HyperPhysics (2016)
hyperphysics.phy-astr.gsu.edu
HyperPhysics (2016)
1–10 of 49 posts
Re: HyperPhysics (2016)
#2Re: HyperPhysics (2016)
#3Re: HyperPhysics (2016)
#4Re: HyperPhysics (2016)
#5"Second Law of Thermodynamics: In any cyclic process the entropy will either increase or remain the same."
I need some clarity about what is meant by 'cyclic' here. Is it perhaps to refer to feedback loops/self-sustaining phenomena?
Re: HyperPhysics (2016)
#6I was keen to explore (even if it's a bit dated) but unfortunately the combination of mobile-browser and dark mode makes a bit of a mess of things.. (making it quite a bumpy ride) I wonder if there are any 'translations' to other formats around? "Second Law of Thermodynamics: In any cyclic process the entropy will either increase or remain the same." I need some clarity about what is meant by 'cyclic' here. Is it per…
Re: HyperPhysics (2016)
#7I was keen to explore (even if it's a bit dated) but unfortunately the combination of mobile-browser and dark mode makes a bit of a mess of things.. (making it quite a bumpy ride) I wonder if there are any 'translations' to other formats around? "Second Law of Thermodynamics: In any cyclic process the entropy will either increase or remain the same." I need some clarity about what is meant by 'cyclic' here. Is it per…
Re: HyperPhysics (2016)
#8Re: HyperPhysics (2016)
#9I was keen to explore (even if it's a bit dated) but unfortunately the combination of mobile-browser and dark mode makes a bit of a mess of things.. (making it quite a bumpy ride) I wonder if there are any 'translations' to other formats around? "Second Law of Thermodynamics: In any cyclic process the entropy will either increase or remain the same." I need some clarity about what is meant by 'cyclic' here. Is it per…
no, cyclic in this context means that all macroscopic system variables (temperature etc) return to their initial conditions
Re: HyperPhysics (2016)
#10Love the fact they haven't updated the website to more modern web technologies.