09 October 2026

How Extended Classical Mechanics (ECM) Corrects the Error in Relativistic Time Dilation

Soumendra Nath Thakur | ORCID: 0000-0003-1871-7803

Date October 08, 2026

In short, within the framework of Extended Classical Mechanics (ECM), so-called 'time dilation' is a form of temporal distortion or deviation. This phenomenon arises from the entropic distortion generated during the evolution of the universe. Since this distortion affects the components constituting a clock, the wavelength of the clock's oscillator becomes distorted; consequently, errors or deviations emerge in the measurement of abstract time—which is not a physical entity. This differs from the 'time dilation' described in the theory of relativity—which implies an actual 'expansion' or 'lengthening' of time—and is instead an error in the time displayed by an ideal clock; that is, when the oscillator is distorted, the wavelength changes, resulting in an error in the displayed time.

However, it is possible to significantly eliminate this clock-time error by correcting the entropy-induced change or distortion in the oscillator's wavelength. This is not achieved by directly correcting the displayed time—since time is an abstract concept rather than a physical object—but rather by restoring the clock's 360-degree rotational process to its ideal state.