Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel Solution

STEP 0: Pre-Calculation Summary
Formula Used
Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity
v = (((w*G)/wf)-(vf*u))/vf
This formula uses 6 Variables
Variables Used
Velocity of Jet - (Measured in Meter per Second) - Velocity of Jet can be described as the movement of the plate in meters per second.
Work Done - (Measured in Joule) - Work done by/on a system is energy transferred by/to the system to/from its surroundings.
Specific Gravity of Fluid - Specific Gravity of Fluid is the ratio of the specific weight of a substance to the specific weight of a standard fluid.
Weight of Fluid - (Measured in Newton) - Weight of Fluid is the weight of fluid in Newtons or Kilo newton.
Final Velocity - (Measured in Meter per Second) - The Final Velocity is the speed of a moving body after it has reached its maximum acceleration.
Initial Velocity - (Measured in Meter per Second) - Initial Velocity is the velocity at which motion starts.
STEP 1: Convert Input(s) to Base Unit
Work Done: 3.9 Kilojoule --> 3900 Joule (Check conversion here)
Specific Gravity of Fluid: 10 --> No Conversion Required
Weight of Fluid: 12.36 Newton --> 12.36 Newton No Conversion Required
Final Velocity: 40 Meter per Second --> 40 Meter per Second No Conversion Required
Initial Velocity: 35 Meter per Second --> 35 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
v = (((w*G)/wf)-(vf*u))/vf --> (((3900*10)/12.36)-(40*35))/40
Evaluating ... ...
v = 43.8834951456311
STEP 3: Convert Result to Output's Unit
43.8834951456311 Meter per Second --> No Conversion Required
FINAL ANSWER
43.8834951456311 43.8835 Meter per Second <-- Velocity of Jet
(Calculation completed in 00.020 seconds)

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4 Velocity at Outlet Calculators

Velocity at Outlet given Work Done on Wheel
Go Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/(Weight of Fluid*Angular Velocity))-(Final Velocity*Radius of wheel))/Radius of Outlet
Velocity at Outlet given Torque by Fluid
Go Velocity of Jet = (((Torque Exerted on Wheel*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Radius of wheel))/Radius of Outlet
Velocity at Outlet given Power Delivered to Wheel
Go Velocity of Jet = (((Power Delivered*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity
Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel
Go Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity

Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel Formula

Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity
v = (((w*G)/wf)-(vf*u))/vf

What are initial and final velocities?

Initial velocity is the velocity which the body has in the beginning of the given time period and final velocity is the velocity which the body has at the end of the given time period.

How to Calculate Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel?

Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel calculator uses Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity to calculate the Velocity of Jet, The Velocity at outlet given work done if jet leaves in motion of wheel is the rate at which the position changes. The average velocity is the displacement or position change (a vector quantity) per time ratio. Velocity of Jet is denoted by v symbol.

How to calculate Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel using this online calculator? To use this online calculator for Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel, enter Work Done (w), Specific Gravity of Fluid (G), Weight of Fluid (wf), Final Velocity (vf) & Initial Velocity (u) and hit the calculate button. Here is how the Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel calculation can be explained with given input values -> 43.8835 = (((3900*10)/12.36)-(40*35))/40.

FAQ

What is Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel?
The Velocity at outlet given work done if jet leaves in motion of wheel is the rate at which the position changes. The average velocity is the displacement or position change (a vector quantity) per time ratio and is represented as v = (((w*G)/wf)-(vf*u))/vf or Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity. Work done by/on a system is energy transferred by/to the system to/from its surroundings, Specific Gravity of Fluid is the ratio of the specific weight of a substance to the specific weight of a standard fluid, Weight of Fluid is the weight of fluid in Newtons or Kilo newton, The Final Velocity is the speed of a moving body after it has reached its maximum acceleration & Initial Velocity is the velocity at which motion starts.
How to calculate Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel?
The Velocity at outlet given work done if jet leaves in motion of wheel is the rate at which the position changes. The average velocity is the displacement or position change (a vector quantity) per time ratio is calculated using Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity. To calculate Velocity at Outlet given Work Done if Jet leaves in Motion of Wheel, you need Work Done (w), Specific Gravity of Fluid (G), Weight of Fluid (wf), Final Velocity (vf) & Initial Velocity (u). With our tool, you need to enter the respective value for Work Done, Specific Gravity of Fluid, Weight of Fluid, Final Velocity & Initial Velocity 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 of Jet?
In this formula, Velocity of Jet uses Work Done, Specific Gravity of Fluid, Weight of Fluid, Final Velocity & Initial Velocity. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Velocity of Jet = (((Torque Exerted on Wheel*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Radius of wheel))/Radius of Outlet
  • Velocity of Jet = (((Work Done*Specific Gravity of Fluid)/(Weight of Fluid*Angular Velocity))-(Final Velocity*Radius of wheel))/Radius of Outlet
  • Velocity of Jet = (((Power Delivered*Specific Gravity of Fluid)/Weight of Fluid)-(Final Velocity*Initial Velocity))/Final Velocity
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