It would be higher because it contains high amounts of carbon dioxide
Yes, the Earth's crust has a wide range of melting points depending on the type of rock, but in general, the temperatures required to melt rocks in the crust are higher than the typical surface temperatures of the Earth. The actual temperature of the Earth's crust is generally lower than its melting point.
If the dewpoint temperature were lower, the height of the cloud base would generally be higher. This is because the air would need to cool further before reaching saturation, allowing clouds to form at higher altitudes. Conversely, a higher dewpoint temperature would lead to a lower cloud base height.
The temperature in the Earth's lower mantle is estimated to be between 1,600 and 2,200 degrees Celsius.
If there were no greenhouse gases in the atmosphere, the Earth's temperature would be much colder than it is now. Greenhouse gases trap heat from the sun, so without them, the Earth would lose more heat and the average temperature would be significantly lower.
The temperature of Earth's crust is much lower than the temperature of Earth's interior. The temperature of Earth's crust generally ranges from about 0°C to 30°C, while the temperature of Earth's interior can reach thousands of degrees Celsius in the mantle and core. The higher temperatures in the interior are due to the heat generated by radioactive decay and leftover heat from Earth's formation.
The measured temperature of Venus is, on average, much higher than that of earth.
the temperature of the earth is lower than the Earth.
because the amounts of earth is
Lower solar input & higher infrared radiation at night could decrease Earth's temperature.
Yes, the Earth's crust has a wide range of melting points depending on the type of rock, but in general, the temperatures required to melt rocks in the crust are higher than the typical surface temperatures of the Earth. The actual temperature of the Earth's crust is generally lower than its melting point.
The temperature of the Earth's mantle is higher than the temperatures of the outer layers, such as the crust, but lower than the core.
No, energy does not naturally flow as heat from a lower temperature to a higher temperature. Heat energy always flows from a higher temperature to a lower temperature in accordance with the second law of thermodynamics.
If the dewpoint temperature were lower, the height of the cloud base would generally be higher. This is because the air would need to cool further before reaching saturation, allowing clouds to form at higher altitudes. Conversely, a higher dewpoint temperature would lead to a lower cloud base height.
Thermal energy always flows from higher temperature to lower temperature. This is the nature of heat.
higher
lower
The higher the altitude the lower the temperature.