well you should note however that it would only do no work for a homogeneous electric field, you don't need high powered math since the displacement integral is zero the work is zero very simple... these days I have been working on a system that gets energy out of the E field now the hard stuff is how to get that energy out say you accelerate electrons without energy cost and the total kinetic energy is increased how do you get energy out wihout thermal loses to make overunity?
I have come to some conculsions: "an electric field removes ionized electrons reducing the rate of electron hole recombination , what you must do is control the electric field and maintain to regular levels , you can also ionize electrons using light quanta (laser field or light field) depending what electron band you want to excitate. if I was ionizing I wouldnt want any ozon forming ... earth receivers electrons very easily. it has a positive net charge.
About meyer you can do a lot with some alpha radiation alone , the electric field is maybe just there to keep atoms from recombining to electronically stable forms.. electrolysis produce some alpha radiation depending on the setup. you actually want to short-circuit water and control electron recombination to prevent water reformation you have like .5 seconds before that happens."
Hey guys D2O has nothing to do with H2O, D2O has deuterium instead of hydrogen and is very hard to make, deuterium has a neutron while hydrogen has no neutron, deuterium doesn't like the neutron and will give it to be in a lower energy or more stable state.
that's why it's hard to get the energy you spend back from electrolysis.. with bigger temperature and magnetic field there's less hydrogen bonding in water.
well I maybe ask a real chemist but when atoms are in E or B field the orbit expands something like dipole-dipole forces called stark forces or zeeman forces.. that is evident because the lines of emission change when this happens. And because the lines of emission are changed the frequencies of the atom also change... the frequency that the bond will oscillate also change.. so maybe by using natural magnets the frequency required for a forced oscillation will be lower hence energy required to break them lower.
there are less hydrogen bonds the higher the temperature , ice has 100%, hydrogen bond in water is about 400kj/mol if I remember correctly .. so less energy input for higher temperature.
Today I observed how mechanical waves evolve in liquids.. and I came to realize how important surface tension is and how surface tension is altered by wave combination... you should keep that in your head.
If you wanna go that route at least try sonoluminence, or try to use the phase change of water, lets say when the water vapour comes in contact with cold water it liquifies instantly and the velocity of H2O molecules is high that instant of phase change.