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MULTIPLE CHOICE QUESTION Albert Einstein created this equation that shows __ (Note: The speed of light is approximately 300 ,000,000 meters per second. This is shortened to 3.0x 10^-8m/s, where 8 is the number of zeros that follow the 3) a lot of mass will make a little bit of energy a little bit of mass will make a huge amount of energy A little mass will make a little bit of energy a lot of mass is needed to make a huge amount of energy

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MULTIPLE CHOICE QUESTION
Albert Einstein created this equation that shows __
(Note: The speed of light is approximately 300 ,000,000 meters per second. This is shortened to 3.0x
10^-8m/s, where 8 is the number of zeros that follow the 3)
a lot of mass will make a little bit of energy
a little bit of mass will make a huge amount of energy
A little mass will make a little bit of energy
a lot of mass is needed to make a huge amount of energy

MULTIPLE CHOICE QUESTION Albert Einstein created this equation that shows __ (Note: The speed of light is approximately 300 ,000,000 meters per second. This is shortened to 3.0x 10^-8m/s, where 8 is the number of zeros that follow the 3) a lot of mass will make a little bit of energy a little bit of mass will make a huge amount of energy A little mass will make a little bit of energy a lot of mass is needed to make a huge amount of energy

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SaffronVeteran · Tutor for 10 years

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Given the propensity to generate a high amount of energy by transmitting a relatively small piece of matter as insinuated through Einstein's equation E=mc^2, option 'a little bit of mass will make a huge amount of energy' best fits how Einstein's equation is typically interpreted by present-day physicists. Hence, the answer is: a little bit of mass will make a huge amount of energy.

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## Step 1:<br />The question refers to Albert Einstein's equation E=mc^2. This equation demonstrates the principle that mass (m) and energy (E) are interchangeable; a specific amount of mass (measured at rest) 'm,' if converted completely into energy 'E,' results in a large amount of energy because of the speed of light c = \(3.0 \times 10^8 m/s\) squared being quite large. <br /><br />### The formula: \(E=mc^2\)<br /><br />## Step 2:<br />Now, with a better understanding of Einstein's notable formula, we should look at the options outlined in the question.<br /><br />## Step 3: <br />The options present how mass is converted into energy. Our target is to find the statement which corresponds accurately with the equation \(E=mc^2\).
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