What Is Time and Why Does It Delay? A Super-Simple Resonance View ( msf:47630 )

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1. Verfasser: Sepehri, Sadegh
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Sprache:Englisch
Veröffentlicht: Zenodo 2025
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_version_ 1866901260077105152
author Sepehri, Sadegh
author_facet Sepehri, Sadegh
contents <p>Time is often treated as a fundamental entity, yet it is never observed directly. In practice, all measurements of time arise from comparisons between repeating motions—such as mechanical oscillations, atomic resonances, or planetary rotation.</p> <p>This paper presents a simplified physical perspective in which time delay emerges from frequency mismatch (Δf) between rhythms. When a system’s internal oscillation is disturbed by gravity, motion, or environmental resistance, its rhythm slips relative to a stable reference. The accumulated separation between rhythms is what we interpret as time delay.</p> <p>Mechanical and atomic clocks are examined as resonance systems with differing levels of stability, showing that clocks do not measure time itself but reveal disturbances in internal motion.</p>
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id zenodo_https___doi_org_10_5281_zenodo_18041322
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language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle What Is Time and Why Does It Delay? A Super-Simple Resonance View ( msf:47630 )
Sepehri, Sadegh
time
clocks
time delay
atomic clocks
slippage
frequency mismatch
resonance
rhythm comparison
USP Field Theory
msf:45740
msf:47630
<p>Time is often treated as a fundamental entity, yet it is never observed directly. In practice, all measurements of time arise from comparisons between repeating motions—such as mechanical oscillations, atomic resonances, or planetary rotation.</p> <p>This paper presents a simplified physical perspective in which time delay emerges from frequency mismatch (Δf) between rhythms. When a system’s internal oscillation is disturbed by gravity, motion, or environmental resistance, its rhythm slips relative to a stable reference. The accumulated separation between rhythms is what we interpret as time delay.</p> <p>Mechanical and atomic clocks are examined as resonance systems with differing levels of stability, showing that clocks do not measure time itself but reveal disturbances in internal motion.</p>
title What Is Time and Why Does It Delay? A Super-Simple Resonance View ( msf:47630 )
topic time
clocks
time delay
atomic clocks
slippage
frequency mismatch
resonance
rhythm comparison
USP Field Theory
msf:45740
msf:47630
url https://doi.org/10.5281/zenodo.18041322