Whichever of them has the greater mass. Has.
A speeding car and a jet on a runway would have roughly the same amount of inertia, as both objects have mass and are in motion. Inertia is a property of an object that resists changes in its motion, and is directly proportional to the object's mass. Therefore, the greater the mass, the greater the inertia.
A large truck typically has more inertia than a small car because inertia is directly proportional to an object's mass. The greater mass of the truck means it will resist changes in its state of motion more than the smaller car.
When car was moving, passengers were also moving. When car suddenly stops, the moving passengers try to maintain their state of forward motion because of their inertia. so they move forward relative to their seats...
An object at rest stays at rest: A soccer ball will not move unless someone kicks it. An object in motion stays in motion: A car will keep moving forward unless brakes are applied. Inertia of an object: A book will remain on a table until a force is applied to move it.
Inertia is the tendency of an object to maintain its state of rest or uniform motion unless acted upon by an external force. This concept is fundamental to Newton's First Law of Motion, which states that an object will remain at rest or in uniform motion unless a net external force is applied to it. In other words, inertia is the reason why objects resist changes in their motion.
A train would have more inertia than a car because inertia is determined by an object's mass, and trains typically have much greater mass than cars. Inertia is the tendency of an object to resist changes in its state of motion, so an object with more mass (like a train) will have more inertia compared to an object with less mass (like a car).
The airplane has more inertia because it has a greater mass compared to the car and bike. Inertia is directly proportional to an object's mass, so the larger the mass, the greater the inertia.
1500kg. "Inertia" is a measurement of resistance of an object to a change of it's motion. Oversimplified, a train has more inertia than a car. The more mass, the more inertia, it applies to acceleration and deceleration equally. Galileo demonstrated inertia before Newton's "First Law of Motion" Here is the interesting part: It does not require force to keep an object in motion. Rather, it is a force that brings an object to rest. That being friction. Inertia must not be confused with momentum, they are two different things in physics.
Inertia is related to speed and mass; a train is both faster and more massive than a car.
Car B has greater inertia than Car A because inertia is directly proportional to mass. Inertia is the tendency of an object to resist changes in its state of motion. Therefore, Car B will require more force to accelerate or decelerate compared to Car A.
Inertia depends on an object's mass. It is a measure of an object's resistance to changes in its state of motion, such as changes in speed or direction. Objects with greater mass have greater inertia.
the mass of an object is how much space is in it,therefore the object will resist more motion if there is more of something in it. ex:a truck full of logs will take longer to accelerate or stop than a smart car with only one or two people in it.
The larger car has greater inertia because inertia is directly related to an object's mass. As mass increases, so does inertia. Therefore, the larger car moving at the same speed as the smaller car would have greater inertia.
A massive object has greater inertia. It requires more force to slow it down or change it's course. Example: It takes much more force to stop a train than it does to stop a car, only because the train has much greater mass.
the ability of an object to resist friction is its inertia
A speeding car and a jet on a runway would have roughly the same amount of inertia, as both objects have mass and are in motion. Inertia is a property of an object that resists changes in its motion, and is directly proportional to the object's mass. Therefore, the greater the mass, the greater the inertia.
A train has greater inertia than a car. This is because the train's mass is larger, so it requires more force to accelerate or decelerate compared to a car due to its greater resistance to changes in motion.