

1. 2.
3. 4.

Subtopic:  Equation of Continuity |
 66%
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Equation of continuity is based on:

1. Conservation of mass
2. Conservation of energy
3. Conservation of angular momentum
4. None of these

Subtopic:  Equation of Continuity |
 67%
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An incompressible liquid travels as shown in the figure. The speed of the fluid in the lower branch will :

1. 1 m/s

2. 1.5 m/s

3. 2.25 m/s

4. 3 m/s

Subtopic:  Equation of Continuity |
 80%
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A wind with speed 40 m/s blows parallel to the roof of a house. The area of the roof is 250 m2. Assuming that the pressure inside the house is atmospheric pressure, the force exerted by the wind on the roof and the direction of the force will be (Pair=1.2kg/m3)

1. 4.8x105N,downwards

2. 4.8x105N,upwards

3. 24x105N,upwards

4. 24x105N,downwards

Subtopic:  Bernoulli's Theorem |
 61%
From NCERT
NEET - 2015
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Water rises to a height h in capillary tube . If the length of capillary tube is above the surface of water is made less than h, then

1. water rises upto the tip of capillary tube and then starts overflowing like a fountain

2. water rises upto the top of capillary tube and stays there without overflowing

3. water rises upto a point a little below the top and stays there

4. water does not rise at all

Subtopic:  Capillary Rise |
 81%
From NCERT
NEET - 2015
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A piece of solid weighs 120 g in air, 80 g in water and 60 g in a liquid. The relative density of the solid and that of the liquid are respectively :

1. 3, 2

2. 2,34

3. 32, 2

4. 3, 32

Subtopic:  Archimedes' Principle |
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An inverted bell lying at the bottom of a lake 47.6 m deep has 50 cm3 of air trapped in it. The bell is brought to the surface of the lake. The volume of the trapped air will be: (atmospheric pressure = 70 cm of Hg and density of Hg = 13.6 g/cm3

1. 350 cm3                               

2. 300 cm3

3. 250 cm3                               

4. 22 cm3

Subtopic:  Pressure |
 57%
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A siphon in use is demonstrated in the following figure. The density of the liquid flowing in the siphon is 1.5 gm/cc. The pressure difference between the point P and S will be:
            

1. 105  N / m 2. 2 × 105  N / m
3. Zero 4. Infinity
Subtopic:  Pressure |
 65%
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The height of a mercury barometer is \(75 ~\text{cm}\) at sea level and \(50 ~\text{cm}\) at the top of a hill. The ratio of the density of mercury to that of air is \(10^4.\) The height of the hill is:

1. \(250 ~\text m\) 2. \(2.5 ~\text {km}\)
3. \(1.25 ~\text {km}\) 4. \(750 ~\text m\)
Subtopic:  Pressure |
 63%
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A body of density d1 is counterpoised by Mg of weights of density d2 in air of density d. Then the true mass of the body is

1. M                                   

2. M1-dd2

3. M1-dd1                       

4. M(1-d/d2)(1-d/d1)

Subtopic:  Archimedes' Principle |
 53%
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