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28 units available
6 categories total
To convert shakes to seconds: multiply by 10⁻⁸. To nanoseconds: multiply by 10.
1 shake = 10 ns = 10⁻⁸ s = 10,000 ps. A nuclear fission event takes about 1 shake.
For example, 1 Shake (shake) = 1.854858e+35 Planck Time (tₚ).
| Shake (shake) | Planck Time (tₚ) |
|---|---|
| 0.1 | 1.854858e+34 |
| 0.5 | 9.274292e+34 |
| 1 | 1.854858e+35 |
| 2 | 3.709717e+35 |
| 5 | 9.274292e+35 |
| 10 | 1.854858e+36 |
| 25 | 4.637146e+36 |
| 50 | 9.274292e+36 |
| 100 | 1.854858e+37 |
| 500 | 9.274292e+37 |
| 1000 | 1.854858e+38 |
A shake is an informal unit of time equal to 10 nanoseconds (10⁻⁸ seconds), used in nuclear physics.
1 shake = 10 ns = 10⁻⁸ s = 10,000 ps. A nuclear fission event takes about 1 shake.
To convert shakes to seconds: multiply by 10⁻⁸. To nanoseconds: multiply by 10.
Timing nuclear chain reactions, modeling neutron transport in reactors, and nuclear weapon physics calculations.
In a nuclear explosion, the chain reaction is complete in about 50–60 shakes (500–600 ns). The name reflects the era's dark humor.
Not recognizing 'shake' as a real unit. It's informal but precisely defined and still used in nuclear engineering.
A 'shake' = 10 nanoseconds. It was invented at Los Alamos to make nuclear timing calculations easier — humor in extreme circumstances.
The Planck time is the smallest meaningful unit of time in physics — approximately 5.391 × 10⁻⁴⁴ seconds.
tₚ ≈ 5.391 × 10⁻⁴⁴ s. It takes ~1.855 × 10⁴³ Planck times to make one second.
To convert Planck times to seconds: multiply by 5.391 × 10⁻⁴⁴. To attoseconds: multiply by 5.391 × 10⁻²⁶.
No practical applications — Planck time is purely theoretical. No conceivable technology could measure time intervals this short.
The age of the universe is about 8.08 × 10⁶⁰ Planck times. In the first Planck time after the Big Bang, all four fundamental forces may have been unified.
Thinking of Planck time as the 'shortest possible time' — it's the scale where our current physics breaks down, not necessarily a fundamental limit.
Planck time sets the scale where quantum mechanics and gravity intersect. Below this scale, we need a theory of quantum gravity we don't yet have.



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