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An isotope has a 6 hour half life. What % of the parent nuclei will be left. after 24 hours? Time elapsed & 0 hours & 6 hours & 12 hours & 18 hours * of Half lives & 0 & 1 & 2 & 3 & 4 % of Parent & 100 % & & & & 10 % 25 % 50 % 6.25 %

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An isotope has a 6 hour half life. What % of the parent nuclei will be left. after 24 hours?

Time elapsed & 0 hours & 6 hours & 12 hours & 18 hours 
 * of Half lives & 0 & 1 & 2 & 3 & 4 
 % of Parent & 100 % & & & &

 10 % 
 25 % 
 50 % 
 6.25 %

An isotope has a 6 hour half life. What % of the parent nuclei will be left. after 24 hours? Time elapsed & 0 hours & 6 hours & 12 hours & 18 hours * of Half lives & 0 & 1 & 2 & 3 & 4 % of Parent & 100 % & & & & 10 % 25 % 50 % 6.25 %

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HarrietElite · Tutor for 8 years

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<p> 6.25%</p>

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<p> 1. This question involves the calculation of the remaining amount of a radioactive isotope after a certain period based on its half-life, which is a concept in physics, particularly in nuclear physics.<br />2. The half-life of a substance is the time it takes for half of the substance to undergo radioactive decay.<br />3. Every half-life period, the remaining amount of the substance halves.<br />4. We are given a half-life of 6 hours for the isotope.<br />5. We need to determine how much of the parent nuclei will be left after 24 hours.<br />6. To calculate the amount remaining after 24 hours, we can use the formula N = (1/2)^(t/T) × N0, where N0 is the initial quantity (in this case, 100%), t is the elapsed time (24 hours), and T is the half-life period (6 hours).<br />7. Since there are 4 half-lives in 24 hours (24 hours divided by the 6-hour half-life), we will apply the halving principle 4 times.<br />8. After one half-life, the remaining amount is 50% of the initial. After two half-lives, it's 25% of the initial. After three half-lives, it's 12.5% of the initial. And after four half-lives, it's 6.25% of the initial.<br />9. This can be also verified by (1/2)^4 = 1/16, and multiplying 100% (initial quantity) by 1/16 gives 6.25%.</p>
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