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Politics : The Environmentalist Thread

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To: maceng2 who wrote (22107)7/9/2008 11:45:18 AM
From: Thomas A Watson  Read Replies (1) of 36917
 
In the physics of a common absorption of radiation that is transformed to thermal kinetic energy, the contribution of effect is proportional to the mass involved and the amount of energy that that mass can absorb.

H20 can absorb a broad spectrum of wavelength and CO2 is exposed to only one narrow band for atmospheric temperatures.

Also there are several hundred molecules of H20 for each CO2 in the atmosphere where we humans live.

Now all you have to do is read the article that you provided the link to. It is an outstanding discussion of the non physics used for the Falsification Of The Atmospheric CO2 Greenhouse Effects
Within The Frame Of Physics.

Thank you again for providing by accident one of most informative scientific discussions of the science of the mentally retarded. Gerhard Gerlich and Ralf D. Tscheuschner are good and I mean really really good. They speak clearly what I have known in my gut from my own experience of using instruments to measure real world effects.

Hell I even went to find a pdftohtml translator and voila, I found a good one. from tinyapps.org
I found sourceforge.net
It compiled with no problems and I ran pdftohtml Falsification_of_CO2.pdf creating pdftohtml Falsification_of_CO2.html
toms.homeip.net

Physics says:
Table 4: Volume percent versus mass percent: The volume concentration xv and the mass concentration xm of the gaseous components of an idealized Earth's atmosphere From known thermal conductivities (Table 5), isochoric heat capacities, and mass densities the isochoric thermal diffusivities of the components of the air are determined (Table 6). This allows to estimate the change of the effective thermal conductivity of the air in dependence of a doubling of the CO2 concentration, expected to happen within the next 300 years (Table
7). It is obvious that a doubling of the concentration of the trace gas CO2, whose thermal conductivity is approximately one half than that of nitrogen and oxygen, does change the thermal conductivity at the most by 0, 03 % and the isochoric thermal diffusivity at the most by 0.07 %. These numbers lie within the range of the measuring inaccuracy and other uncertainties such as rounding errors and therefore have no significance at all.

And their is a lot more.
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