Final answer:
To find the height above the ground to which Tarzan and Jane will swing after she rescues him, we can use the principle of conservation of mechanical energy. At the highest point of their swing, all of the initial potential energy will be converted into kinetic energy.
Step-by-step explanation:
To find the height above the ground to which Tarzan and Jane will swing after she rescues him, we can use the principle of conservation of mechanical energy. At the highest point of their swing, all of the initial potential energy will be converted into kinetic energy. We can set up an equation using the conservation of mechanical energy:
mg = (1/2)mv^2
Where m is the combined mass of Tarzan and Jane, h is the height above the ground, and v is the velocity at the highest point of the swing. The initial potential energy is equal to the final kinetic energy since there is no loss of energy due to friction or other factors.
From the given information, we know that the length of the vine is 27m, Tarzan's mass is 86kg, and Jane's mass is 49kg. The total mass, m, is 86kg + 49kg = 135kg. We also know that the initial velocity, when the rope is horizontal, is 0 m/s.
Substituting into the equation, we have:
mg = (1/2)m(0)^2
h = 0
Therefore, after Jane rescues Tarzan, they will swing back to the same height above the ground.