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yes the momentum of it is the same because P initial = P final ALWAYS!

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Q: When a toy truck collides into a toy car the momentum of is the same before and after the collision?
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When a toy truck collides with a toy car the momentum of is the same before and after collision?

butholes


When a toy truck collides into a toy car the momentum of the what is the same before and after the collision?

The total momentum of the system doesn't change. In this case, it refers to the momentum of the toy truck plus the momentum of the toy car.


When a toy truck collides into a toy car the momentum of is the same before and after the collision.?

In an isolated system (where no external forces are acting), the total momentum of the system remains constant before and after the collision. This is known as the law of conservation of momentum.


When a toy truck collides into a toy carthe momentum of what is the same before and after the collision?

The sum of the momentum of the two toys before the collision will be the same as the momentum of the two toys after the collision except for some losses due to heat dissipation and frictional losses.


A quantity which is conserved in the collision of a car and a truck is?

Total momentum


When a toy truck collides into a toy car. the momentum of what is the same after and before the collition?

The total momentum of the system (toy truck + toy car) is the same before and after the collision, as long as no external forces are present. This is known as the principle of conservation of momentum.


A 1000 kg car traveling at 9 ms east strikes a stationary 2000 kg truck They interlock as a result of the collision and move off as one What is their speed?

Their combined momentum before the collision is (1000 kg * 9 m/s) + (0) = 9000 kg·m/s east. Since the vehicles move off together, their combined momentum after the collision is equal to the momentum before the collision. The total mass after collision is 3000 kg. Therefore, their speed after the collision would be 9000 kg·m/s ÷ 3000 kg = 3 m/s east.


What is the momentum of a 500 kg truck before it strikes a 300 kg parked car?

Momentum defined as p=mv.. The momentum of the truck depends on its velocity


A construction truck collides with the back of a subcompact car Which one has the larger change of velocity during the collision?

The smaller vehicle will encounter the larger velocity change.


Which law of motion is applicable to a moving car that makes it likely that it will be damaged when it collides with a truck?

The principle that might apply here is momentum. Momentum is mass times velocity. What should be pointed out is that velocity is speed that has a direction vector. (If the car is moving ahead in a straight line it is traveling at "x" miles per hour "forward".) The car is moving forward and comes into contact with the truck. That seems to be where the question is looking. The mass of the car times its velocity is its momentum, and this represents the energy that it is carrying into the collision. This energy will have end up being distributed among the various parts and components of the car and the truck that are compressed, deformed and/or broken by the collision. The amount of damage will be proportional to the momentum. The more the momentum (the more the "forward" energy) of the car, the more compression, deformation and breakage there will be. Was everyone wearing seat belts? Are you in good hands?


A car and a truck have a collision The truck has a mass 8 times the mass of the car if the truck is moving at 60kmhr and the car is stationary how fast do the two move after their inelastic collision?

In an inelastic collision, the two vehicles will stick together and move at a common velocity after the collision. The velocity after the collision can be calculated using the principle of conservation of momentum. Since the car is stationary, the final velocity after the collision will be 60/9 = 6.67 km/hr.


A 500kg truck moving a 30ms strikes a parked car with a mass of 300kg?

It is a perfectly inelastic collision.Types of collisions:* Perfectly inelastic- collision in which two objects stick together after the collision so that their final velocities are the same. * Elastic-collision in which the two objects bounce after the collision so that they move separately * Inelastic-collision in which the two objects deform during the collision so that the total kinetic energy decreases , but the objects move separately after the collision.