Weight of Material on Length of Weighing Platform Solution

STEP 0: Pre-Calculation Summary
Formula Used
Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed
Wm = (Q*L)/S
This formula uses 4 Variables
Variables Used
Material Weight Flow - (Measured in Kilogram) - Material Weight Flow refers to the rate at which mass is transported through a system, typically measured in units of weight per unit time, such as kilograms per second.
Mass Flow Rate - (Measured in Kilogram per Second) - Mass Flow Rate is the amount of mass passing through a given cross-sectional area per unit time, representing the quantity of material moving within a fluid system.
Weighing Platform Length - (Measured in Meter) - Weighing Platform Length is the measurement of the platform's horizontal dimension where objects are placed for weighing, ensuring accurate load distribution and measurement of weight.
Conveyer Belt Speed - (Measured in Meter per Second) - Conveyer Belt Speed refers to how quickly the belt moves, influencing the rate at which materials are transported and processed in various industrial applications.
STEP 1: Convert Input(s) to Base Unit
Mass Flow Rate: 0.2 Kilogram per Second --> 0.2 Kilogram per Second No Conversion Required
Weighing Platform Length: 36.5 Meter --> 36.5 Meter No Conversion Required
Conveyer Belt Speed: 0.252 Meter per Second --> 0.252 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Wm = (Q*L)/S --> (0.2*36.5)/0.252
Evaluating ... ...
Wm = 28.968253968254
STEP 3: Convert Result to Output's Unit
28.968253968254 Kilogram --> No Conversion Required
FINAL ANSWER
28.968253968254 28.96825 Kilogram <-- Material Weight Flow
(Calculation completed in 00.004 seconds)

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Created by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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16 Flow Measurement Calculators

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​ Go Drag Coefficient = (Force Flow*2*[g])/(Specific Weight Fluid Flow*Pipe Cross Sectional Area*Fluid Velocity)
Length of Pipe
​ Go Pipe Length = (2*Pipe Diameter*Head Loss due to Friction*[g])/(Friction Factor*Fluid Average Velocity^2)
Pipe Diameter
​ Go Pipe Diameter = (Friction Factor*Pipe Length*Fluid Average Velocity^2)/(2*Head Loss due to Friction*[g])
Head Loss
​ Go Head Loss due to Friction = (Friction Factor*Pipe Length*Fluid Average Velocity^2)/(2*Pipe Diameter*[g])
Density of Liquid
​ Go Fluid Density = (Reynolds Number*Absolute Fluid Viscosity)/(Fluid Velocity*Pipe Diameter)
Reynolds number of fluid flowing in Pipe
​ Go Reynolds Number = (Fluid Velocity*Pipe Diameter*Fluid Density)/Absolute Fluid Viscosity
Absolute Viscosity
​ Go Absolute Fluid Viscosity = (Fluid Velocity*Pipe Diameter*Fluid Density)/Reynolds Number
Loss Coefficient for Various Fitting
​ Go Head Loss Coefficient = (Head Loss due to Friction*2*[g])/(Fluid Average Velocity^2)
Head Loss Due to Fitting
​ Go Head Loss due to Friction = (Head Loss Coefficient*Fluid Average Velocity^2)/(2*[g])
Weight of Material on Length of Weighing Platform
​ Go Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed
Length of weighing platform
​ Go Weighing Platform Length = (Material Weight Flow*Conveyer Belt Speed)/Mass Flow Rate
Speed of Conveyor Belt
​ Go Conveyer Belt Speed = (Weighing Platform Length*Mass Flow Rate)/Material Weight Flow
Average Velocity of Fluid
​ Go Fluid Average Velocity = Volume Flow Rate/Pipe Cross Sectional Area
Flow Rate
​ Go Volume Flow Rate = Pipe Cross Sectional Area*Fluid Average Velocity
Volume Flow Rate
​ Go Volume Flow Rate = Mass Flow Rate/Material Density
Mass Flow Rate
​ Go Mass Flow Rate = Material Density*Volume Flow Rate

Weight of Material on Length of Weighing Platform Formula

Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed
Wm = (Q*L)/S

What is a conveyor belt used for?

One of the basic tools in the material handling industry, belt conveyors are most commonly used in the transportation of bulk materials (grain, salt, coal, ore, sand, etc.). Belt conveyor systems consist of two or more pulleys (a.k.a. drums). An endless loop of carrying medium—the conveyor belt— rotates about them.

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

Weight of Material on Length of Weighing Platform calculator uses Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed to calculate the Material Weight Flow, The Weight of material on length of weighing platform formula is defined as total weight that has been placed on weighing platform of machine. Material Weight Flow is denoted by Wm 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 Mass Flow Rate (Q), Weighing Platform Length (L) & Conveyer Belt Speed (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 -> 28.96825 = (0.2*36.5)/0.252.

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 Wm = (Q*L)/S or Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed. Mass Flow Rate is the amount of mass passing through a given cross-sectional area per unit time, representing the quantity of material moving within a fluid system, Weighing Platform Length is the measurement of the platform's horizontal dimension where objects are placed for weighing, ensuring accurate load distribution and measurement of weight & Conveyer Belt Speed refers to how quickly the belt moves, influencing the rate at which materials are transported and processed in various industrial applications.
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 Material Weight Flow = (Mass Flow Rate*Weighing Platform Length)/Conveyer Belt Speed. To calculate Weight of Material on Length of Weighing Platform, you need Mass Flow Rate (Q), Weighing Platform Length (L) & Conveyer Belt Speed (S). With our tool, you need to enter the respective value for Mass Flow Rate, Weighing Platform Length & Conveyer Belt Speed and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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