Log in Sign up
Back to Discover
⚛️

Fictitious force

physical science Maturity 11-13

Some forces are not real.

Coriolis.gif
Coriolis.gif
They only seem to happen. They happen when you move fast. Like in a fast car. You might feel a push. But nothing is pushing you. It is just your body moving. Can you feel a push in a car?
Accelerating car.PNG
Accelerating car.PNG

48 words

Some forces are not real.

Coriolis.gif
Coriolis.gif
They only seem to happen. This happens when you move or turn fast.
Accelerating car.PNG
Accelerating car.PNG

Imagine you are in a fast car. The car turns a corner. You might feel a push to the side. But nothing is actually pushing you.

Your body just wants to keep moving straight. This can make it feel like a force is there.

This can also happen on a spinning ride. You might feel pushed outward. This is not a real push from an object.

These fake forces happen when things speed up or turn. They help us describe how things move.

Carousel walk.PNG
Carousel walk.PNG

106 words

Have you ever felt a push while riding in a turning car?

Accelerating car.PNG
Accelerating car.PNG
This feeling is not from a real push. It comes from a fictitious force. This is a force that seems to act on an object. It only appears when the person watching is moving or turning.
Coriolis.gif
Coriolis.gif

Real forces come from objects touching or pulling each other. Fictitious forces are different. They happen because of inertia. Inertia is the way an object keeps doing what it is doing. If a car turns left, your body wants to keep going straight. To you, it feels like a force pushed you to the right.

Carframe.gif
Carframe.gif

There are a few types of these forces. Centrifugal force is the push you feel toward the outside of a spinning ride. The Coriolis force affects things moving in a rotating system, like wind on Earth. There is also the Euler force. This happens when a spinning system changes its speed. These forces help scientists study how things move in a changing world.

Carousel walk.PNG
Carousel walk.PNG

172 words

Have you ever felt a strange push while riding in a turning car?

Accelerating car.PNG
Accelerating car.PNG
This sensation is actually a fictitious force. A fictitious force is an imaginary influence that appears to act on an object. It happens when you describe motion from a non-inertial frame of reference. This means the person watching is in a system that is accelerating. Unlike real forces, these do not come from physical contact or pulls. They are just a way to explain motion when the observer is moving.
Coriolis.gif
Coriolis.gif

To understand how this works, think about how things move step by step. A real force comes from physical interactions, like electromagnetism or objects touching. A fictitious force happens because of inertia. Inertia is the tendency of an object to keep doing what it is already doing. Imagine you are in a car that suddenly moves forward.

Carframe.gif
Carframe.gif
Before you touch the seat, you feel like you are moving backward. This happens because the car accelerates while your body tries to stay still. To you, it feels like a force pushed you into the backrest. In reality, the car simply moved forward under you.

Scientists use different names for these forces depending on how the motion happens. One type is the centrifugal force, which pushes objects outward in a spinning system. Another is the Coriolis force, which affects objects moving within a rotating frame. This force can influence wind parcels moving on our planet. There is also the Euler force, which appears when a rotating system changes its speed. These forces are essential for math in fields like meteorology and astrophysics. They help scientists use Newton's second law in accelerating systems.

History shows us how we can detect these invisible effects. A scientist named Léon Foucault used a device called a Foucault pendulum. His work helped prove that the Coriolis force comes from Earth's rotation.

Corioliskraftanimation.gif
Corioliskraftanimation.gif
The Earth is a rotating reference frame for us. Because it spins, we must account for three fictitious forces to solve physics problems. These are the Coriolis force, the centrifugal force, and the Euler force. The Euler force is usually ignored because Earth's spin rate changes very little. Even though they are weak, these forces are real to anyone on Earth.

These ideas connect to many things you see every day. You might feel centrifugal force on a spinning carousel or a centrifuge.

Carousel walk.PNG
Carousel walk.PNG
Even the way we understand gravity might be linked to this. Some theories in general relativity suggest gravity is like a fictitious force. This happens because heavy objects bend the very fabric of space and time. From a different view, astronauts feel weightless because they are in free-fall orbits. Whether it is weather patterns or navigating a ship, these forces help explain our moving world.

463 words

A fictitious force is an apparent influence that seems to act on an object when its motion is observed from a non-inertial frame of reference. In physics, a non-inertial frame is a system that is accelerating rather than moving at a constant velocity. Unlike real forces, which result from physical interactions like contact or electromagnetism, fictitious forces do not arise from any actual physical push or pull between objects. Instead, they are a consequence of the observer's own acceleration. These forces are often called inertial forces or pseudo-forces because they are used to explain why an object appears to deviate from its path within an accelerating system.

Coriolis.gif
Coriolis.gif

To understand the mechanism, one must look at the role of inertia. Inertia is the tendency of an object to resist changes in its state of motion. When a reference frame accelerates, the objects within that frame may not accelerate at the same rate. For example, imagine a passenger in a vehicle that suddenly accelerates forward.

Accelerating car.PNG
Accelerating car.PNG
Before the passenger's body touches the backrest, they may feel as though they are being pushed backward. This sensation is a pseudo-force. In reality, no force is pushing the person; rather, the car is accelerating forward while the person's inertia keeps them in their original state of motion. The apparent force only disappears once a real contact force, such as the seat hitting the person, occurs.
Carframe.gif
Carframe.gif

Scientists categorize fictitious forces based on how the reference frame is accelerating. There are four primary types defined for commonly occurring motions. The first is caused by rectilinear acceleration, which is acceleration in a straight line. The second is the centrifugal force, which appears to push objects outward in a rotating system, such as a spinning carousel.

Carousel walk.PNG
Carousel walk.PNG
The third is the Coriolis force, which affects objects that are already moving relative to a rotating frame. This force is vital in meteorology for understanding how wind parcels move across the globe. The fourth is the Euler force, which arises when a rotating system changes its angular velocity, or its rate of rotation.
Spinframe.gif
Spinframe.gif

History and discovery have helped us understand how to detect these invisible influences. While observers in a closed box moving at a constant velocity cannot detect their own motion, those in an accelerating frame can. One famous demonstration of this was provided by Léon Foucault. He used a device known as a Foucault pendulum to show that the Coriolis force is a result of the Earth's rotation.

Corioliskraftanimation.gif
Corioliskraftanimation.gif
Because the surface of the Earth is a rotating reference frame, scientists must account for the Coriolis force, the centrifugal force, and the Euler force to solve classical mechanics problems accurately on our planet.

On Earth, these forces are generally weak compared to everyday forces like gravity, but they are still measurable. For instance, the Euler force is typically ignored because the Earth's rotation rate changes very little. However, the centrifugal force can be detected through phenomena like the Eötvös effect. This occurs when an object on a ship moving east along the equator appears slightly lighter. If the Earth were to rotate twenty times faster, making a day only about 72 minutes long, these fictitious forces would become much more intense. People in tropical and temperate latitudes would actually need to hold on to avoid being launched into orbit by the centrifugal force.

In the field of astrophysics and general relativity, the concept of fictitious forces takes on even deeper meaning. According to the theory of general relativity, gravity can be viewed as a fictitious force. This is because gravity is described as the result of massive objects bending the fabric of spacetime. In this view, particles follow the curves of spacetime, known as geodesics, rather than being pulled by a traditional force. This perspective helps unify how we understand motion and gravity in the universe.

Moving coordinate system.svg
Moving coordinate system.svg

Ultimately, fictitious forces are essential tools for analyzing motion across many disciplines. They allow researchers in classical mechanics, meteorology, and engineering to apply Newton's second law, F = ma, even when the observer is not in a steady state. From calculating the path of a suitcase in a turning car to understanding the weightlessness experienced by astronauts in free-fall orbits, these forces provide the mathematical framework needed to describe our moving world. They bridge the gap between how we perceive motion and the actual physical reality of the objects involved.

735 words
🖼️ Images & Media (10)
File:Coriolis.gif
Coriolis.gif
File:Accelerating car.PNG
Accelerating car.PNG
File:Carframe.gif
Carframe.gif
File:Corioliskraftanimation.gif
Corioliskraftanimation.gif
File:Spinframe.gif
Spinframe.gif
File:Shellframe.gif
Shellframe.gif
File:Moving coordinate system.svg
Moving coordinate system.svg
File:Orbiter.PNG
Orbiter.PNG
File:Center-facing orbiting coordinate system.PNG
Center-facing orbiting coordinate system.PNG
File:Carousel walk.PNG
Carousel walk.PNG
Up Next
⚛️
Coriolis force
Physical Science
More to explore

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.