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The Specific Weight of Liquid refers to the weight per unit volume of that substance. Check FAQs
γf=v(14μ)dh/dx(Rinclined2-dradial2)
γf - Specific Weight of Liquid?v - Velocity of Liquid?μ - Dynamic Viscosity?dh/dx - Piezometric Gradient?Rinclined - Inclined Pipes Radius?dradial - Radial Distance?

Specific Weight of Liquid given Flow Velocity of Stream Example

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With units
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Here is how the Specific Weight of Liquid given Flow Velocity of Stream equation looks like with Values.

Here is how the Specific Weight of Liquid given Flow Velocity of Stream equation looks like with Units.

Here is how the Specific Weight of Liquid given Flow Velocity of Stream equation looks like.

0.001Edit=61.57Edit(1410.2Edit)10Edit(10.5Edit2-9.2Edit2)
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Specific Weight of Liquid given Flow Velocity of Stream Solution

Follow our step by step solution on how to calculate Specific Weight of Liquid given Flow Velocity of Stream?

FIRST Step Consider the formula
γf=v(14μ)dh/dx(Rinclined2-dradial2)
Next Step Substitute values of Variables
γf=61.57m/s(1410.2P)10(10.5m2-9.2m2)
Next Step Convert Units
γf=61.57m/s(141.02Pa*s)10(10.5m2-9.2m2)
Next Step Prepare to Evaluate
γf=61.57(141.02)10(10.52-9.22)
Next Step Evaluate
γf=0.980888715345568N/m³
Next Step Convert to Output's Unit
γf=0.000980888715345568kN/m³
LAST Step Rounding Answer
γf=0.001kN/m³

Specific Weight of Liquid given Flow Velocity of Stream Formula Elements

Variables
Specific Weight of Liquid
The Specific Weight of Liquid refers to the weight per unit volume of that substance.
Symbol: γf
Measurement: Specific WeightUnit: kN/m³
Note: Value should be greater than 0.
Velocity of Liquid
The Velocity of Liquid refers to the speed at which the fluid moves through a pipe or channel.
Symbol: v
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Dynamic Viscosity
The Dynamic Viscosity refers to the internal resistance of a fluid to flow when a force is applied.
Symbol: μ
Measurement: Dynamic ViscosityUnit: P
Note: Value should be greater than 0.
Piezometric Gradient
The Piezometric Gradient refers to the measure of the change in hydraulic head (or piezometric head) per unit distance in a given direction within a fluid system.
Symbol: dh/dx
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Inclined Pipes Radius
The Inclined Pipes Radius refers to the distance from the center of the pipe’s cross-section to its inner wall.
Symbol: Rinclined
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Radial Distance
The Radial Distance refers to the distance from a central point, such as the center of a well or pipe, to a point within the fluid system.
Symbol: dradial
Measurement: LengthUnit: m
Note: Value can be positive or negative.

Other Formulas to find Specific Weight of Liquid

​Go Specific Weight of Fluid given Shear Stress
γf=2𝜏dradialdh/dx
​Go Specific Weight of Liquid given Velocity Gradient with Shear Stress
γf=2VGμdh/dxdradial

Other formulas in Laminar Flow Through Inclined Pipes category

​Go Shear Stresses
𝜏=γfdh/dxdradial2
​Go Radius of Elemental Section of Pipe given Shear Stress
dradial=2𝜏γfdh/dx
​Go Piezometric Gradient given Shear Stress
dh/dx=2𝜏γfdradial
​Go Velocity Gradient given Piezometric Gradient with Shear Stress
VG=(γfμ)dh/dx0.5dradial

How to Evaluate Specific Weight of Liquid given Flow Velocity of Stream?

Specific Weight of Liquid given Flow Velocity of Stream evaluator uses Specific Weight of Liquid = Velocity of Liquid/((1/(4*Dynamic Viscosity))*Piezometric Gradient*(Inclined Pipes Radius^2-Radial Distance^2)) to evaluate the Specific Weight of Liquid, The Specific Weight of Liquid given Flow Velocity of Stream is defined as weight per unit volume of liquid in the stream. Specific Weight of Liquid is denoted by γf symbol.

How to evaluate Specific Weight of Liquid given Flow Velocity of Stream using this online evaluator? To use this online evaluator for Specific Weight of Liquid given Flow Velocity of Stream, enter Velocity of Liquid (v), Dynamic Viscosity (μ), Piezometric Gradient (dh/dx), Inclined Pipes Radius (Rinclined) & Radial Distance (dradial) and hit the calculate button.

FAQs on Specific Weight of Liquid given Flow Velocity of Stream

What is the formula to find Specific Weight of Liquid given Flow Velocity of Stream?
The formula of Specific Weight of Liquid given Flow Velocity of Stream is expressed as Specific Weight of Liquid = Velocity of Liquid/((1/(4*Dynamic Viscosity))*Piezometric Gradient*(Inclined Pipes Radius^2-Radial Distance^2)). Here is an example- 9.8E-7 = 61.57/((1/(4*1.02))*10*(10.5^2-9.2^2)).
How to calculate Specific Weight of Liquid given Flow Velocity of Stream?
With Velocity of Liquid (v), Dynamic Viscosity (μ), Piezometric Gradient (dh/dx), Inclined Pipes Radius (Rinclined) & Radial Distance (dradial) we can find Specific Weight of Liquid given Flow Velocity of Stream using the formula - Specific Weight of Liquid = Velocity of Liquid/((1/(4*Dynamic Viscosity))*Piezometric Gradient*(Inclined Pipes Radius^2-Radial Distance^2)).
What are the other ways to Calculate Specific Weight of Liquid?
Here are the different ways to Calculate Specific Weight of Liquid-
  • Specific Weight of Liquid=(2*Shear Stress)/(Radial Distance*Piezometric Gradient)OpenImg
  • Specific Weight of Liquid=(2*Velocity Gradient*Dynamic Viscosity)/(Piezometric Gradient*Radial Distance)OpenImg
Can the Specific Weight of Liquid given Flow Velocity of Stream be negative?
No, the Specific Weight of Liquid given Flow Velocity of Stream, measured in Specific Weight cannot be negative.
Which unit is used to measure Specific Weight of Liquid given Flow Velocity of Stream?
Specific Weight of Liquid given Flow Velocity of Stream is usually measured using the Kilonewton per Cubic Meter[kN/m³] for Specific Weight. Newton per Cubic Meter[kN/m³], Newton per Cubic Centimeter[kN/m³], Newton per Cubic Millimeter[kN/m³] are the few other units in which Specific Weight of Liquid given Flow Velocity of Stream can be measured.
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