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Question

Explain why
(a) To keep a piece of paper horizontal, you should blow over, not under, it .
(b) When we try to close a water tap with our fingers, fast jets of water gush through the openings between our fingers.
(c) The size of the needle of a syringe controls flow rate better than the thumb pressure exerted by a doctor while administering an injection.
(d) A fluid flowing out of a small hole in a vessel results in a backward thrust on the vessel.
(e) A spinning cricket ball in air does not follow a parabolic trajectory.

Solution
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a)-When air is blown under a paper, the velocity of air is greater under the paper than it is above it. As per Bernoulli’s principle, atmospheric pressure reduces under the makes the paper fall. To keep a piece of paper horizontal, one should blow over it. This increases the velocity of air above the paper. As per Bernoulli’s principle, atmospheric pressure reduces above the paper and the paper remains horizontal.
b)According to the equation of continuity:
Area×velocity=C , as we decrease the area ,velocity increases .
For a smaller opening, the velocity of flow of a fluid is greater than it is when the opening is bigger. When we try to close a tap of water with our fingers, fast jets of water gush through the openings between our fingers. This is because very small openings are left for the water to flow out of the pipe. Hence, area and velocity are inversely proportional to each other .
c)- Small opening of a syringe needle controls the velocity of the blood flowing out. This is because of the equation of continuity. At the constriction point of the syringe system, the flow rate suddenly increases to a high value for a constant thumb pressure applied.
d)-When a fluid flows out from a small hole in a vessel, the vessel receives a backward. thrust. A fluid flowing out from a small hole has a large velocity according to the equation of continuity:
Area×velocity=C
According to the law of conservation of momentum, the vessel attains a backward velocity because there are no external forces acting on the system
e)- spinning cricket ball has two simultaneous motions-rotary and linear. These two types of motion oppose the effect of each other. This decreases the velocity of air flowing below the ball. Hence, the pressure on the upper side of the ball becomes lesser than that on the lower side. An upward force acts upon the ball. Therefore, the ball takes a curved path. It does not follow a parabolic path.

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Similar Questions
Q1

Explain why
a) To keep a piece of paper horizontal, you should blow over, not under, it

b) When we try to close a water tap with our fingers, fast jets of water gush through the openings between our fingers

c) The size of the needle of a syringe controls flow rate better than the thumb pressure exerted by a doctor while administering an injection

d) A fluid flowing out of a small hole in a vessel results in a backward thrust on the vessel

e) A spinning cricket ball in air does not follow a parabolic trajectory

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Q2
Explain why
(a) To keep a piece of paper horizontal, you should blow over, not under, it .
(b) When we try to close a water tap with our fingers, fast jets of water gush through the openings between our fingers.
(c) The size of the needle of a syringe controls flow rate better than the thumb pressure exerted by a doctor while administering an injection.
(d) A fluid flowing out of a small hole in a vessel results in a backward thrust on the vessel.
(e) A spinning cricket ball in air does not follow a parabolic trajectory.
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Q3

The stream of water flowing through the tap remains the same even if we try to disturb it with our fingers. Which of the following property is responsible for this?


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Q4
A stream of water flowing horizontally with a speed of 15 m s¯¹ gushes out of a tube of cross-sectional area 10¯² m², and hits a vertical wall nearby. What is the force exerted on the wall by the impact of water, assuming it does not rebound ?
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Q5
A stream of water flowing horizontally with a speed of 15 m/s2 gushes out of a tube of cross - sectional area 102 m2, and hits at a vertical wall nearby. What is the force (in newtons) exerted on the wall by the impact of water, assuming it does not rebound?
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