Up to a certain percentage in the atmosphere, CO2 helps keep plants and animals, including humans, from freezing solid. Up to a point, which has already been reached, increasing CO2 levels cause no further significant temperature rise. By the way, a little-known fact is that the gas making up even a higher percentage of our atmosphere is water vapor.
The pressure vs temperature graph shows that there is a direct relationship between pressure and temperature in the system. As temperature increases, pressure also increases, and vice versa. This relationship is known as the ideal gas law.
The graph illustrates the relationship between vapor pressure and temperature. As temperature increases, vapor pressure also increases.
Immediately after an increase in temperature, the relationship between two variables may change. This change could result in an increase, decrease, or no change in their relationship, depending on the specific properties of the variables involved.
The normal boiling point of a substance is the temperature at which its vapor pressure equals the atmospheric pressure. In other words, the higher the vapor pressure of a substance, the lower its normal boiling point will be.
The relationship between temperature and the viscosity of water is that as temperature increases, the viscosity of water decreases. This means that water becomes less thick and flows more easily at higher temperatures. This relationship is shown in the viscosity of water table, where the viscosity values decrease as the temperature increases.
The relationship between the rise of ocean temperatures and the rise in the level of atmospheric carbon dioxide is that when there is a rise in atmospheric carbon dioxide the warmer the temperature of the ocean is
Its known as either a temperature lapse or a temperature inversion. Hope this helps! :)
The relationship between lightning and temperature is that lightning is more likely to occur in warmer temperatures. This is because warm air rises and creates unstable atmospheric conditions, which can lead to the formation of thunderstorms and lightning.
As a general rule in the atmosphere, the higher the elevation the lower the temperature. However, certain atmospheric conditions may produce an 'inversion', where temperature increases with elevation.
The relationship between temperature and frequency is that as temperature increases, the frequency of a wave also increases. This is known as the temperature-frequency relationship.
The Marcet Boiler is used to investigate the relationship between the pressure and temperature of saturated steam in equilibrium with water at all pressure levels between the atmospheric pressure and 1100 kPa.
it is difference between wet bulb temperature and dry bulb temperature.
The boundaries between atmospheric layers are determined by changes in temperature and composition. For example, the boundary between the troposphere and stratosphere is defined by the tropopause, where temperature begins to increase with altitude. The boundaries between layers are also influenced by the mixing of gases and other atmospheric properties.
The relationship between elevation and climate has to do with temperature. The higher up the elevation is the colder the temperature is.
The relationship between density and temperature is linear. In a thermal expansion, density will decrease and temperature increases and vice versa.
The relationship between temperature and volume
The relationship between temperature and volume