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Kirsten and Gigi are riding in hot air balloons. Find Kirsten's final position relative to the ground.

A. 760 feet above the ground
B. 845 feet above the ground
C. 900 feet above the ground
D. 945 feet above the ground

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Final answer:

The question about Kirsten's final position cannot be answered without additional information. Physics problems such as calculating terminal velocity or determining projectile motion trajectories require specific details and application of kinematic equations and principles of motion.

Step-by-step explanation:

The student's question about Kirsten's final position in a hot air balloon does not provide sufficient information to calculate an answer. It appears that there may be some missing details that are crucial in solving the problem. In general, to find the final position of someone in a hot air balloon relative to the ground, additional details such as the initial altitude, the ascent or descent rate, and the time spent traveling would be necessary.

In physics problems, like those related to hot air balloons or skydiving, one often uses principles like those in the equations of motion. These equations can help in calculating displacement, velocity, and time when objects are moving under the influence of gravity.

For example, to calculate terminal velocity of skydivers or to find the maximum height reached by a dropped object from a moving hot air balloon, we need to apply kinematic equations. For objects like spring-loaded launchers, we might discuss projectile motion and use formulas that involve angles, initial velocities, and the constant for gravity to find the vertical height and the trajectory.

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