Question

1. Explain how the speed of the cylinder is made independent of external load variations F in the following circuit. Explain the construction and operating principle of the 2-way flow control valve.

          1.
Explain how the speed of the cylinder is made independent of external load variations
F in the following circuit. Explain the construction and operating principle of the 2-way
flow control valve.
        
1.
Explain how the speed of the cylinder is made independent of external load variations
F in the following circuit. Explain the construction and operating principle of the 2-way
flow control valve.

Added by Alex H.

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University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
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Explain how the speed of the cylinder is made independent of external load variations F in the following circuit. Explain the construction and operating principle of the 2-way flow control valve. Explain how the speed of the cylinder is made independent of external load variations F in the following circuit. Explain the construction and operating principle of the 2-way flow control valve.
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Transcript

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00:01 So here in this question we have to explain and show how bernoulli's principle and volume flow rate conservation are derived.
00:06 So here bernoulli's theorem first we are considering about the bernoulli's theorem.
00:15 So according to bernoulli's theorem we can say that the sum of the energies which is possessed by a flowing ideal liquid at a point is constant provided that provided that the liquid is incompressible and non -vicious and we can say that the flow is streamlined.
01:07 So from here to derive this we are considering that this is equals to the potential energy plus kinetic energy plus pressure energy that is equals to a constant.
01:19 So this from here is gh plus 1 divided by 2v square plus p divided by p that is equals to a constant.
01:27 Let's say this is equation number one.
01:29 So here the relationship is called bernoulli's theorem if we divide this by g.
01:35 So this equation will be h plus 1 divided by 2 of v square divided by g plus v square divided by g plus p divided by the p of g that is equals to c dash.
01:47 Let's say this is our equation number second and this is called bernoulli's constant where c dash is another coefficient.
01:54 So this is nothing but the bernoulli's theorem.
01:59 Now we are considering that for a horizontal horizontal flow we are considering here.
02:08 So for a horizontal flow h remains same throughout...
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