Open ocean environment changes the most. The dominance of Earth's seas is clearly seen when viewed from space.
A uninterrupted body with salt water that's also housed inside sizable basins on the surface of the Planet. The dominance of Earth's seas is clearly seen when viewed from space. At an average depth exceeding 3,688 meters, the oceans plus their peripheral seas cover about 71% of the area of the planet.
The remaining 29% of the planet's surface is made up of exposed land, which has a mean height of 840 meters (approximately 2,755 feet). Indeed, the oceans may cover the entire high terrain, reducing Earth to a smooth spherical. Open ocean environment changes the most.
Therefore, open ocean environment changes the most.
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Answer:open
Explanation:
Answer:
important, function
Explanation:
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Surface fire
Answer:
3=8908-=698=49=304=+74950=405=0381=01=20
55555%
Explanation:
the kinetic energy always increases whether the temperature increases or decreases
the total kinetic energy of the molecules is not affected by a change in temperature
as the kinetic energy of the molecules decreases, the temperature increases
Answer: as the temperature increases, the kinetic energy of the molecules increases
Explanation: The kinetic energy of the molecules is the energy possessed by virtue of motion of the particles.
Kinetic energy of the particles is directly proportional to the temperature of the gas.
where T= temperature
R= gas constant
Thus if the temperature is increased, the molecules start moving more randomly and gain kinetic energy.
The production of the energy by the moving particle is called kinetic energy. The kinetic energydepends on the following:-
The kinetic energy of every state is different i.e the kinetic energy of the solid, liquid, and gas are different. The kinetic energy of the particles is directly proportional to the temperature of the gas.
T= temperature
R= gas constant
Thus if the temperature is increased, the molecules start moving more randomly and gain kinetic energy.
Hence, the correct option is A
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Answer:
The molar mass is determined by applying the Ideal Gas Law, PV = nRT, where P is the pressure (in atm), V is the volume (in L), n is the number of moles of gas, R is the universal gas constant (0.08206 L∙atm/mol∙K), and T is the temperature (in K).
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