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All of the forces together balance out. The resultant of the forces is therefore nil. That applies to all equilibrium.

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What does not happen to a non moving object in equilibrium?

A non-moving object in equilibrium does not accelerate or change velocity. It remains stationary and experiences no net force acting on it.


State the resultant force on you when you are lying stationary in bed?

When you are lying stationary in bed, the resultant force acting on you is zero. This is because the forces acting on you, such as gravity pulling you downward and the normal force from the bed pushing upward, are balanced.


Explain when a matter is in a state of equilibrium?

It is in equilibrium when the two conditions are satisfied - there is no net translational equilibrium and no net rotational equilibrium. For translational equilibrium, the summation of forces acting on the matter must equate to zero, which means that there is no resultant force. For rotational equilibrium, the sum of moments must be zero, which means there is no resultant torque. When these two conditions are met, the object will be stationary, i.e. it is in a state of equilibrium.


How do you determine equilibrium and resultant?

To determine equilibrium, you need to check if the sum of all forces acting on an object is zero. If the forces cancel each other out, the object is in equilibrium. Resultant force is the overall force acting on an object, taking into account the magnitude and direction of all individual forces acting on it. Mathematically, it is calculated by adding or subtracting all individual forces vectorially.


What is stationary balance?

Stationary balance refers to a state where an object or system remains still or in a fixed position without any net movement or change in position. It is often used in the context of physics to describe the equilibrium of forces acting on an object.

Related Questions

What does not happen to a non moving object in equilibrium?

A non-moving object in equilibrium does not accelerate or change velocity. It remains stationary and experiences no net force acting on it.


State the resultant force on you when you are lying stationary in bed?

When you are lying stationary in bed, the resultant force acting on you is zero. This is because the forces acting on you, such as gravity pulling you downward and the normal force from the bed pushing upward, are balanced.


Explain when a matter is in a state of equilibrium?

It is in equilibrium when the two conditions are satisfied - there is no net translational equilibrium and no net rotational equilibrium. For translational equilibrium, the summation of forces acting on the matter must equate to zero, which means that there is no resultant force. For rotational equilibrium, the sum of moments must be zero, which means there is no resultant torque. When these two conditions are met, the object will be stationary, i.e. it is in a state of equilibrium.


How do you determine equilibrium and resultant?

To determine equilibrium, you need to check if the sum of all forces acting on an object is zero. If the forces cancel each other out, the object is in equilibrium. Resultant force is the overall force acting on an object, taking into account the magnitude and direction of all individual forces acting on it. Mathematically, it is calculated by adding or subtracting all individual forces vectorially.


What is stationary balance?

Stationary balance refers to a state where an object or system remains still or in a fixed position without any net movement or change in position. It is often used in the context of physics to describe the equilibrium of forces acting on an object.


What are some common static equilibrium problems and solutions encountered in engineering and physics?

Common static equilibrium problems in engineering and physics include analyzing forces acting on a stationary object, determining the stability of structures, and calculating moments of force. Solutions involve applying principles of equilibrium, such as balancing forces and moments, to ensure the object remains stationary.


What is the net force or the resultant force acting on an object in equilibrium?

0. An object in equilibrium has constant velocity, which makes its acceleration 0. Since net force=mass times acceleration, this would make the net force zero. Note that there could be multiple forces acting on the object, but since it is in equilibrium they would have to be equal and opposite in direction, to cancel all of the forces out. This would make the net force zero.


Why is an object in a state of equilibrium could be either in motion or stationary?

An object in a state of equilibrium can be in motion because its velocity is constant (constant speed and direction). It can also be stationary if it is at rest, as long as the forces acting on it are balanced and there is no net force acting to change its state of motion.


What is the magnitude of resultant force in case of concurrent forces in equilibrium?

In the case of concurrent forces in equilibrium, the magnitude of the resultant force is zero. This means that the forces are balanced and cancel each other out, resulting in no net force acting on the object.


At what angle is the resultant force acting?

The angle of the resultant force can be calculated using trigonometry principles such as the Pythagorean theorem and inverse trigonometric functions. Given the magnitudes of the two component forces, you can determine the angle using the formula: angle = arctan(opposite/adjacent). This will help you find the direction in which the resultant force is acting.


When a heavy desk is not moving what kind of forces are acting on it?

When a heavy desk is not moving, the main forces acting on it are the gravitational force pulling it downward and the normal force pushing back up from the ground to support its weight. These two forces are in equilibrium, which is why the desk remains stationary.


Example of moving body which is in equilibrium?

A book resting on a table is an example of a moving body in equilibrium. The book is stationary and not accelerating, meaning the forces acting on it are balanced.