Specific Weight of Liquid given Force exerted on Tank due to Jet Solution

STEP 0: Pre-Calculation Summary
Formula Used
Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2))
γf = ((F*[g])/(AJet*(v)^2))
This formula uses 1 Constants, 4 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Variables Used
Specific Weight of Liquid - (Measured in Kilonewton per Cubic Meter) - Specific Weight of Liquid represents the force exerted by gravity on a unit volume of a fluid.
Force of Fluid - (Measured in Newton) - Force of Fluid is the force resulting from liquid pressure acting over an area.
Cross Sectional Area of Jet - (Measured in Square Meter) - Cross Sectional Area of Jet is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point.
Actual Velocity - (Measured in Meter per Second) - Actual Velocity is a velocity that is measured directly from a displacement-time graph and it represents the true velocity of an object.
STEP 1: Convert Input(s) to Base Unit
Force of Fluid: 240 Newton --> 240 Newton No Conversion Required
Cross Sectional Area of Jet: 1.2 Square Meter --> 1.2 Square Meter No Conversion Required
Actual Velocity: 14.1 Meter per Second --> 14.1 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
γf = ((F*[g])/(AJet*(v)^2)) --> ((240*[g])/(1.2*(14.1)^2))
Evaluating ... ...
γf = 9.86534882551179
STEP 3: Convert Result to Output's Unit
9865.3488255118 Newton per Cubic Meter -->9.86534882551179 Kilonewton per Cubic Meter (Check conversion here)
FINAL ANSWER
9.86534882551179 9.865349 Kilonewton per Cubic Meter <-- Specific Weight of Liquid
(Calculation completed in 00.004 seconds)

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7 Jet Propulsion of Orifice Tank Calculators

Actual Velocity given Force exerted on Tank due to Jet
Go Actual Velocity = sqrt((Force of Fluid*[g])/(Specific Weight of Liquid*Cross Sectional Area of Jet))
Head over Jet Hole given Force exerted on Tank due to Jet
Go Impulse Height = (0.5*Force of Fluid)/((Coefficient of Velocity^2)*Specific Weight of Liquid*Cross Sectional Area of Jet)
Specific Weight of Liquid given Coefficient of Velocity for Jet
Go Specific Weight of Liquid = (0.5*Force of Fluid)/(Cross Sectional Area of Jet*Impulse Height*Coefficient of Velocity^2)
Area of Hole given Coefficient of Velocity for Jet
Go Cross Sectional Area of Jet = (0.5*Force of Fluid)/(Specific Weight of Liquid*Impulse Height*Coefficient of Velocity^2)
Specific Weight of Liquid given Force exerted on Tank due to Jet
Go Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2))
Area of Jet given Force exerted on Tank due to Jet
Go Cross Sectional Area of Jet = Force of Fluid/(Specific Weight of Liquid*(Actual Velocity^2)/[g])
Force exerted on Tank due to Jet
Go Force of Fluid = Specific Weight of Liquid*Cross Sectional Area of Jet*(Actual Velocity^2)/[g]

Specific Weight of Liquid given Force exerted on Tank due to Jet Formula

Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2))
γf = ((F*[g])/(AJet*(v)^2))

What is Specific Weight of Fluid?

In fluid mechanics, specific weight represents the force exerted by gravity on a unit volume of a fluid. For this reason, units are expressed as force per unit volume (e.g., N/m3 or lbf/ft3). Specific weight can be used as a characteristic property of a fluid.

How to Calculate Specific Weight of Liquid given Force exerted on Tank due to Jet?

Specific Weight of Liquid given Force exerted on Tank due to Jet calculator uses Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2)) to calculate the Specific Weight of Liquid, The Specific Weight of Liquid given Force exerted on Tank due to Jet is defined as weight per unit volume of fluid. Specific Weight of Liquid is denoted by γf symbol.

How to calculate Specific Weight of Liquid given Force exerted on Tank due to Jet using this online calculator? To use this online calculator for Specific Weight of Liquid given Force exerted on Tank due to Jet, enter Force of Fluid (F), Cross Sectional Area of Jet (AJet) & Actual Velocity (v) and hit the calculate button. Here is how the Specific Weight of Liquid given Force exerted on Tank due to Jet calculation can be explained with given input values -> 0.009865 = ((240*[g])/(1.2*(14.1)^2)).

FAQ

What is Specific Weight of Liquid given Force exerted on Tank due to Jet?
The Specific Weight of Liquid given Force exerted on Tank due to Jet is defined as weight per unit volume of fluid and is represented as γf = ((F*[g])/(AJet*(v)^2)) or Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2)). Force of Fluid is the force resulting from liquid pressure acting over an area, Cross Sectional Area of Jet is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point & Actual Velocity is a velocity that is measured directly from a displacement-time graph and it represents the true velocity of an object.
How to calculate Specific Weight of Liquid given Force exerted on Tank due to Jet?
The Specific Weight of Liquid given Force exerted on Tank due to Jet is defined as weight per unit volume of fluid is calculated using Specific Weight of Liquid = ((Force of Fluid*[g])/(Cross Sectional Area of Jet*(Actual Velocity)^2)). To calculate Specific Weight of Liquid given Force exerted on Tank due to Jet, you need Force of Fluid (F), Cross Sectional Area of Jet (AJet) & Actual Velocity (v). With our tool, you need to enter the respective value for Force of Fluid, Cross Sectional Area of Jet & Actual 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 Specific Weight of Liquid?
In this formula, Specific Weight of Liquid uses Force of Fluid, Cross Sectional Area of Jet & Actual Velocity. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Specific Weight of Liquid = (0.5*Force of Fluid)/(Cross Sectional Area of Jet*Impulse Height*Coefficient of Velocity^2)
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