Label The Diagram Below With The Correct Values For Kinetic Energy

Assume that the roller coaster starts from rest. Then plot the values of the kinetic energy left y axis and potential energy right y axis in the diagram below.

Ap Physics 1 Kinematics

Transcript of kinetic and potential energy diagram.

Label the diagram below with the correct values for kinetic energy. Label the diagram below with the correct values for kinetic energy ke and potential energy pe along the path of the roller coaster. Label the diagram below with the correct values for kinetic energy ke and potential energy pe along the path of the roller coaster. So at each value of h the kinetic energy is mg35 mgh.

The total mechanical energy is. The higher the level above the ground the more potential energy. Yet the sum of the kinetic and potential energies is everywhere the same.

The total mechanical energy of the roller coaster car is a constant value of 40 000 joules. The solid line in the energy diagram represents changes in energy as the reactant is converted to product under standard conditions. The closer the softball is to the ground the more kinetic energy it has.

The higher level the softball is above the ground the more potential energy it has. The dashed line shows changes observed when the same reaction takes place in the presence of a dedicated enzyme. All the energy that was originally potential at h 35 is now kinetic.

Label the diagram below and indicate how cellular work is done by atp define phosphorylation a cell that can couple the energy of atp hydrolysis directly to endergonic processes by transferring a phosphate group from atp to some other molecule such as the reactant. This is illustrated in the diagram below. Figure q3 29 presents an energy diagram for the reaction xy.

As the coaster moves down the hill kinetic energy will increase and potential will decrease but the total will stay 1000 j. Assume that the roller coaster starts from rest options. If there is no friction or other non conservative force then the total energy will always be 1000 j.

The amount of kinetic energy and the amount of potential energy is constantly changing. The potential energy is mgh. Calculate it by multiply m g and h at each value of h.

The closer to the ground the more kinetic energy. Ke peg pes 0 1000 0 1000 j.

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