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a_sh-v [17]
2 years ago
15

In living organisms, C-14 atoms disintegrate at a rate of 15.3 atoms per minute per gram of carbon. A charcoal sample from an ar

chaeological site has a C-14 disintegration rate of 9.16 atoms per minute per gram of carbon. Estimate the age of this sample in years. The half-life of C-14 is 5730 years. (enter only the number of years in standard notation, not the unit years)
Chemistry
1 answer:
Schach [20]2 years ago
6 0

Answer:

The answer is "4,241 .17 years"

Explanation:

The disintegration rate, which shows in C-14 atoms =  15.3 \frac{atoms}{min-g}

Rate of sample disintegration =9.16 \frac{atoms} {min-gram}

The digit proportion of C-14 can be determined that is included in the sample = \frac {9.16}{15.3} \\\\ = 0.5987

5730 years from half-life.  

The number with half-lives (n) which are repelled must be determined:

(\frac{1}{2})^n= A\\\\A=  fraction of C-14, which is remaining \\\\(\frac{1}{2})^n= 0.5987 \\\\ n \log 2 = - \log 0.5987\\\\

\therefore \\\\ \Rightarrow n= \frac{0.227}{0.3010} \\\\  = 0.740\\

So, the age of the sample is given by = n \times\ half-life

                                                 = 0.740 \times 5730 \ years \\\\=4241.17 \ years\\\\

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Explanation:

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Answer:

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Explanation:

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- Azimuthal quantum number (l): represents the subshell or sublevel, and is represented by 0,1,2,3.., and for the letters s, p, d, f,...

- Magnetic quantum number (ml): represents the orbital. It varies from -l to +l passing by 0. Each orbital can have 2 electrons.

- Spin quantum number (ms): represents the spin of the electron. It can be +1/2 or -1/2.

The strontium has an atomic number equal to 38, by the Linus Pauling's diagram, the electronic distribution is:

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The valence electron is at the subshell 5s, which has only one magnetic quantum number: 0. Because it has 2 electrons, the first one has spin =1/2, and the other -1/2. So the first electron of the formation of cation has quantum numbers:

n = 5; l = 0; ml = 0; ms = -1/2

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You prepare a standard by weighing 10.751 mg of compound X into a 100 mL volumetric flask and making to volume. You further dilu
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Answer:

0.12693 mg/L

Explanation:

First we <u>calculate the concentration of compound X in the standard prior to dilution</u>:

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Then we <u>calculate the concentration of compound X in the standard after dilution</u>:

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Now we calculate the<u> concentration of compound X in the sample</u>, using the <em>known concentration of standard and the given areas</em>:

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1 year ago
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<u>Answer:</u>

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<u>Explanation:</u>

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For the given chemical reactions:

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As, K_{eq}>1, the reaction will be favored on the product side.

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