In a perfectly balanced equation in an adiabatic system where only O2 is reacting with the H2 molecules would you get 2H2O as a product (water vapor). Unfortunately if you are ingesting straight air there is Nitrogen, Carbon Dioxide and a whole slew of other gases present and at elevated temperatures all kinds of neat reactions occur and you end up expelling hydrocarbons and NOx compounds other than pure water vapor. Now if you were injecting pure O2 into the combustion chamber as well as pure H2 and adding activation energy then maybe, just maybe you'd get water vapor. But unfortunately you have oil, steel, so on and so forth that will contaminate the combustion chamber and what you get out the stack still won't be pure water vapor.
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Today's Featured Article - Hydraulics - Cylinder Anatomy - by Curtis von Fange. Let’s make one more addition to our series on hydraulics. I’ve noticed a few questions in the comment section that could pertain to hydraulic cylinders so I thought we could take a short look at this real workhorse of the circuit. Cylinders are the reason for the hydraulic circuit. They take the fluid power delivered from the pump and magically change it into mechanical power. There are many types of cylinders that one might run across on a farm scenario. Each one could take a chapter in
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