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Ivan
3 years ago
15

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Chemistry
1 answer:
lys-0071 [83]3 years ago
7 0

Answer:

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Explanation:

hkyfvbjjfvvtbn

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How many kilowatt-hours of electricity are used to produce 3.00 kg of magnesium in theelectrolysis of molten MgCl2 with an appli
Llana [10]

Answer:

There is 29.8 kilowatt hours needed.

Explanation:

Step 1: Data given

Mass of Magnesium = 3.00 kg

Molar mass of magnesium = 24.31 g/mol

Applied emf = 4.50 V (= 4.50 J/C)

Step 2: Calculate moles of Magnesium

Moles = Mass Mg / Molar mass Mg

Moles Mg = 3000 grams / 24.31 g/mol

Moles Mg =  123.4 moles

Step 3: Calculate  how many electrons are needed to produce the magnesium.

The ionic equation for the reduction of Mg^2+ :

Mg^2+   +   2e^-  →   Mg

Every mole of Mg requires 2 mol of electrons.

For 123.4 mol of Mg, we have 246.8 mol of electrons.

Step 3: Find how many coulombs are involved.

The Faraday constant = 96500 couloumbs

1 mole of electrons is 96500 coulombs.

246.8 mol of electrons need  2.38 *10^7 Coulombs

Step 4: Calculate kilowatt-hours of electricity needed

2.38 * 10^7 C * 4.5 J/C = 10.7 * 10^7 J

10.7 * 10^7 J * ( 1 kW-h-/ 3.6*10^6 J ) = 29.8 kWh

There is 29.8 kilowatt hours needed.

5 0
3 years ago
Explain how to count the number of elements in a compound.
Anna35 [415]

Answer:

Simply identify what elements are in a compound

Explanation:

For example in NaCl we have sodium (Na) and Chlorine (Cl)

In order to do this you would need to recognise the symbols for a certain element: O for oxygen; N for nitrogen; H for hydrogen etc.

3 0
3 years ago
Who discovered the electron?
Sedbober [7]
J.J. Thomson discovered the electron  1897
3 0
3 years ago
Help me Benjamin please​
pogonyaev

Answer:

1...option B

2... peroids

3..group

4.. metals

5...7

6...dmitri mendeleev

7.. xenon

8... compound can be broken down by physical means

9... they can be broken down into simpler substance

sry if its wrong

last two 8th and 9th i do t think ots correct

4 0
3 years ago
Read 2 more answers
At a particular pressure and temperature, nitrogen gas effuses at the rate of 79 mL/s. Under the same conditions, at what rate w
amm1812

Rate of Sulfur dioxide : 2730.44 mL/s

<h3>Further explanation  </h3>

Graham's law: <em>the rate of effusion of a gas is inversely proportional to the square root of its molar masses or  </em>

the effusion rates of two gases = the square root of the inverse of their molar masses:  

\rm \dfrac{r_1}{r_2}=\sqrt{\dfrac{M_2}{M_1} }

or  

\rm M_1\times r_1^2=M_2\times r_2^2

MW of N₂ = 28 g/mol

MW SO₂ = 64 g/mol

\tt 28\times 79^2=64\times r_2^2\\\\r_2^2=\dfrac{28\times 79^2}{64}=2730.44~mL/s

3 0
3 years ago
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