An increase in skin cancer can be traced to a decrease in atmospheric ozone. Ozone protects the Earth's surface by absorbing harmful ultraviolet radiation from the sun, which can cause skin cancer when it reaches the Earth's surface in excessive amounts.
The boiling point of water decrease when the altitude increase and the atmospheric pressure decrease.
Atmospheric pressure decreases as you move upward away from sea level due to the decrease in the weight of the air above pushing down. This means that atmospheric pressure is lower at high altitudes and higher at lower altitudes, such as at sea level.
The decrease in millibars indicates a drop in atmospheric pressure, which correlates with the increasing intensity of a hurricane. A lower pressure system allows air to rise and fuels the storm's development and strength. Conversely, an increase in millibars signifies a rise in atmospheric pressure, which can weaken the hurricane.
Water's boiling point decreases with an increase in elevation because the atmospheric pressure decreases at higher elevations. Water boils when its vapor pressure equals the atmospheric pressure. As atmospheric pressure decreases with elevation, the vapor pressure required to boil water also decreases, resulting in a lower boiling point.
An increase in skin cancer can be traced to a decrease in atmospheric ozone. Ozone protects the Earth's surface by absorbing harmful ultraviolet radiation from the sun, which can cause skin cancer when it reaches the Earth's surface in excessive amounts.
The boiling point of water decrease when the altitude increase and the atmospheric pressure decrease.
it causes a decrease in atmosperic pressure A+
Atmospheric pressure decreases as one ascends from the beach to the mountains.
An increase in temperature with height in an atmospheric layer is called an inversion layer. This phenomenon is opposite to the normal decrease in temperature with increasing altitude in the Earth's atmosphere.
Yes, as oxygen is one of the products of the photosynthetic process. Water is " cracked " to provide electrons for the chlorophyll pigment as a replacement process and the oxygen is released from H2O and goes back into the atmosphere through the stomata.
Atmospheric pressure decreases as you move upward away from sea level due to the decrease in the weight of the air above pushing down. This means that atmospheric pressure is lower at high altitudes and higher at lower altitudes, such as at sea level.
The reason for temperature being lower in high altitude regions (as compared to places at sea-level) is due to the decrease in atmospheric pressure as we go up in altitude. So decrease in atmospheric pressure causes the temperature to decrease, which might be a reason for the decreased pressure at night. --- Diurnal temperature fluctuations vary by location, but follow a twice-daily cycle of general rise and fall, corresponding to the "atmospheric tide" induced by the eastward rotation of the planet.
no. :)
The process most responsible for the increase in early Earth's atmospheric oxygen levels is thought to be the evolution of photosynthetic organisms, such as cyanobacteria, which released oxygen as a byproduct of photosynthesis. This oxygen eventually accumulated in the atmosphere, leading to the Great Oxidation Event around 2.4 billion years ago.
As you climb a mountain, the atmospheric pressure decreases with altitude, causing the mercury level in the barometer to decrease. This is because there is less air pressing down on the mercury in the barometer as you ascend, leading to a lower reading.
pure water (with no impurities added ) can only boil at 100 degrees Celsius , no other temperature . But if we add impurities to it than the temperature at which the water will boil can increase or decrease. Another point is that when we increase or decrease the atmospheric pressure, the temperature at which ordinary water boils (i.e.100 degrees Celsius) can also increase or decrease.