The answer is 1.33 m/s.
Elastic collision: objects bound against each other after the collision. - One is moving and the other is at rest. - Both objects are moving. Inelastic collision: objects stick together after the collision. - One is moving and the other is at rest. - Both objects are moving.
A perfectly inelastic collision occurs when objects stick together after colliding, resulting in their combined mass moving together at the same velocity. This type of collision involves the maximum loss of kinetic energy.
The term that refers to water vapor moving horizontally is "advection." It describes the process of air or water transporting heat, moisture, or other properties horizontally.
The combined VELOCITY of two cars that crash will be somewhere between that of the individual cars. In this case, the combined speed will be less than the speed of the car that was moving before the crash.If you know the velocities and the masses, the exact speeds can be calculated using conservation of momentum.
The momentum of the system is conserved. Using the equation for conservation of momentum (m1 * v1 = (m1 + m2) * vf), where m1 = 8 kg, v1 = 2 m/s, m2 = 1 kg, and vf is the final velocity of the system. By solving this equation, we find that the final velocity of the two clay blobs stuck together is 2/3 m/s.
Elastic collision: objects bound against each other after the collision. - One is moving and the other is at rest. - Both objects are moving. Inelastic collision: objects stick together after the collision. - One is moving and the other is at rest. - Both objects are moving.
A perfectly inelastic collision occurs when objects stick together after colliding, resulting in their combined mass moving together at the same velocity. This type of collision involves the maximum loss of kinetic energy.
horizontally...
The term that refers to water vapor moving horizontally is "advection." It describes the process of air or water transporting heat, moisture, or other properties horizontally.
The combined VELOCITY of two cars that crash will be somewhere between that of the individual cars. In this case, the combined speed will be less than the speed of the car that was moving before the crash.If you know the velocities and the masses, the exact speeds can be calculated using conservation of momentum.
Moving directly straight either horizontally or vertically. As if walking on a straight line.
The momentum of the system is conserved. Using the equation for conservation of momentum (m1 * v1 = (m1 + m2) * vf), where m1 = 8 kg, v1 = 2 m/s, m2 = 1 kg, and vf is the final velocity of the system. By solving this equation, we find that the final velocity of the two clay blobs stuck together is 2/3 m/s.
Objects stick together after a collision due to the conservation of momentum and energy. When two objects collide, the total momentum of the system is conserved, leading them to stick together if the resulting momentum can only be achieved by them moving together. Additionally, kinetic energy may be converted into other forms, such as deformation or sound, causing the objects to stick together.
A Lot!
To find the final velocity of the two objects when they stick together after the collision, you can use the principles of conservation of momentum. The total momentum before the collision is equal to the total momentum after the collision. Use the formula: m1v1_initial + m2v2_initial = (m1 + m2)v_final, where m1 and m2 are the masses of the two objects, v1_initial and v2_initial are their initial velocities, and v_final is their final velocity when they stick together after the collision.
Gravity has no effect on an object moving horizontally at a constant speed unless the object is falling downward due to gravity. In that case, gravity will accelerate the object downward while it continues to move horizontally.
It is moving a figure horizontally and/or vertically but keeping it of the same size and orientation.