On the one hand, the uncertainty principle clearly states that very large amounts of energy loan can be received from the quantum vacuum fluctuations. Unfortunately, these loans must be repaid very quickly such that the product of time uncertainty and energy uncertainty always stays greater than or equal to Planck’s constant of action: ∆t∆E≥h. On the other hand, experimentally verified, the nuclear binding energy curve shows that both fusion of light nuclei and fission of heavy nuclei also release very large amounts of energy not as loans but as free energy charities to the neediest and like anything in large amounts, energy given in large quantities always defeats its beneficial purpose and given the idea of waste it or lose it, which in the final analysis all become useless energy called entropy. The control of energy’s usage becomes very important in an environment that is increasingly dependent on it.
Nonetheless, these amounts of energy loans from the quantum vacuum fluctuations of the square of zero-point energy seem to be limitless by a principle of uncertainty for time and energy. If this uncertainty approaches total certainty as the value of the Planck’s constant of action approaches zero then infinite amount of energy can be release from the vacuum in time zero, vice versa, zero energy is released in infinite time. Time zero implies an absolute singularity of the big-bang theory. Time infinity implies the eventual heat death of the universe. Both scenarios imply a linear time loosely independent of physical space. However, in a quantum theory of the space-time continuum, space and time are linked within a Möbius topology with two given directions of time making two distinct topologies of the quanta of space-time dynamics as the vector cross product of an infinitesimal metric and a primary force called an infinitesimal torque of space-time of local infinitesimal motion or local infinitesimal angular acceleration. The scalar dot product of any two of the space-time torques becomes the square of energy as a quantum of the space-time continuum. The infinitely many possible arrangements of these quanta of the space-time continuum are responsible for the limitless amounts of energy loan including free energy derived from the nuclear binding energy curve. Controlling these energy releases can be effected by the true mechanism of cold fusion that is truly independent of the temperature gradient (as used to define the efficiency of a given heat engine) of classical thermodynamics. Equivalently, all life forms of very short or infinitesimal temporal existence (compared to time infinity) are simply energy loans borrowed from the stingy quantum vacuum fluctuations of the squares of zero-point energies as quanta of the space-time continuum.


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