Most of the time, people often wonder at the forces interacting within the material norms of nature. They frequently marvel at the intensive and extensive interaction of the forces of nature, namely the Strong-Nuclear-Interaction, the Weak-Nuclear-Interaction, the Electromagnetic-Interaction and the Gravitational-Impact-Interaction. Cooperatively, these forces produce a precipitative condensate of gross material nature. The driving mechanism of these forces of interaction is the animating pressure, generated by the Animistic Energy, which is guarranteed, through motion and the rotational conduct accustomed to this section of material nature, the physically visible Gross Matter. This scientifically stipulates an increment of energy within every mechanical entropy, is the gross material production of a pressure, attributed to a force, multiplied by a little displacement. So that, an increment within the energy of a Thermodynamic entropy, could simply be expressed as the overall summation of the gross material production of certain generalized "pressure", which whenever it is unbalanced, causes certain generalized gross material "dsplacement" to happen, and with their gross material product, being the energy transfered, as a consequence. These forces, ethereally express themselves within the conceivable-science and their associated displacements, which are referred to as Conjugate Variables of the Conscience; e.g:- consider the pV conjugate pair. The pressure P acts as a generalized force. The pressure differences force a change within the volume dV and their gross material product is the energy lost by the entropy, due to activity. Hence, pressure is the driving force, volume is the associated displacement and these two, conote a pair of conjugate con-science variables. in a very similar manner, temperature differences, drive changes within the entropy and their gross material product, is the energy transfered by heat-transfer. The cooperative norms of the gross matter engenders the Thermodynamic force of nature which is always an intensive variable, and the gross material displacement is always an extensive variable, which consequently yields an extensive, materially gross energy. The intensive (force) variable is the derivation of the (extensive) gross material internal energy, with respect to the extensive gross material (displacement) variable, with all other extensive variables, gross materially held constant. Temperature:- T (K). Entropy:- S (J K-1). Pressure:- P (Pa = j m-3). Volume:- V (m3 = J Pa-1). Stress:- 6ij (Pa = Jm-3). V x Strain:- V x Eij (m3 = J P a-).
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