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Collision

physical science Maturity 11-13

Things hit each other.

Collision 9 Block.gif
Collision 9 Block.gif
This is a hit. It can be a big hit. It can be a small hit. Sometimes things bounce. Sometimes they stick. Have you seen things hit?
HRIV Impact.gif
HRIV Impact.gif

36 words

A collision is when things hit each other.

Collision 9 Block.gif
Collision 9 Block.gif
This can be a big hit or a small hit. Sometimes, things bounce off each other. This happens when they keep their energy.
Deflection.png
Deflection.png
Other times, things do not bounce. They might even stick together. A car crash is like this. The cars crumple instead of bouncing. This helps keep people safe.
HRIV Impact.gif
HRIV Impact.gif
Even tiny bits of space rock hit things very fast. All hits change how things move.

81 words

A collision happens when two or more objects hit each other.

Collision 9 Block.gif
Collision 9 Block.gif
During a hit, the objects push on each other. This causes them to change how they move. The speed at which they approach each other is called the closing speed. All collisions save something called momentum. Momentum is a way to measure how much objects are moving.
Deflection.png
Deflection.png

There are two main types of collisions. The first is an elastic collision. In this type, the objects keep their kinetic energy. Kinetic energy is the power of motion. These hits are like billiard balls bouncing off each other. The second type is an inelastic collision. In these hits, some energy is lost. It might turn into heat or sound. A baseball bat hitting a ball is an inelastic collision. The sound you hear is lost energy.

Sometimes, a hit is perfectly inelastic. This is when the objects stick together.

Inelastischer stoß.gif
Inelastischer stoß.gif
A car crash is a good example. The cars crumple instead of bouncing. This helps keep the people inside safe. Some hits are very fast. We call this hypervelocity.
HRIV Impact.gif
HRIV Impact.gif
These hits can be over 3,000 meters per second!

194 words

A collision is an event where two or more objects push on each other. This happens over a very short amount of time.

Collision 9 Block.gif
Collision 9 Block.gif
These objects exert forces on one another during the hit. This causes them to change how fast they are moving. The difference in speed before they hit is called the closing speed. Even when objects hit, they always conserve their total momentum. Momentum is a way to measure the motion of these objects.
Deflection.png
Deflection.png

Scientists group these events into two main types based on energy. In an elastic collision, the total kinetic energy stays the same. Kinetic energy is the energy that objects have because they are moving. A perfectly elastic collision is an ideal version that cannot happen in real life. In an inelastic collision, some kinetic energy is lost during the hit. This energy might turn into heat or sound.

Inelastischer stoß.gif
Inelastischer stoß.gif
For example, a bat hitting a baseball is an inelastic collision. The sound you hear is a sign of that lost energy.

Some hits are called perfectly inelastic or perfectly plastic. This happens when the two objects stick together after they hit. A car crash is a common example of this type of event. Instead of bouncing off, the cars crumple inward. This design helps the car frame absorb the energy of the crash. It is a way to keep the people inside the car much safer. We can measure how elastic a hit is using the coefficient of restitution. This value usually ranges from zero to one.

There are many places to see these rules in action. Professional billiard players use the math of collisions to win games. When a moving ball hits a still ball of the same mass, they move at a 90-degree angle. This happens if there is no friction on the table.

Deflection.png
Deflection.png
Scientists also study how animals move across the ground. When a paw hits the floor, it creates a ground reaction force. These animal collisions are inelastic because they do not keep all their kinetic energy. Researchers even use force plates to measure these tiny hits.

Some collisions happen at incredible speeds called hypervelocity. This means the objects move faster than 3,000 meters per second.

HRIV Impact.gif
HRIV Impact.gif
At these speeds, metals and liquids start to act in similar ways. If the speed is extreme, the objects might even turn into vapor. NASA studied this by hitting a comet with the Deep Impact probe. Meteorites hitting the Earth also create these hypervelocity impacts. These massive hits can create craters on the surface of a planet.

433 words

In physics, a collision is an event where two or more bodies exert forces on each other. This interaction happens over a relatively short period of time.

Collision 9 Block.gif
Collision 9 Block.gif
While people often use the word to describe violent crashes, the scientific definition does not depend on the magnitude of the force. Any time objects push on each other simultaneously, a collision occurs. This interaction causes a change in the velocities of the objects involved. The difference in velocity between the objects just before they impact is called the closing speed. Throughout every collision, the total momentum of the objects is always conserved.

Scientists categorize collisions based on what happens to the kinetic energy of the system. Kinetic energy is the energy an object possesses due to its motion. The primary distinction between types of collisions is whether this energy is conserved or lost. If the total kinetic energy remains the same before and after the impact, the event is an elastic collision. In these cases, no energy is released as heat or sound. If kinetic energy is lost or dissipated, the event is an inelastic collision. This lost energy might be absorbed by the objects or turned into other forms of energy.

A perfectly elastic collision is an ideal version of this event. In a perfectly elastic collision, all kinetic energy is conserved. However, this type of collision cannot occur in reality. This is due to the second law of thermodynamics. In contrast, an inelastic collision involves the loss of kinetic energy. For example, when a baseball bat hits a baseball, the kinetic energy of the bat is transferred to the ball. This greatly increases the ball's velocity. The sound produced by the impact represents some of that lost energy.

There is also a specific case called a perfectly inelastic collision, sometimes called a perfectly plastic collision. This occurs when the two bodies coalesce, or stick together, after the impact. A common example is a car crash. Modern cars are designed to crumple inward during a crash rather than bouncing off other vehicles. This design allows the car frame to absorb the energy of the collision. This process is intended to increase safety for the occupants and bystanders. We can measure how elastic a collision is by using the coefficient of restitution. This value typically ranges from zero to one. A perfectly elastic collision has a coefficient of one. A perfectly inelastic collision has a coefficient of zero.

Deflection.png
Deflection.png
The physics of collisions can be seen in many different scales. In the game of billiards, collisions are nearly elastic. Because billiard balls have low rolling friction, they are often used to demonstrate Newton's laws of motion. If a moving ball hits a stationary ball of equal mass in a zero-friction environment, the balls will move away at a 90-degree angle. This perpendicular movement is a specific result of the conservation of momentum and energy. This mathematical fact is something that professional players must consider during a game.

Inelastischer stoß.gif
Inelastischer stoß.gif
Collisions also occur on a much smaller scale in science. Collisions between molecules in ideal gases approach perfectly elastic collisions. Similarly, sub-atomic particles can undergo scattering interactions. These particles are deflected by the electromagnetic force. On a much larger scale, some gravitational interactions are almost perfectly elastic. For instance, a satellite can perform a slingshot maneuver around a planet. These large-scale interactions follow the same fundamental principles of energy and momentum found in smaller systems.

HRIV Impact.gif
HRIV Impact.gif
Some impacts occur at extreme speeds known as hypervelocity. Hypervelocity is defined as a velocity exceeding approximately 3,000 meters per second. At these speeds, the strength of materials becomes very small compared to inertial stresses. This causes metals and fluids to behave in a similar way during impact. If the velocity is extreme enough, the impactor and the target may undergo vaporization. This can turn solid matter into gas. NASA demonstrated this by crashing the Deep Impact probe into the comet Tempel 1. Meteorite impacts that create craters on planets are also examples of hypervelocity events.

Deflection.png
Deflection.png
Finally, collisions are a key part of how living things move. When an animal's foot or paw hits the ground, it creates ground reaction forces. These are considered inelastic collisions because kinetic energy is not conserved. Researchers study these forces to understand the gait of both disabled and non-disabled individuals. This work often involves using a force platform, also known as a force plate. By measuring these collisions, scientists can better design prosthetics to help people walk more naturally.

753 words
🖼️ Images & Media (4)
File:Collision 9 Block.gif
Collision 9 Block.gif
File:Deflection.png
Deflection.png
File:Inelastischer stoß.gif
Inelastischer stoß.gif
File:HRIV Impact.gif
HRIV Impact.gif
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