Mass of Body B of Smaller Mass Formula

Fx Copy
LaTeX Copy
Mass of Body B is the quantity of matter in an object connected to another body through a string or cord. Check FAQs
mb=Tamb+[g]
mb - Mass of Body B?T - Tension of String?amb - Acceleration of Body in Motion?[g] - Gravitational acceleration on Earth?

Mass of Body B of Smaller Mass Example

With values
With units
Only example

Here is how the Mass of Body B of Smaller Mass equation looks like with Values.

Here is how the Mass of Body B of Smaller Mass equation looks like with Units.

Here is how the Mass of Body B of Smaller Mass equation looks like.

1.1067Edit=14.56Edit3.35Edit+9.8066
You are here -
HomeIcon Home » Category Physics » Category Mechanical » Category Mechanics » fx Mass of Body B of Smaller Mass

Mass of Body B of Smaller Mass Solution

Follow our step by step solution on how to calculate Mass of Body B of Smaller Mass?

FIRST Step Consider the formula
mb=Tamb+[g]
Next Step Substitute values of Variables
mb=14.56N3.35m/s²+[g]
Next Step Substitute values of Constants
mb=14.56N3.35m/s²+9.8066m/s²
Next Step Prepare to Evaluate
mb=14.563.35+9.8066
Next Step Evaluate
mb=1.10666469047972kg
LAST Step Rounding Answer
mb=1.1067kg

Mass of Body B of Smaller Mass Formula Elements

Variables
Constants
Mass of Body B
Mass of Body B is the quantity of matter in an object connected to another body through a string or cord.
Symbol: mb
Measurement: WeightUnit: kg
Note: Value should be greater than 0.
Tension of String
Tension of String is the force exerted by a string on an object, causing it to accelerate or decelerate in a connected system of bodies.
Symbol: T
Measurement: ForceUnit: N
Note: Value can be positive or negative.
Acceleration of Body in Motion
Acceleration of Body in Motion is the rate of change of velocity of an object moving in a circular path connected by strings.
Symbol: amb
Measurement: AccelerationUnit: m/s²
Note: Value can be positive or negative.
Gravitational acceleration on Earth
Gravitational acceleration on Earth means that the velocity of an object in free fall will increase by 9.8 m/s2 every second.
Symbol: [g]
Value: 9.80665 m/s²

Other formulas in Body Passing Over Smooth Pulley category

​Go Tension in String if Both Bodies are Freely Hanging
Th=2mambma+mb[g]
​Go Acceleration of Bodies
abs=ma-mbma+mb[g]

How to Evaluate Mass of Body B of Smaller Mass?

Mass of Body B of Smaller Mass evaluator uses Mass of Body B = Tension of String/(Acceleration of Body in Motion+[g]) to evaluate the Mass of Body B, Mass of Body B of Smaller Mass formula is defined as a measure of the mass of a smaller body in a two-body system, which is essential in understanding the gravitational interactions between celestial objects, such as planets and their moons, or stars and their companions. Mass of Body B is denoted by mb symbol.

How to evaluate Mass of Body B of Smaller Mass using this online evaluator? To use this online evaluator for Mass of Body B of Smaller Mass, enter Tension of String (T) & Acceleration of Body in Motion (amb) and hit the calculate button.

FAQs on Mass of Body B of Smaller Mass

What is the formula to find Mass of Body B of Smaller Mass?
The formula of Mass of Body B of Smaller Mass is expressed as Mass of Body B = Tension of String/(Acceleration of Body in Motion+[g]). Here is an example- 1.106665 = 14.56/(3.35+[g]).
How to calculate Mass of Body B of Smaller Mass?
With Tension of String (T) & Acceleration of Body in Motion (amb) we can find Mass of Body B of Smaller Mass using the formula - Mass of Body B = Tension of String/(Acceleration of Body in Motion+[g]). This formula also uses Gravitational acceleration on Earth constant(s).
Can the Mass of Body B of Smaller Mass be negative?
No, the Mass of Body B of Smaller Mass, measured in Weight cannot be negative.
Which unit is used to measure Mass of Body B of Smaller Mass?
Mass of Body B of Smaller Mass is usually measured using the Kilogram[kg] for Weight. Gram[kg], Milligram[kg], Ton (Metric)[kg] are the few other units in which Mass of Body B of Smaller Mass can be measured.
Copied!