WebJun 16, 2013 · Assume that the volume of Earth’s oceans is 137 * 107 km3 and that the density of seawater is 1.03 g/cm3. Also assume that the heat capacity of seawater is the same as that of water. Homework Equations How much heat would be required to warm Earth’s oceans by 1.0 °C? Assume that the volume of Earth’s oceans is 137 * 107 km3 … WebApr 24, 2024 · Because Earth is almost spherical, you can calculate its volume (V) using the mathematical relationship V = 4/3 pi x r^3, where "r" is its radius. The equatorial radius of …
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WebQuestion: r = Average radius of Earth = 6371 km π = 3.141592 V = Volume of Earth = calculated value m = Mass of Earth = 5.98 x 1027 g 1 km3 = 1 x 1015 This problem has been solved! You'll get a detailed solution from a subject matter expert that helps you learn core concepts. See Answer r = Average radius of Earth = 6371 km π = 3.141592 WebJul 4, 2008 · Assuming that they are perfect spheres, the Earth has a volume of about 8,694,250,468,781 km^3, and Pluto has a volume of 57,185,025,428 km^3. siam 9 thai cuisine-holden holden
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WebScience Earth Sciences Earth Sciences questions and answers Estimate the volume of Earth’s atmosphere (in km3). This problem has been solved! You'll get a detailed … WebJun 8, 2024 · The atmosphere is the superhighway in the sky that moves water everywhere over the Earth. Water at the Earth's surface evaporates into water vapor, then rises up into the sky to become part of a cloud which will float off with the winds, eventually releasing water back to Earth as precipitation. The weight of the water droplets in the cloud. WebSep 25, 2024 · The volume of the largest sphere, representing all water on, in, and above the Earth, would be about 332,500,000 cubic miles (mi 3) (1,386,000,000 cubic … the pearl valley hotel