On August 10, 1972, a large meteorite skipped across theatmosphere above the western United States and western Canada, much like a stone skipped across water. The accompanying fireball was so bright that it could be seen in the daytime sky and was brighter than the usual meteorite trail. The meteorite’s mass was about 4 × 10 6 kg; its speed was about 15 km/s. Had it entered the atmosphere vertically, it would have hit Earth’s surface with about the same speed. (a) Calculate the meteorite’s loss of kinetic energy (in joules) that would have been associated with the vertical impact.(b) Express the energy as a multiple of the explosive energy of1 megaton of TNT, which is 4.2 × 10 15 J. (c) The energy associated with the atomic bomb explosion over Hiroshima was equivalent to13 kilotons of TNT. To how many Hiroshima bombs would the meteorite impact have been equivalent?
On August 10, 1972, a large meteorite skipped across theatmosphere above the western United States and western Canada, much like a stone skipped across water. The accompanying fireball was so bright that it could be seen in the daytime sky and was brighter than the usual meteorite trail. The meteorite’s mass was about 4 × 10 6 kg; its speed was about 15 km/s. Had it entered the atmosphere vertically, it would have hit Earth’s surface with about the same speed. (a) Calculate the meteorite’s loss of kinetic energy (in joules) that would have been associated with the vertical impact.(b) Express the energy as a multiple of the explosive energy of1 megaton of TNT, which is 4.2 × 10 15 J. (c) The energy associated with the atomic bomb explosion over Hiroshima was equivalent to13 kilotons of TNT. To how many Hiroshima bombs would the meteorite impact have been equivalent?
On August 10, 1972, a large meteorite skipped across theatmosphere above the western United States and western Canada,
much like a stone skipped across water. The accompanying fireball was so bright that it could be seen in the daytime sky and was brighter than the usual meteorite trail. The meteorite’s mass was about 4 × 106 kg; its speed was about 15 km/s. Had it entered the atmosphere vertically, it would have hit Earth’s surface with about the same speed. (a) Calculate the meteorite’s loss of kinetic energy (in joules) that would have been associated with the vertical impact.(b) Express the energy as a multiple of the explosive energy of1 megaton of TNT, which is 4.2 × 1015 J. (c) The energy associated with the atomic bomb explosion over Hiroshima was equivalent to13 kilotons of TNT. To how many Hiroshima bombs would the meteorite impact have been equivalent?
suggest a reason ultrasound cleaning is better than cleaning by hand?
Checkpoint 4
The figure shows four orientations of an electric di-
pole in an external electric field. Rank the orienta-
tions according to (a) the magnitude of the torque
on the dipole and (b) the potential energy of the di-
pole, greatest first.
(1)
(2)
E
(4)
What is integrated science.
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