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kondaur [170]
3 years ago
7

N2(g) + 3H2(g) -> 2NH3(g)

Chemistry
2 answers:
Firdavs [7]3 years ago
7 0
Each mole of nitrogen produces 2 moles of ammonia.

One mole of gas occues 22.4 liters under STP.

Moles of ammonia = 100/22.4
= 4.46 moles

Moles of nitrogen required = 4.64/2
= 2.32 moles

Mass = moles x Mr
Mass of nitrogen = 2.32 x 28
= 64.96 grams

I would say the answer is C.
Nesterboy [21]3 years ago
5 0
One mole of a gas (like ammonia NH3) takes up approximately 22.41 liters at STP. Therefore, we can divide 100.0 L by 22.41 Liters/mole to get the number of moles of NH3.
100.0 L /(22.41 L/mol) = 4.462 moles NH3
Now, we know that there is one mole of N2 for every two moles of NH3, so we can get the number of moles of N2.
4.462 moles NH3 * (1 mole N2)/(2 moles NH3) = 2.231 moles N2
Now, we can multiply the number of moles of N2 by its molar mass (28.02 g/mol) to get the number of grams we need.
2.231 moles N2 * (28.02 grams N2)/(1 mole N2) = 62.52 grams N2
62.5 grams N2 are required
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A 248-g piece of copper is dropped into 390 mL of water at 22.6 °C. The final temperature of the water was measured as 39.9 °C.
max2010maxim [7]

Answer:

The answer to your question is: Initial temperature of copper = 67.1°C

Explanation:

Data

mass Copper = 248 g

volume Water = 390 ml

T1 water = 22.6°C

T2           = 39.9°C

T1 copper = ?

Specific heat water = 1 cal/g°C

Specific heat copper = 0.092 cal/g°C

Formula       copper             water

Heat is negative for copper because it releases heat

                  - mCp(T2 - T1) = mCp(T2 - T1)                  

                  - (248)(39.9 - T1) = 390 (1)((39.9 - 22.6)           Substitution

                 -9895.2 + 248T1 = 390(17.3)                             Simplification

                 -9895.2 + 248T1 = 6747

                 248 T1 = 6747 + 9895.2

                 248 T1 = 16642.2

                 T1 = 16642.2 / 248

                 T1 = 67.1 °C                                                         Result

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Scientific notation is
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Read 2 more answers
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