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avanturin [10]
3 years ago
10

What energetic travels through space in the form of waves?

Chemistry
1 answer:
r-ruslan [8.4K]3 years ago
7 0
Im pretty sure the answer is light, as it is in the form of waves and it does travel through space very indefinitely. light travels forever unless stopped by an obstruction.

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Determine the mmol of both starting materials (factoring in that formic acid is not pure, but rather 88% weight/volume, or 88g/1
Oxana [17]

Solution :

Molecular      Molar Mass       Volume      Density       Mass      Moles      nmoles

formula            (g/mol)               (mL)          (g/mL)           (g)

$C_6H_8N_2$            108.14                                                    0.108      0.001          1

HCOOH           46.02                0.064          1.22     0.07808     0.0017       1.7

mmoles of o-phenylenediamine = 1 mmoles

mmoles of formic acid = 1.7 \approx 2 mmoles

From the reaction of o-phenylenediamine and formic acid, we see,

1 mmole of o-phenylenediamine reacts with 1 mmole of formic acid.

But here, 2 mmoles of the formic acid , this means that the formic acid is an excess reagent and the o-phenylenediamine is the limiting reagent here.

The amount of product depends on the limiting reagent that is o-phenylenediamine. So, 1mmole of o-phenylenediamine will give 1mmole of product.

molar mass of Benzimidazole = 118.14 g/mol

mmoles of Benzimidazole formed = 1 mmol

Mass of benzimidazole formed = molar mass x \frac{nmoles}{1000}

                                                    $=\frac{118.14 \times 1}{1000}$

                                                     = 0.11814 g

So the theoretical yield of Benzimidazole is = 0.118 g = 118mg

5 0
3 years ago
What is the concentration (M) of CH3OH in a solution prepared by dissolving 11.7 g of CH3OH in sufficient water to give exactly
Andrej [43]

Answer:

3.65~M

Explanation:

We have to remember the <u>molarity equation</u>:

M=\frac{mol}{L}

So, we have to calculate "mol" and "L". The total volume is 100 mL. So, we can do the <u>conversion</u>:

100~mL\frac{1~L}{1000~mL}=~0.1~L

Now we can calculate the moles. For this we have to calculate the <u>molar mass</u>:

O: 16 g/mol

H: 1 g/mol

C: 12 g/mol

(16*1)+(1*4)+(12*1)=32~g/mol

With the molar mass value we can <u>calculate the number of moles</u>:

1.7~g~of~CH_3OH\frac{1~mol~CH_3OH}{32~g~of~CH_3OH}=0.365~mol~CH_3OH

Finally, we can <u>calculate the molarity</u>:

M=\frac{0.365~mol~CH_3OH}{0.1~L}=3.65~M

I hope it helps!

7 0
3 years ago
How much nitrous oxide is in the atmosphere ​
seropon [69]
Answer is: 0.330 ppm
Hope this helps
3 0
3 years ago
Read 2 more answers
Balance the chemical equation
brilliants [131]

Answer:

Fe_2O_3+3CO\Rightarrow \:2Fe+3CO_2

Explanation:

Fe_2O_3+CO\Rightarrow \:2Fe+CO_2\\\\Fe_2O_3+3CO\Rightarrow \:2Fe+3CO_2

Best Regards!

8 0
3 years ago
If you were to react 4.3 miles of magnesium phosphide how many moles of potassium would you need?
bixtya [17]

Answer:

25.8

Explanation:

Let's write the reaction between magnesium-phosphide and potassium:

Mg3P2 + K = Mg + K3P

And now let's balance this equation:

Mg3P2+6K=3Mg+2K3P

We see that the ratio of magnesium-phosphide and potassium is 1:6, which means that for every mole of magnesium-phosphide there need to be 6 moles of potassium.

Since we have 4.3 moles of Mg3P2, there need to be 6 • 4.3 = 25.8 moles of potassium.

5 0
3 years ago
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