6 kg
The energy of a cannon depends on factors like its size, material, and the amount of gunpowder used. Velocity depends on the projectile weight, barrel length, and gunpowder used. A larger cannon with more gunpowder will generally have more energy and velocity.
The momentum of the shell is 15,000 kg*m/s, which is calculated by multiplying the mass (30.0 kg) by the velocity (500 m/s).
To find the time it takes for the cannon to recoil, we can use the law of conservation of momentum. Initially, the total momentum is 0 since the cannon is at rest. After firing, the total momentum is 10 kg * 100 m/s = 1000 kgm/s in the forward direction. The cannon will recoil in the opposite direction with the same momentum, so the recoil velocity will be -1000 kgm/s / 100 kg = -10 m/s. Therefore, it would take 1 second for the cannon to recoil.
A long cannon fires farther than a short cannon due to the longer barrel allowing for a longer distance through which the projectile can accelerate and gain velocity. This results in a higher muzzle velocity and longer range for the long cannon compared to a short one.
The momentum of an object is given by the product of its mass and velocity. In this case, the momentum of the shell would be 35 kg * 500 m/s = 17,500 kg*m/s.
The energy of a cannon depends on factors like its size, material, and the amount of gunpowder used. Velocity depends on the projectile weight, barrel length, and gunpowder used. A larger cannon with more gunpowder will generally have more energy and velocity.
The momentum of the shell is 15,000 kg*m/s, which is calculated by multiplying the mass (30.0 kg) by the velocity (500 m/s).
Yes, a projectile can become a satellite if it is given enough velocity to enter orbit around a celestial body. The projectile must be launched at a specific angle and velocity to achieve a stable orbit. If these conditions are met, the projectile will remain in orbit around the celestial body as a satellite.
To find the time it takes for the cannon to recoil, we can use the law of conservation of momentum. Initially, the total momentum is 0 since the cannon is at rest. After firing, the total momentum is 10 kg * 100 m/s = 1000 kgm/s in the forward direction. The cannon will recoil in the opposite direction with the same momentum, so the recoil velocity will be -1000 kgm/s / 100 kg = -10 m/s. Therefore, it would take 1 second for the cannon to recoil.
The momentum of an object is given by the product of its mass and velocity. In this case, the momentum of the shell would be 35 kg * 500 m/s = 17,500 kg*m/s.
A long cannon fires farther than a short cannon due to the longer barrel allowing for a longer distance through which the projectile can accelerate and gain velocity. This results in a higher muzzle velocity and longer range for the long cannon compared to a short one.
No, the cannon and cannonball will not have the same amount of kinetic energy when the cannon is fired. The cannonball typically has more kinetic energy due to its higher velocity compared to the slower-moving cannon.
The momentum of the shell can be calculated using the formula: momentum = mass x velocity. Substituting the given values, the momentum of the shell would be 30.0 kg x 500 m/s = 15,000 kg m/s.
The forces are equal in both directions. The momentum of the shot is also equal to the momentum of the cannon in the other direction. The backward velocity of the cannon is: (forward velocity of the shot) times (mass of the shot) divided by (mass of the cannon).
Momentum. Momentum is the mass of an object multiplied by its velocity. This is expressed as: p=mv where p is the momentum, m is the mass, and v is the velocity. Also, kinetic energy, as that is 1/2 m*v^2.
A longer barrel allows the cannonball to be in contact with the expanding gases for a longer period of time, resulting in a greater acceleration and higher muzzle velocity. This increased velocity translates to greater momentum for the cannonball.
well velocity is much stronger than muscle velocity because air velocity is when wind speed catches up with the heaver object and slows it down and muscle velocity is how much weight you can carry there is your answer hope you understand your welcome - Jamie