Rithik Agrawal
National Institute of Technology Karnataka (NITK), Surathkal
Rithik Agrawal has created this Calculator and 400+ more calculators!
M Naveen
National Institute of Technology (NIT), Warangal
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11 Other formulas that calculate the same Output

Velocity of the follower after time t (Cycloidal motion)
Velocity=((Angular velocity of the cam*Stroke of the follower)/Angular displacement of the cam during out stroke)*(1-(cos((2*pi*Angle through which the cam rotates)/(Angular displacement of the cam during out stroke)))) GO
Velocity of the follower for tangent cam with roller follower(contact with straight flanks)
Velocity=Angular velocity of the cam*(Radius of the base circle+Radius of the roller)*(sin(Angle turned by cam from beginning of roller)/((cos(Angle turned by cam from beginning of roller))^2)) GO
Velocity OF A Progressive Wave
Velocity=Wavelength Of A Wave/Time Period Of Progressive Wave GO
Velocity Of The Particle
Velocity=(Quantum Number*Plancks Constant)/(Mass*Radius*2*pi) GO
Velocity due to voltage
Velocity=sqrt((2*[Charge-e]*Velocity of electron)/[Mass-e]) GO
Velocity Of Wave in String
Velocity=sqrt(Tension Of String/Mass Per Unit length) GO
Velocity OF A Progressive Wave(Using Angular Frequency)
Velocity=(Wavelength*Angular Frequency)/(4*pi) GO
Velocity OF A Progressive Wave(Using Frequency)
Velocity=Wavelength Of A Wave*frequency GO
Velocity Of A Wave(Using Wave Number)
Velocity=Angular Frequency/Wave Number GO
Velocity Of Sound In Liquid
Velocity=sqrt(bulk modulus/Density) GO
Velocity Of Sound In Solids
Velocity=sqrt(Elasticity/Density) GO

Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given Formula

Velocity=sqrt(Velocity Head*2*[g])
v=sqrt(V*2*[g])
More formulas
Pressure at Section 1 from Bernoulli Equation GO
Velocity at Section 1 from Bernoulli Equation GO
Datum Height at Section 1 from Bernoulli Equation GO
Piezometric Head for a Steady Non Viscous Flow GO
Pressure when Piezometric Head for a Steady Non Viscous Flow is Given GO
Datum Height when Piezometric Head for a Steady Non Viscous Flow is Given GO
Velocity Head for a Steady Non Viscous Flow is Given GO
Pressure Head for a Steady Non Viscous Flow GO
Pressure when Pressure Head for a Steady Non Viscous Flow is Given GO

What is velocity ?

The velocity of an object is the rate of change of its position with respect to a frame of reference, and is a function of time. Velocity is equivalent to a specification of an object's speed and direction of motion.

How to Calculate Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given?

Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given calculator uses Velocity=sqrt(Velocity Head*2*[g]) to calculate the Velocity, The Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given is defined as velocity of flow of fluid. Velocity and is denoted by v symbol.

How to calculate Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given using this online calculator? To use this online calculator for Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given, enter Velocity Head (V) and hit the calculate button. Here is how the Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given calculation can be explained with given input values -> 4.428691 = sqrt(1*2*[g]).

FAQ

What is Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given?
The Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given is defined as velocity of flow of fluid and is represented as v=sqrt(V*2*[g]) or Velocity=sqrt(Velocity Head*2*[g]). Velocity Head is energy head due to velocity component.
How to calculate Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given?
The Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given is defined as velocity of flow of fluid is calculated using Velocity=sqrt(Velocity Head*2*[g]). To calculate Velocity of Flow when Velocity Head for a Steady Non Viscous Flow is Given, you need Velocity Head (V). With our tool, you need to enter the respective value for Velocity Head and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Velocity?
In this formula, Velocity uses Velocity Head. We can use 11 other way(s) to calculate the same, which is/are as follows -
  • Velocity=Wavelength Of A Wave/Time Period Of Progressive Wave
  • Velocity=Wavelength Of A Wave*frequency
  • Velocity=(Wavelength*Angular Frequency)/(4*pi)
  • Velocity=Angular Frequency/Wave Number
  • Velocity=sqrt(Tension Of String/Mass Per Unit length)
  • Velocity=sqrt(bulk modulus/Density)
  • Velocity=sqrt(Elasticity/Density)
  • Velocity=sqrt((2*[Charge-e]*Velocity of electron)/[Mass-e])
  • Velocity=(Quantum Number*Plancks Constant)/(Mass*Radius*2*pi)
  • Velocity=((Angular velocity of the cam*Stroke of the follower)/Angular displacement of the cam during out stroke)*(1-(cos((2*pi*Angle through which the cam rotates)/(Angular displacement of the cam during out stroke))))
  • Velocity=Angular velocity of the cam*(Radius of the base circle+Radius of the roller)*(sin(Angle turned by cam from beginning of roller)/((cos(Angle turned by cam from beginning of roller))^2))
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