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kogti [31]
3 years ago
7

2nh4cl molecules are formed. in total, how many atoms of each element do these two molecules contain? explain.

Chemistry
1 answer:
Alexxx [7]3 years ago
7 0
6nhcl molecular formerly elements
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What is the total pressure exerted by a mixture of 48.0 grams of CH4 and 56.0 grams of
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The pressure of the gas is obtained as 48 atm.

<h3>What is the total pressure?</h3>

Now we know that;

Number of moles of CH4 = 48.0 grams /16 g/mol = 3 moles

Number of moles of H2 =  56.0 grams/2 g/mol = 28 moles

Total number of moles present = 3 moles + 28 moles = 31 moles

Using;

PV =nRT

P = total pressure

V = total volume

n = total number of moles

R = gas constant

T = temperature

P = nRT/V

P = 31 * 0.082 * 286/15

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Learn more about pressure of a gas:brainly.com/question/18124975

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Which statement is correct about the law of conversation of energy
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Energy is transferred when atoms are rearranged.

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Describe the rules used for writing the outer configuration for the s-block, p-block, and d-block elements?
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<u>Rules to write the electronic configuration :</u>

Electrons complete orbitals in a way to reduce the energy of the atom. Therefore, the electrons in an atom complete the principal energy levels in order of rising energy (the electrons are getting distant from the nucleus). The order of levels filled appearances like the following

1s, 2s, 2p, 3s, 3p, 4s, 3d, 4p, 5s, 4d, 5p, 6s, 4f, 5d, 6p, 7s, 5f, 6d, and 7p

One way to recognise this pattern, apparently the simplest, is to refer to the periodic table and remember where each orbital block drops to rationally understand this pattern. Different way is to make a table like the one below and use vertical lines to determine which subshells resemble with each other.

  • S block: The S obstruct in the periodic table of components known as gatherings 1 and 2. There is a limit of two electrons that can possess the s orbital.
  • P Block: The P square contains group of 13, 14, 15, 16, 17, and 18, except for Helium.
  • D Block: The D block elements are found in groups 3, 4, 5, 6, 7, 8, 9, 10, 11, and 12 of the periodic table.
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The activiation energy required for a chemical reaction can be decreased by.
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