The speed of light is approximately 3 x 10^8 m/s. Therefore, 80 percent of the speed of light is 0.8 x 3 x 10^8 = 2.4 x 10^8 m/s. This would be the speed of the electron traveling at 80 percent the speed of light.
The speed of light in water is approximately 1.34 x 10^8 miles per hour.
To find the wavelength of light in Plexiglass, you need to take into account the change in speed of light. Since light travels at 67% of its speed in air in Plexiglass, you would need to calculate the wavelength using the formula: wavelength in Plexiglass = wavelength in air / refractive index of Plexiglass. Refractive index of Plexiglass is calculated as speed of light in air / speed of light in Plexiglass.
The energy required for a spaceship to travel at 90 percent of the speed of light would be substantial due to the relativistic increase in kinetic energy as speed approaches the speed of light. The energy required can be calculated using Einstein's mass-energy equivalence formula, E=mc^2. The exact amount of energy would depend on the mass of the spaceship and would be calculated as the difference in energy between its rest mass and its kinetic energy at that speed.
speed of light I think well it sounds right:)
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The speed of light is approximately 3 x 10^8 m/s. Therefore, 80 percent of the speed of light is 0.8 x 3 x 10^8 = 2.4 x 10^8 m/s. This would be the speed of the electron traveling at 80 percent the speed of light.
9,999,999,800,000,001
99999999/1
99999999 + 987654345678 = 987754345677
It is 99999999.
Even at modest %'s of the speed of light objects start to radiate their energy away in Gravitational Waves. So it is very expensive to approach the speed of light when most of your effort is just radiated away.
It's 1/0.8 = 1.25
99999999 add 222222222 = 322222221
You gave the answer in your question: 0.0000012%.
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easy.... cheat_power(99999999) cheat_requisition(99999999) cheat_revealall