Situation dependent. When neither is moving, then neither one.
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.
The car with a mass of 1500 kg has more inertia than the car with a mass of 900 kg. Inertia is directly proportional to mass, so the car with greater mass will have greater inertia.
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.
Inertia is related to speed and mass; a train is both faster and more massive than a car.
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.
If car one has a greater inertia than car two, it means that car one is more resistant to changes in its state of motion. This greater inertia implies that car one will require more force to accelerate or decelerate compared to car two. Consequently, if both cars are subjected to the same force, car one will experience a smaller acceleration than car two due to its greater mass.
Whichever of them has the greater mass. Has.
A large truck parked in a lot has greater inertia compared to a moving toy car. Inertia is the resistance of an object to changes in its state of motion, and it depends on the mass of the object. Since the truck has significantly more mass than the toy car, it will have more inertia, making it harder to start moving or stop compared to the toy 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.
because it has greater mass
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.
Inertia affects the stopping distance of a car by causing the car to continue moving forward even after the brakes are applied. The greater the inertia of the car, the longer it will take for the car to come to a complete stop. This is because the car's momentum must be overcome by the braking force in order to bring the car to a halt.