miércoles, 24 de febrero de 2021

termodinàmica imperial de gas ideal

PV = kT


P = (1/V)·kT

V = (1/P)·kT

T = (1/k)·PV


d_{T}^{(1/m)}[P] = ( k/V )^{(1/m)}

d_{T}^{(1/m)}[V] = ( k/P )^{(1/m)}


d_{P}^{(1/m)}[T] = ( V/k )^{(1/m)}

d_{V}^{(1/m)}[T] = ( P/k )^{(1/m)}


d_{V}^{(1/m)}[P] = ( (-1)·( P/V ) )^{(1/m)}

d_{P}^{(1/m)}[V] = ( (-1)·( V/P ) )^{(1/m)}


d_{V}^{(2/m)}[P] = ( (-1)·( 1/V ) )^{(1/m^{2})}

d_{P}^{(2/m)}[V] = ( (-1)·( 1/P ) )^{(1/m^{2})}

No hay comentarios:

Publicar un comentario