The momentum of the dog can be calculated as the product of its mass (20 kg) and velocity (8 m/s). Therefore, the momentum of the dog is 160 kg*m/s.
The momentum of the dog can be calculated using the formula: momentum = mass × velocity. So, momentum = 12 kg × 8 m/s = 96 kg m/s.
mass*speed squared= momentum 20 kg*8 squared or 64= 1,280 kg-m/s
The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the dog can be calculated as 30 kg * 2 m/s = 60 kgm/s. So, the magnitude of the dog's momentum is 60 kgm/s.
Momentum is a vector quantity that is proportional to velocity. The direction of momentum is the same as the direction of velocity, but momentum includes the mass of the object in addition to its velocity.
The small cat running down the street would have more kinetic energy because it is in motion, whereas the large dog sitting on the sidewalk is stationary and has no kinetic energy.
20kg
The momentum of the dog can be calculated using the formula: momentum = mass × velocity. So, momentum = 12 kg × 8 m/s = 96 kg m/s.
mass*speed squared= momentum 20 kg*8 squared or 64= 1,280 kg-m/s
Oh, dude, momentum is just mass times velocity, so for our speedy pup here, it's 12 kg times 8 m/s, which gives us 96 kg m/s. So, like, this dog has a momentum of 96 kilogram meters per second. Cool, right?
Speed = distance/time = 12m/4s = 3m/s
Check with your vet, its free to call for advice.
To find the mass of the dog, we can use the formula for momentum, which is momentum = mass × velocity. Given the momentum of 60 kg·m/s and a velocity of 3 m/s, we can rearrange the formula to find mass: mass = momentum / velocity. Thus, the mass of the dog is 60 kg·m/s ÷ 3 m/s = 20 kg.
The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the dog can be calculated as 30 kg * 2 m/s = 60 kgm/s. So, the magnitude of the dog's momentum is 60 kgm/s.
The Colour of a Dog Running Away was created in 2005.
The momentum of the dog can be calculated by multiplying its mass (10.0 kg) by its velocity (6.0 m/s), resulting in a momentum of 60.0 kg*m/s north.
Momentum is a vector quantity that is proportional to velocity. The direction of momentum is the same as the direction of velocity, but momentum includes the mass of the object in addition to its velocity.
20 kilograms