Radial Distance r2 given Torque Exerted on Fluid Formula

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Radial Distance 2 in the impulse momentum definition represents the distance from the reference point to the final position. Check FAQs
r2=(τqflowΔ)+r1V1V2
r2 - Radial Distance 2?τ - Torque Exerted on Fluid?qflow - Rate of Flow?Δ - Delta Length?r1 - Radial Distance 1?V1 - Velocity at Point 1?V2 - Velocity at Point 2?

Radial Distance r2 given Torque Exerted on Fluid Example

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Here is how the Radial Distance r2 given Torque Exerted on Fluid equation looks like with Values.

Here is how the Radial Distance r2 given Torque Exerted on Fluid equation looks like with Units.

Here is how the Radial Distance r2 given Torque Exerted on Fluid equation looks like.

6.3172Edit=(91Edit24Edit49Edit)+2Edit101.2Edit61.45Edit
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Radial Distance r2 given Torque Exerted on Fluid Solution

Follow our step by step solution on how to calculate Radial Distance r2 given Torque Exerted on Fluid?

FIRST Step Consider the formula
r2=(τqflowΔ)+r1V1V2
Next Step Substitute values of Variables
r2=(91N*m24m³/s49m)+2m101.2m/s61.45m/s
Next Step Prepare to Evaluate
r2=(912449)+2101.261.45
Next Step Evaluate
r2=6.31719555193925m
LAST Step Rounding Answer
r2=6.3172m

Radial Distance r2 given Torque Exerted on Fluid Formula Elements

Variables
Radial Distance 2
Radial Distance 2 in the impulse momentum definition represents the distance from the reference point to the final position.
Symbol: r2
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Torque Exerted on Fluid
Torque Exerted on Fluid is described as the turning effect of force on the axis of rotation. In brief, it is a moment of force. It is characterized by τ.
Symbol: τ
Measurement: TorqueUnit: N*m
Note: Value should be greater than 0.
Rate of Flow
Rate of Flow is the rate at which a liquid or other substance flows through a particular channel, pipe, etc.
Symbol: qflow
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.
Delta Length
Delta Length is often used to indicate the difference, or change, in a length of an entity.
Symbol: Δ
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Radial Distance 1
Radial distance 1 in the impulse momentum definition represents the initial distance from the reference point.
Symbol: r1
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Velocity at Point 1
Velocity at Point 1 is the velocity of fluid passing through point 1 in flow.
Symbol: V1
Measurement: SpeedUnit: m/s
Note: Value can be positive or negative.
Velocity at Point 2
velocity at Point 2 is the velocity of fluid passing through point 2 in a flow.
Symbol: V2
Measurement: SpeedUnit: m/s
Note: Value can be positive or negative.

Other formulas in Angular Momentum Principles category

​Go Torque Exerted on Fluid
τ=(qflowΔ)(r2V2-r1V1)
​Go Change in Rate of Flow given Torque Exerted on Fluid
qflow=τr2V2-r1V1Δ

How to Evaluate Radial Distance r2 given Torque Exerted on Fluid?

Radial Distance r2 given Torque Exerted on Fluid evaluator uses Radial Distance 2 = ((Torque Exerted on Fluid/Rate of Flow*Delta Length)+Radial Distance 1*Velocity at Point 1)/Velocity at Point 2 to evaluate the Radial Distance 2, The Radial distance r2 given Torque Exerted on Fluid is defined as the distance from the rotational axis where the torque is applied on a fluid. It represents the lever arm's length, affecting the rotational force and fluid dynamics. Radial Distance 2 is denoted by r2 symbol.

How to evaluate Radial Distance r2 given Torque Exerted on Fluid using this online evaluator? To use this online evaluator for Radial Distance r2 given Torque Exerted on Fluid, enter Torque Exerted on Fluid (τ), Rate of Flow (qflow), Delta Length (Δ), Radial Distance 1 (r1), Velocity at Point 1 (V1) & Velocity at Point 2 (V2) and hit the calculate button.

FAQs on Radial Distance r2 given Torque Exerted on Fluid

What is the formula to find Radial Distance r2 given Torque Exerted on Fluid?
The formula of Radial Distance r2 given Torque Exerted on Fluid is expressed as Radial Distance 2 = ((Torque Exerted on Fluid/Rate of Flow*Delta Length)+Radial Distance 1*Velocity at Point 1)/Velocity at Point 2. Here is an example- 6.317196 = ((91/24*49)+2*101.2)/61.45.
How to calculate Radial Distance r2 given Torque Exerted on Fluid?
With Torque Exerted on Fluid (τ), Rate of Flow (qflow), Delta Length (Δ), Radial Distance 1 (r1), Velocity at Point 1 (V1) & Velocity at Point 2 (V2) we can find Radial Distance r2 given Torque Exerted on Fluid using the formula - Radial Distance 2 = ((Torque Exerted on Fluid/Rate of Flow*Delta Length)+Radial Distance 1*Velocity at Point 1)/Velocity at Point 2.
Can the Radial Distance r2 given Torque Exerted on Fluid be negative?
No, the Radial Distance r2 given Torque Exerted on Fluid, measured in Length cannot be negative.
Which unit is used to measure Radial Distance r2 given Torque Exerted on Fluid?
Radial Distance r2 given Torque Exerted on Fluid is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Radial Distance r2 given Torque Exerted on Fluid can be measured.
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