The speed of a cannonball can vary depending on factors such as the type of cannon used, the amount of gunpowder, and the angle of elevation. However, typical speeds for cannonballs fired from historic cannons ranged from 500 to 1,500 feet per second.
The kinetic energy of the cannon ball can be calculated using the formula KE = 1/2 * m * v^2, where m is the mass of the cannon ball (50 kg) and v is its velocity (80 m/s). Plugging in these values, you would find that the kinetic energy of the cannon ball is 160,000 Joules.
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.
The average firing speed of a cannon can vary depending on the type and size of the cannon. However, on average, a cannon can fire a projectile at speeds ranging from around 300 to 1,500 meters per second.
The kinetic energy of the cannonball can be calculated using the formula: KE = 0.5 * m * v^2, where m is the mass of the cannonball (50 kg) and v is the speed of the cannonball (80 m/s). Plugging in the values, KE = 0.5 * 50 kg * (80 m/s)^2 = 160,000 Joules. Therefore, the kinetic energy of the cannonball at a speed of 80 m/s will be 160,000 Joules.
Forces help speed up a ball by providing it with acceleration, which is the rate of change of velocity. When a force is applied to a ball, it overcomes any resistance, such as friction, allowing the ball to move faster. The force increases the ball's momentum, resulting in an increase in speed.
The cannon would want to move backwards with the same speed as the ball wants to move forward.
The kinetic energy of the cannon ball can be calculated using the formula KE = 1/2 * m * v^2, where m is the mass of the cannon ball (50 kg) and v is its velocity (80 m/s). Plugging in these values, you would find that the kinetic energy of the cannon ball is 160,000 Joules.
A classical cannon ball doesnt have enough speed, but a modern heavy artillery shell will cause enough wind to blow bystanders away, and thus possibly kill them.
They will drop at the same speed, the only way one could beat the other is if you were to increase the speed it travels by giving it an extra push..
A cannon ball.
a cannon ball
the size of the cannon ball depends on the size of the cannon. civil war cannons had cannon balls about the size of a child's head, aprox 30cm across
cannon ball
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.
The first cannon ball was made in the 3rd century BC in a place called Alexandra
the explosion of gunpowder behind it propells it out of the cannon.
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