There are two hole O1 and O2 in a tank of height H . The water emerging from O1 and O2 strikes the ground at the same points, as shown in figure. Then

1. H=h1+h2

2. H=h2-h1

3. H=h1h2

4. None of these

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With the increase in temperature, the surface tension of a liquid

(1) increases

(2) decreases

(3) remains the same

(4) changes erratically

 70%
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Water flows in a streamlined manner through a capiliary tube of radius a, the pressure difference being p and the rate of flow Q. If the radius is reduced to a/2 and the pressure increased to 2p, the rate of flow becomes

(1) 4Q

(2) Q

(3) Q4

(4) Q8

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An object of w and density ρ is submerged in liquid of density σ, its apparent weight will be

(1) ρ-σ

(2) ρ-σ/w

(3) w1-σρ

(4) w1-ρσ

 54%
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A person swimming in a fresh water pool swims, obeying

(1) Newton's second law

(2) gravitational law

(3) Newton's third law

(4) Newton's first law 

 71%
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A container has a small hole at its bottom. Area of cross-section of the hole is A1 and that of the container is A2. Liquid is poured in the containor at a constant rate Q m3/s
The maximum level of liquid in the container will be

(1) Q22g A1A2

(2) Q22g A12

(3) Q2g A1A2

(4) Q22g A22

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A rectangular vessel when full of water takes 10 minutes to be emptied through an orifice in its bottom. How much time will it take to be emptied when half filled with water

1. 9 minute

2. 7 minute

3. 5 minute

4. 3 minute

 51%
PMT - 1997
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Two rain drops of same radii 'r', falling with terminal velocity 'v' merge and form a bigger drop of radius R. The terminal velocity of the bigger drop is

1. vRr

2. vR2r2

3. v

4. 2v

 62%
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Water flows along a horizonatl pipe whose cross-section is not constant. The pressure is 1 cm of Hg where the velocity is 35 cms-1. At a point where the velocity is 65 cms-1, the pressure will be

1. 0.89 cm of Hg

2. 8.9 cm of Hg

3. 0.5 cm of Hg

4. 1 cm of Hg

 

PMT - 2009
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If two soaps bubbles of equal radii r coalesce  then the radius of curvature of interface between two bubble will be

1. r

2. 0

3. infinity

4. r2

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