The price of natural gas is influenced by several factors including current and anticipated supply and demand of natural gas, temperature changes, amount of gas stored, pipeline charges for transporting gas, and cost of gas for end users.
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One model which materialists use for their reductive view of consciousness is from physics: for instance, in the reduction of thermodynamics to statistical mechanics, the temperature of a gas is explained in terms of the mean kinetic energy of its constituent molecules.
The approximate stand-still of global temperature during 1940-1975 is generally attributed to an approximate balance of aerosol cooling and greenhouse gas warming during a period of rapid growth of fossil fuel use with little control on particulate air pollution, but quantitative interpretation has been impossible because of the absence of adequate aerosol measurements.
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Climate sensitivity is a key parameter for estimating the long-term temperature increase expected from a doubling of the concentration of greenhouse gas emissions in the atmosphere.
When working, it splits light into its component colours, to reveal information about the chemical content, temperature and motion of planets, comets, stars, interstellar gas and galaxies.
The study, conducted by researchers from Oregon State University and Harvard University and funded by the U.S. National Science Foundation, also looks to shed light on a crucial question: Is the spike in global temperature recorded in the past 150 years unusual the result of greenhouse-gas emissions from human activity or can it be explained as natural, long-term variations in temperature?
The study, conducted by researchers from Oregon State University and Harvard University and funded by the U.S. National Science Foundation, also looks to shed light on a crucial question: Is the spike in global temperature recorded in the past 150 years unusual the result of greenhouse-gas emissions from human activity or can it be explained as part of natural, long-term variations in temperature?
Only during the last quarter of the century was there an appreciable correlation between greenhouse gas trends and global temperature trends.
Stabilizing greenhouse gas concentrations at 550 ppm -- which would invoke a rise in temperature of about three degrees Celsius -- would require energy emissions to rise no higher than 33 gigatons and would need to fall in the longer term.
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