Weight on Wheels using Grade Resistance for Motion on Slope Solution

STEP 0: Pre-Calculation Summary
Formula Used
Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade))
W = (G/(Rg*PG))
This formula uses 4 Variables
Variables Used
Weight on Wheels - (Measured in Kilogram) - Weight on Wheels is the weight of an equipment is resting on its wheels.
Grade Resistance - (Measured in Newton) - Grade Resistance is the force, due to gravity, that resists the movement of a vehicle up a slope.
Grade Resistance Factor - (Measured in Newton per Kilogram) - Grade Resistance Factor is considered to have a grade resistance equal to 1% of the vehicle's weight.
Percent Grade - Percent Grade refers to the tangent of the angle of that surface to the horizontal.
STEP 1: Convert Input(s) to Base Unit
Grade Resistance: 9.99 Newton --> 9.99 Newton No Conversion Required
Grade Resistance Factor: 4.97 Newton per Kilogram --> 4.97 Newton per Kilogram No Conversion Required
Percent Grade: 4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
W = (G/(Rg*PG)) --> (9.99/(4.97*4))
Evaluating ... ...
W = 0.50251509054326
STEP 3: Convert Result to Output's Unit
0.50251509054326 Kilogram --> No Conversion Required
FINAL ANSWER
0.50251509054326 0.502515 Kilogram <-- Weight on Wheels
(Calculation completed in 00.004 seconds)

Credits

Created by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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National Institute of Technology Karnataka (NITK), Surathkal
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12 Earth Moving Calculators

Rolling Resistance to Motion of Wheeled Vehicles
Go Rolling Resistance = (Rolling Resistance Factor*Weight on Wheels)+(Tire Penetration Factor*Tire Penetration*Weight on Wheels)
Weight on Wheels given Rolling Resistance
Go Weight on Wheels = (Rolling Resistance/(Rolling Resistance Factor+Tire Penetration Factor*Tire Penetration))
Total Road Resistance given Rolling Resistance and Grade Resistance
Go Total Road Resistance = ((0.02+0.015*Tire Penetration+0.01*Percent Grade)*Weight on Wheels)
Weight on Wheels given Total Road Resistance
Go Weight on Wheels = (Total Road Resistance/(0.02+0.015*Tire Penetration+0.01*Percent Grade))
Grade Resistance Factor given Grade Resistance for Motion on Slope
Go Grade Resistance Factor = (Grade Resistance/(Percent Grade*Weight on Wheels))
Weight on Wheels using Grade Resistance for Motion on Slope
Go Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade))
Percent Grade given Grade Resistance for Motion on Slope
Go Percent Grade = (Grade Resistance/(Grade Resistance Factor*Weight on Wheels))
Grade Resistance for Motion on Slope
Go Grade Resistance = Grade Resistance Factor*Percent Grade*Weight on Wheels
Rolling Resistance when Rolling Resistance Factor is Two Percent
Go Rolling Resistance = (0.02+0.015*Tire Penetration)*Weight on Wheels
Usable Pull to Overcome Loss of Power with Altitude
Go Usable Pull = (Coefficient of Traction*Weight on Wheels)
Coefficient of Traction given Usable Pull
Go Coefficient of Traction = (Usable Pull/Weight on Wheels)
Weight on Drivers given Usable Pull
Go Weight on Wheels = (Usable Pull/Coefficient of Traction)

Weight on Wheels using Grade Resistance for Motion on Slope Formula

Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade))
W = (G/(Rg*PG))

What is Grade Resistance?

The force, due to gravity, that resists the movement of a vehicle up a slope.The grade of a road is defined as a measure of the road's steepness as it rises and falls along its route. In other words, it is the magnitude of its incline or slope. The grade of a highway is a measure of its incline or slope.

How to Calculate Weight on Wheels using Grade Resistance for Motion on Slope?

Weight on Wheels using Grade Resistance for Motion on Slope calculator uses Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade)) to calculate the Weight on Wheels, The Weight on Wheels using Grade Resistance for Motion on Slope is defined as the weight on wheels of the vehicle which is moving on a area which have slope. Weight on Wheels is denoted by W symbol.

How to calculate Weight on Wheels using Grade Resistance for Motion on Slope using this online calculator? To use this online calculator for Weight on Wheels using Grade Resistance for Motion on Slope, enter Grade Resistance (G), Grade Resistance Factor (Rg) & Percent Grade (PG) and hit the calculate button. Here is how the Weight on Wheels using Grade Resistance for Motion on Slope calculation can be explained with given input values -> 0.502515 = (9.99/(4.97*4)).

FAQ

What is Weight on Wheels using Grade Resistance for Motion on Slope?
The Weight on Wheels using Grade Resistance for Motion on Slope is defined as the weight on wheels of the vehicle which is moving on a area which have slope and is represented as W = (G/(Rg*PG)) or Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade)). Grade Resistance is the force, due to gravity, that resists the movement of a vehicle up a slope, Grade Resistance Factor is considered to have a grade resistance equal to 1% of the vehicle's weight & Percent Grade refers to the tangent of the angle of that surface to the horizontal.
How to calculate Weight on Wheels using Grade Resistance for Motion on Slope?
The Weight on Wheels using Grade Resistance for Motion on Slope is defined as the weight on wheels of the vehicle which is moving on a area which have slope is calculated using Weight on Wheels = (Grade Resistance/(Grade Resistance Factor*Percent Grade)). To calculate Weight on Wheels using Grade Resistance for Motion on Slope, you need Grade Resistance (G), Grade Resistance Factor (Rg) & Percent Grade (PG). With our tool, you need to enter the respective value for Grade Resistance, Grade Resistance Factor & Percent Grade 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 on Wheels?
In this formula, Weight on Wheels uses Grade Resistance, Grade Resistance Factor & Percent Grade. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Weight on Wheels = (Rolling Resistance/(Rolling Resistance Factor+Tire Penetration Factor*Tire Penetration))
  • Weight on Wheels = (Total Road Resistance/(0.02+0.015*Tire Penetration+0.01*Percent Grade))
  • Weight on Wheels = (Usable Pull/Coefficient of Traction)
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