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the answer is Jupiter
Matte (dull) and black surfaces emit infrared radiation at a faster rate than shiny and white surfaces.
sunspots, rate of radiation, photospheric phenomena, and storms in the suns atmosphere. It is about 4.5 billion years old
During the 100 years of the 20th Century, there were 228 solar eclipses and 229 lunar ones. So over the long term, you can figure on equal numbers, at the rate of around 7 of each every 3 years.
In our solar system, there are eight recognized planets: Mercury, Venus, Earth, Mars, Jupiter, Saturn, Neptune, and Uranus. The total number of planets outside of our solar system can only be hypothesized, but evidences of new planets are being discovered at an ever increasing rate.
In windy areas trichomes reduce evaporation and keep the leaf moist. They also reflect solar radiation and heat.
Increased solar flux would do the job nicely.
Approx. 1.5" to 2" per wk.
Solar radiation in plants inhance the rate of transpiration. To cope up with the water deficiency in plants roots are desired to uptake more water.
Rate of evaporation depends on temperature. As Temp decreases, so does the rate of evaporation.
The rate of evaporation increases
The higher the temperature, the higher the rate of evaporation. It is
Heat speeds up the rate of evaporation.
These are all variables used to calculate evaporation rate: The larger the surface area the higher the evaporation (rate) The higher the wind speed the higher the evaporation (rate) The higher the temperature the higher the evaporation (rate) The higher the relative humidity the lower the evaporation (rate)
if quality of water reduce the evaporation will decrase
The normal rate of evaporation is dependent on many factors. First, every type of molecule has a different rate of evaporation. For example, acetone has an evaporation rate of 3.0 while water has an evaporation rate of 0.3. You can find a complete listing of each molecule's evaporation rate at your local library. You can also find this information in most laboratories as well.
the rate of evaporation will be equal to the rate of condensation