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Effective Weight of Particle is difference between total weight and buoyancy. Check FAQs
Wp=wp-fb
Wp - Effective Weight of Particle?wp - Total Weight of Particle?fb - Force due to Buoyancy?

Effective Weight of Particle given Buoyancy Example

With values
With units
Only example

Here is how the Effective Weight of Particle given Buoyancy equation looks like with Values.

Here is how the Effective Weight of Particle given Buoyancy equation looks like with Units.

Here is how the Effective Weight of Particle given Buoyancy equation looks like.

0.09Edit=2.0001Edit-2Edit
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Effective Weight of Particle given Buoyancy Solution

Follow our step by step solution on how to calculate Effective Weight of Particle given Buoyancy?

FIRST Step Consider the formula
Wp=wp-fb
Next Step Substitute values of Variables
Wp=2.0001N-2N
Next Step Prepare to Evaluate
Wp=2.0001-2
Next Step Evaluate
Wp=9.00000000001455E-05kg
Next Step Convert to Output's Unit
Wp=0.0900000000001455g
LAST Step Rounding Answer
Wp=0.09g

Effective Weight of Particle given Buoyancy Formula Elements

Variables
Effective Weight of Particle
Effective Weight of Particle is difference between total weight and buoyancy.
Symbol: Wp
Measurement: WeightUnit: g
Note: Value should be greater than 0.
Total Weight of Particle
Total Weight of Particle is defined as the total force applied by the particle in downward direction .
Symbol: wp
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Force due to Buoyancy
Force due to Buoyancy is the upward force exerted by any fluid upon a body placed in it.
Symbol: fb
Measurement: ForceUnit: N
Note: Value should be greater than 0.

Other Formulas to find Effective Weight of Particle

​Go Effective Weight of Particle
Wp=((43)π(rp)3)(γs-γw)

Other formulas in Effective Weight of Particle category

​Go Unit weight of Particle given Effective Weight of Particle
γs=(Wp(43)π(r)3)+γw
​Go Unit Weight of Water given Effective Weight of Particle
γw=γs-(Wp(43)π(r)3)
​Go Total Weight given Effective Weight of Particle
wp=Wp+fb
​Go Buoyancy given Effective Weight of Particle
fb=wp-Wp

How to Evaluate Effective Weight of Particle given Buoyancy?

Effective Weight of Particle given Buoyancy evaluator uses Effective Weight of Particle = Total Weight of Particle-Force due to Buoyancy to evaluate the Effective Weight of Particle, The Effective Weight of Particle given Buoyancy formula is defined as the calculation of effective weight of particle when we have prior information of other parameters. Effective Weight of Particle is denoted by Wp symbol.

How to evaluate Effective Weight of Particle given Buoyancy using this online evaluator? To use this online evaluator for Effective Weight of Particle given Buoyancy, enter Total Weight of Particle (wp) & Force due to Buoyancy (fb) and hit the calculate button.

FAQs on Effective Weight of Particle given Buoyancy

What is the formula to find Effective Weight of Particle given Buoyancy?
The formula of Effective Weight of Particle given Buoyancy is expressed as Effective Weight of Particle = Total Weight of Particle-Force due to Buoyancy. Here is an example- 90 = 2.00009-2.
How to calculate Effective Weight of Particle given Buoyancy?
With Total Weight of Particle (wp) & Force due to Buoyancy (fb) we can find Effective Weight of Particle given Buoyancy using the formula - Effective Weight of Particle = Total Weight of Particle-Force due to Buoyancy.
What are the other ways to Calculate Effective Weight of Particle?
Here are the different ways to Calculate Effective Weight of Particle-
  • Effective Weight of Particle=((4/3)*pi*(Radius of Particle)^3)*(Unit Weight of Particle-Unit Weight of Water)OpenImg
Can the Effective Weight of Particle given Buoyancy be negative?
No, the Effective Weight of Particle given Buoyancy, measured in Weight cannot be negative.
Which unit is used to measure Effective Weight of Particle given Buoyancy?
Effective Weight of Particle given Buoyancy is usually measured using the Gram[g] for Weight. Kilogram[g], Milligram[g], Ton (Metric)[g] are the few other units in which Effective Weight of Particle given Buoyancy can be measured.
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