A Tyrannosaurus named Rex was having a birthday. He was standing on one end of a cart that rolled without Friction on a level floor. The cart had length L and a mass of m. = 3500 kg. Rex had a mass of 4760 kilograms. Rex really wanted that birthday cake. When he was on one end of the cart (the end that is farthest from the cake), the distance from his nose to the cake was d = 24 meters. As he walked to the other end of the cart (the end closest co the cake) the cart was free to roll without fricțion or other external forces. After he walked to the other end of the cart, he was disappointed to find out that his nose was still a distance of d2 = 12.6 meters from the cake. Calculate the length L of the cart in units of meters.
Angular Momentum
The momentum of an object is given by multiplying its mass and velocity. Momentum is a property of any object that moves with mass. The only difference between angular momentum and linear momentum is that angular momentum deals with moving or spinning objects. A moving particle's linear momentum can be thought of as a measure of its linear motion. The force is proportional to the rate of change of linear momentum. Angular momentum is always directly proportional to mass. In rotational motion, the concept of angular momentum is often used. Since it is a conserved quantity—the total angular momentum of a closed system remains constant—it is a significant quantity in physics. To understand the concept of angular momentum first we need to understand a rigid body and its movement, a position vector that is used to specify the position of particles in space. A rigid body possesses motion it may be linear or rotational. Rotational motion plays important role in angular momentum.
Moment of a Force
The idea of moments is an important concept in physics. It arises from the fact that distance often plays an important part in the interaction of, or in determining the impact of forces on bodies. Moments are often described by their order [first, second, or higher order] based on the power to which the distance has to be raised to understand the phenomenon. Of particular note are the second-order moment of mass (Moment of Inertia) and moments of force.
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