All of the potential energy is being released in a short period resulting in a lot of kinetic energy that shoots the ball forward.
It is better if the object is lighter on a catapult because it will be easier to launch with more speed and distance. A heavier object may not travel as far or have the same velocity upon launch.
A catapult launches an object far by converting potential energy into kinetic energy. When the tension is released, the stored potential energy is transferred to the object, propelling it forward. Factors like the tension in the catapult's arm, the angle of launch, and the weight of the projectile all contribute to how far the object will be launched. Additionally, reducing air resistance and optimizing the design of the catapult can also help increase the launch distance.
The catapult has more mass than the marble, as it is a larger object designed to launch the marble. The marble is smaller and has less mass than the catapult.
The weight of an object on a catapult affects how far it goes by influencing the force needed to launch it. A heavier object requires more force to be launched, which can impact the distance it travels. In general, a lighter object will be easier to launch and may reach further distances compared to a heavier object.
A catapult is a type of lever simple machine that uses the force of tension in a spring or elastic material to launch an object.
The scientific principles behind a catapult involve potential and kinetic energy. When the catapult is loaded with an object, it stores potential energy. As the catapult arm is released, the potential energy is converted into kinetic energy, propelling the object forward. The design of the catapult, including the leverage and tension mechanisms, determines the efficiency and distance of the launch.
No, a catapult does not create free fall. A catapult uses tension to launch an object, causing it to follow a curved trajectory rather than free falling straight down.
You use a catapult to launch things into the air.
A catapult works by using tension stored in flexible materials like wood or rope to launch an object. When the tension is released, the stored energy is transferred to the object, propelling it forward. The object is launched in a high arc due to the design of the catapult's arm and the force applied.
to launch me into your moms window
A catapult uses the principles of potential and kinetic energy. When a force is applied to the catapult, it stores potential energy in the form of tension in the device. When the tension is released, it converts into kinetic energy, propelling the object forward. The design of the catapult leverages these principles to launch projectiles with great force and distance.
The amount of pressure applied to the flip stick of a catapult affects the force with which the object is launched. The greater the pressure, the greater the force, resulting in a higher launch height of the object. This is due to the relationship between force and distance in projectile motion.