Weight of Material on Length of Weighing Platform Solution

STEP 0: Pre-Calculation Summary
Formula Used
Weight of Material = (Flow Rate*Length)/Speed of Body
Wl = (vf*L)/s
This formula uses 4 Variables
Variables Used
Weight of Material - (Measured in Kilogram) - Weight of Material is the total weight of the material used in a batch.
Flow Rate - (Measured in Cubic Meter per Second) - Flow Rate is the amount of fluid that flows within a given time.
Length - (Measured in Meter) - Length is the measurement or extent of something from end to end.
Speed of Body - (Measured in Meter per Second) - Speed of Body is equal to the distance traveled by the body in one second.
STEP 1: Convert Input(s) to Base Unit
Flow Rate: 7.55 Cubic Meter per Second --> 7.55 Cubic Meter per Second No Conversion Required
Length: 3.4 Meter --> 3.4 Meter No Conversion Required
Speed of Body: 0.9 Meter per Second --> 0.9 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Wl = (vf*L)/s --> (7.55*3.4)/0.9
Evaluating ... ...
Wl = 28.5222222222222
STEP 3: Convert Result to Output's Unit
28.5222222222222 Kilogram --> No Conversion Required
FINAL ANSWER
28.5222222222222 28.52222 Kilogram <-- Weight of Material
(Calculation completed in 00.004 seconds)

Credits

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Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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25 Liquid Measurement Calculators

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Go Difference in Liquid Level = ((Capacitance-Capacitance with No Liquid Output)*Height)/(Capacitance with No Liquid Output*Magnetic Permeability)
Pipe Diameter
Go Diameter of Pipe = (Friction Factor*Length*(Average Velocity^2))/(2*Head Loss Due to Friction*Earth’s Geocentric Gravitational Constant)
Drag Coefficient of Pipe
Go Drag Coefficient = Force*(2*Acceleration Due to Gravity)/(Specific Weight Fluid*Area of Cross-Section*Velocity of Fluid)
Resisting Motion in fluid
Go Resisting Motion in Fluid = (Coefficient of Velocity*Area of Cross-Section*Velocity of Fluid)/Distance
Absolute Viscosity
Go Absolute Viscosity of Fluid = (Viscosity of Fluid*Diameter of Pipe*Density of Fluid)/Reynolds Number
Density of Liquid
Go Density of Fluid = Reynolds Number*Absolute Viscosity of Fluid/(Viscosity of Fluid*Diameter of Pipe)
Reynolds number of fluid flowing in Pipe
Go Reynolds Number = (Velocity of Fluid*Diameter of Pipe*Density of Fluid)/Absolute Viscosity of Fluid
Weight of Body in Liquid
Go Weight of Material = Weight of Air-(Immersed Depth*Specific Weight Fluid*Area of Cross-Section)
Float diameter
Go Diameter of Pipe = sqrt(4*Buoyancy Force/(Specific Weight Fluid*Length))
Cross-Sectional Area of Object
Go Area of Cross-Section = Buoyancy Force/(Immersed Depth*Specific Weight Fluid)
Immersed Depth
Go Immersed Depth = Buoyancy Force/(Area of Cross-Section*Specific Weight Fluid)
Buoyancy
Go Buoyancy Force = Immersed Depth*Area of Cross-Section*Specific Weight Fluid
Buoyancy Force on Cylindrical Displacer
Go Buoyancy Force = (Specific Weight Fluid*(Diameter of Pipe^2)*Length)/4
Length of displacer submerged in liquid
Go Length = 4*Buoyancy Force/(Specific Weight Fluid*(Diameter of Pipe^2))
Specific Weight of Liquid in Manometer
Go Pressure Difference = Specific Weight Fluid*Difference of Height of Liquid in Column
Height of liquid in column
Go Difference of Height of Liquid in Column = Pressure Difference/Specific Weight Fluid
Weight of Material on Length of Weighing Platform
Go Weight of Material = (Flow Rate*Length)/Speed of Body
Mass of Dry Air or Gas in Mixture
Go Mass of Gas = Mass of Water Vapor/Inside Humidity Ratio
Mass of Water Vapor in Mixture
Go Mass of Water Vapor = Inside Humidity Ratio*Mass of Gas
Flow Rate
Go Flow Rate = Area of Cross-Section*Average Velocity
Weight of Material in Container
Go Weight of Material = Volume*Specific Weight Fluid
Dynamic viscosity
Go Dynamic Viscosity of Fluid = Couple Moment/Force
Depth of Fluid
Go Depth = Change in Pressure/Specific Weight Fluid
Mass Flow Rate
Go Mass Flow Rate = Density of Fluid*Flow Rate
Volume of Material in Container
Go Volume = Area of Cross-Section*Depth

Weight of Material on Length of Weighing Platform Formula

Weight of Material = (Flow Rate*Length)/Speed of Body
Wl = (vf*L)/s

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How to Calculate Weight of Material on Length of Weighing Platform?

Weight of Material on Length of Weighing Platform calculator uses Weight of Material = (Flow Rate*Length)/Speed of Body to calculate the Weight of Material, The Weight of material on length of weighing platform formula is defined as total weight that has been placed on weighing platform of machine. Weight of Material is denoted by Wl symbol.

How to calculate Weight of Material on Length of Weighing Platform using this online calculator? To use this online calculator for Weight of Material on Length of Weighing Platform, enter Flow Rate (vf), Length (L) & Speed of Body (s) and hit the calculate button. Here is how the Weight of Material on Length of Weighing Platform calculation can be explained with given input values -> 28.52222 = (7.55*3.4)/0.9.

FAQ

What is Weight of Material on Length of Weighing Platform?
The Weight of material on length of weighing platform formula is defined as total weight that has been placed on weighing platform of machine and is represented as Wl = (vf*L)/s or Weight of Material = (Flow Rate*Length)/Speed of Body. Flow Rate is the amount of fluid that flows within a given time, Length is the measurement or extent of something from end to end & Speed of Body is equal to the distance traveled by the body in one second.
How to calculate Weight of Material on Length of Weighing Platform?
The Weight of material on length of weighing platform formula is defined as total weight that has been placed on weighing platform of machine is calculated using Weight of Material = (Flow Rate*Length)/Speed of Body. To calculate Weight of Material on Length of Weighing Platform, you need Flow Rate (vf), Length (L) & Speed of Body (s). With our tool, you need to enter the respective value for Flow Rate, Length & Speed of Body 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 Weight of Material?
In this formula, Weight of Material uses Flow Rate, Length & Speed of Body. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Weight of Material = Weight of Air-(Immersed Depth*Specific Weight Fluid*Area of Cross-Section)
  • Weight of Material = Volume*Specific Weight Fluid
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