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Anna71 [15]
4 years ago
14

White (colorless) diamonds are composed of pure carbon in a solid lattice. Some diamonds found in nature are observed to have a

color, which comes from a trace impurity in the lattice. In blue diamonds, the color comes from the replacement of a carbon atom with a boron atom in the lattice. A. (4 points) If one out of every 1000 carbon atoms is replaced by a boron atom, what is the percent by mass of boron in a blue diamond? B. (2 points) What is the empirical formula for the diamond described above?
Chemistry
1 answer:
Novosadov [1.4K]4 years ago
7 0

Answer:

%by mass=(4×10g/mol)/((4×10g/mol)+1000×12)

=0.33%by mass

Empirical fomula

C250B

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1. If there are 100 navy beans, 27 pinto beans and 173 blackeyed peas in a container, what is the percent abundance in the conta
kompoz [17]

The answers to the two questions are:

1. The percent abundance in the container which has <u>100 navy</u>, <u>27 pinto</u>, and <u>173 black-eyed peas beans</u> is 33.3%, 9.0%, and 57.7% for navy bean, pinto bean, and black-eyed <em>peas </em>beans, respectively.

2. The <em>weighted </em>average score for the scores of 85, 75, 96 obtained from the evaluations of exams (20%), labs (75%), and homework (96%) is 84.1.      

1. The percent abundance by type of bean is given by:

\% = \frac{n}{n_{t}} \times 100   (1)

Where:

n: is the number of each type of beans

n_{t}: is the <em>total number</em> of <em>beans </em>

The <em>total number </em>of <em>beans</em> can be calculated by adding the number of all the types of beans:

n_{t} = n_{n} + n_{p} + n_{b}   (2)

Where:

n_{n}: is the number of navy beans = 100

n_{p}: is the number of pinto beans = 27

n_{b}: is the number of black-eyed <em>peas </em>beans = 173  

Hence, the total number of beans is (eq 2):

n_{t} = 100 + 27 + 173 = 300  

Now, the <em>percent abundance</em> by type of bean is (eq 1):

  • Navy beans

\%_{n} = \frac{100}{300} \times 100 = 33.3 \%

  • Pinto beans

\%_{p} = \frac{27}{300} \times 100 = 9.0 \%

  • Black-eyed peas beans

\%_{b} = \frac{173}{300} \times 100 = 57.7 \%

Hence, the percent abundance by type of bean is 33.3%, 9.0%, and 57.7% for navy bean, pinto bean, and black-eyed peas beans, respectively.

2. The average score (S) can be calculated as follows:

S = e*\%_{e} + l*\%_{l} + h*\%_{h}   (3)

Where:

e: is the score for exams = 85

l: is the score for lab reports = 75

h: is the score for homework = 96

%_{e}\%_{e}: is the <em>percent</em> for<em> exams</em> = 70.0%

\%_{l}: is the <em>percent </em>for <em>lab reports</em> = 20.0%

\%_{h}: is the <em>percent </em>for <em>homework </em>= 10.0%

Then, the <u>average score</u> is:

S = 85*0.70 + 75*0.20 + 96*0.10 = 84.1

We can see that if the score for each evaluation is 100, after multiplying every evaluation for its respective percent, the final average score would be 100.  

Therefore, the <em>weighted </em>average score will be 84.1.

Find more about percents here:

  • brainly.com/question/255442?referrer=searchResults
  • brainly.com/question/22444616?referrer=searchResults

I hope it helps you!

4 0
3 years ago
What is the most basic building block of matter?
Viefleur [7K]
Answer would be A)the atom
7 0
3 years ago
Read 2 more answers
In the first 22.0 s of this reaction, the concentration of HBr dropped from 0.590 M to 0.465 M . Calculate the average rate of t
Alex

This is an incomplete question, here is a complete question.

Consider the following reaction:

2HBr(g)\rightarrow H_2(g)+Br_2(g)

In the first 22.0 s of this reaction, the concentration of HBr dropped from 0.590 M to 0.465 M . Calculate the average rate of the reaction in this time interval.

Answer : The average rate of reaction is, 6.25\times 10^{-3}M/s

Explanation :

The given chemical reaction follows:

2HBr(g)\rightarrow H_2(g)+Br_2(g)

The average rate of the reaction for disappearance of HBr is given as:

\text{Average rate of disappearance of HBr}=-\frac{\Delta [HBr]}{\Delta t}

where,

C_2 = final concentration of HBr = 0.465 M

C_1 = initial concentration of HBr = 0.590 M

\Delta t = change in time = 22.0 s

Putting values in above equation, we get:

\text{Average rate of reaction}=-\frac{(0.465-0.590)M}{20.0s}\\\\\text{Average rate of reaction}=6.25\times 10^{-3}M/s

Hence, the average rate of reaction is, 6.25\times 10^{-3}M/s

3 0
3 years ago
Why was Byzantium made the new Roman capital? Choose three correct answers.
Alisiya [41]

Answer + Explanation:

Byzantium had a natural harbor.

Byzantium is located in one of the best natural harbors in the world, in a small peninsula in front of the strait of Bosphorus, which links the Black Sea with the Mediterranean Sea (via the Sea of Marmara and the Aegean Sea).

Rome had been destroyed by invaders.

Rome was sacked in 410 by an army of Visigoths lead by king Alaric. The sacking proved fatal for Rome, and the city would not regain its condition for over a thousand years after.

Byzantium provided greater access to trade routes.

Besides being a great port, Byzantium is also a link between Europe and the Middle East (and Asia), and the Mediterranean and the Black Seas. This means that Byzantium was at a crossroads, and had access to several trade routes.

(from " sebastiansierraocm")

I hope this helps, have a nice day!

8 0
3 years ago
A sample of gas occurs 9.0mL at a pressure of 500mmHg. A new volume of the same sample is at 750mmHg. Use two significant figure
Rufina [12.5K]

Answer:

\large \boxed{\text{6.0 mL} }

Explanation:

The temperature and amount of gas are constant, so we can use Boyle’s Law.

p_{1}V_{1} = p_{2}V_{2}

Data:

\begin{array}{rcrrcl}p_{1}& =& \text{500 mmHg}\qquad & V_{1} &= & \text{9.0 mL} \\p_{2}& =& \text{750 mmHg}\qquad & V_{2} &= & ?\\\end{array}

Calculations:  

\begin{array}{rcl}500 \times 9.0 & =& 750V_{2}\\4500 & = & 750V_{2}\\V_{2} & = &\dfrac{4500}{750}\\\\& = & \textbf{6.0 mL}\\\end{array}\\\text{The volume of the gas is } \large \boxed{\textbf{6.0 mL}}

4 0
3 years ago
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