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Kinetic energy also depends on mass.
The bike's kinetic energy is 45 joules.
Certainly, because kinetic energy is determined by both mass and speed. If I'm traveling at 1/2 the speed that you are, but I have 4 times as much mass as you have, then our kinetic energies are equal. And for an example in the other direction . . . If my mass is only 1% of yours, but I'm traveling at 10 times your speed, then our kinetic energies are equal. That's how a bullet or a baseball can knock a grown person off his feet. Kinetic Energy = 1/2 (mass) x (speed)2
Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.
Kinetic energy is given by 1/2 M x V2, that is one half mass x velocity squared
Kinetic energy also depends on mass.
The bike's kinetic energy is 45 joules.
Assuming all have equal velocity the greater mass (20000g) will have the greater kinetic energy.
Kinetic energy of a mass is directly proportional to two variables: its mass and speed. Many mistake kinetic energy as being proportional to mass and velocity; it is, in fact, mass and speed. (With all technicalities aside, the speed is the factor that matters in computing kinetic energy of an object or a mass). Kinetic Energy = 0.5mv2 (m = mass and v = speed of the mass) Therefore, if the speed of the object increases, the kinetic energy increases. If the speed of the object decreases, the kinetic energy decreases. Similarly, if the mass of the object increases while traveling, its kinetic energy increases. If the mass of the object decreases, the kinetic energy decreases. All has to do with the directly proportional relationship between the two variables and the kinetic energy.
Use the formula for kinetic energy: KE = (1/2)mv2. Replace the numbers you know (mass, and kinetic energy), and solve.
60. K= 1/2mv^2 therefore when v is larger, there is more kinetic energy
Assuming both pieces are traveling at 6m/s, the 4kg mass has a kinetic energy of 72 joules.
If two objects traveling at the same non-zero speed, the more massive object will have the greater kinetic energy. K=(1/2)mv2
the defining equation for kinetic energy= 1/2 mv2therefore kinetic energy is directly proportional to mass or as kinetic energy increases, mass increases proportionally (and vice versa).therefore if mass is doubled, the kinetic energy is also doubled.
Certainly, because kinetic energy is determined by both mass and speed. If I'm traveling at 1/2 the speed that you are, but I have 4 times as much mass as you have, then our kinetic energies are equal. And for an example in the other direction . . . If my mass is only 1% of yours, but I'm traveling at 10 times your speed, then our kinetic energies are equal. That's how a bullet or a baseball can knock a grown person off his feet. Kinetic Energy = 1/2 (mass) x (speed)2
Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.Kinetic energy can be calculated as (1/2) x mass x velocity2. So, the kinetic energy depends both on the mass and the velocity.
Kinetic energy is energy that is posessed by a moving mass.