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xeze [42]
3 years ago
5

A chemical change in which a single compound is broken down into two or more simpler products.

Chemistry
1 answer:
Len [333]3 years ago
8 0
That is correct. What is the question?
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How does increased exhalation of CO2 at the lungs (pulmonary regulation) restore the correct pH range?
PilotLPTM [1.2K]

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When CO2 levels become excessive, a condition known as acidosis occurs. This is defined as the pH of the

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blood. As the body responds to neutralize this condition, an electrolyte imbalance – an increase of plasma

chloride, potassium, calcium and sodium, can occur.

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Leokris [45]
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One advantage to using nuclear power is
Veronika [31]

"NUCLEAR POWER" produces "no air pollution".

Option: D

<u>Explanation</u>:  

As nuclear power does not emit any hazardous gas or smoke thus it produces no air   pollution. But disposing of the waste is still a big issue in the case of nuclear power for which usually underground disposal in appropriate container method is opted but it's too have many disadvantages. Threat of an accident and the expenses of constructing nuclear reactors are really high so other three options are disadvantages of nuclear power.

6 0
4 years ago
What kind of oxide is formed when a piece of sodium is dropped in the water
aleksley [76]

Answer:

Sodium oxide is the product

Explanation:

4Na+O2->2Na2O

7 0
3 years ago
Hydrogen gas (a potential future fuel) can be formed by the reaction of methane with water according to the following equation:
Nastasia [14]

Answer:

The % yield of this reaction is 61.9 %

Explanation:

Step 1: Data given

Volume of methane = 25.0 L

Pressure of methane = 732 torr = 732 /760 atm = 0.9631579 atm

Temperature = 25.0 °C = 298 K

Volume of water vapor = 22.2 L

Pressure of water vapor = 704 torr = 704/760 atm = 0.92631579 atm

Temperature = 125 °C 398 K

The reaction produces 26.2 L hydrogen gas

Step 2: The balanced equation

CH4(g)+H2O(g)→CO(g)+3H2(g)

Step 3: Calculate moles methane

p*V = n*R*T

n  =(p*V)/(R*T)

⇒with n = the moles of methane = TO BE DETERMINED

⇒with p= the pressure of methane = 732 torr = 0.9631579 atm

⇒with V = the volume of methane = 25.0 L

⇒with R = the gas constant =0.08206 L*atm/mol*K

⇒with T = the temperature = 298 K

n = (0.9631579 * 25.0) / (0.08206*298)

n = 0.984668 moles

Step 4: Calculate moles H2O

p*V = n*R*T

n  =(p*V)/(R*T)

⇒with n = the moles of H2O= TO BE DETERMINED

⇒with p= the pressure of methane = 704 torr = 0.92631579  atm

⇒with V = the volume of methane = 22.2 L

⇒with R = the gas constant =0.08206 L*atm/mol*K

⇒with T = the temperature = 398 K

n = (0.92631579  * 22.2 )/(0.08206 * 398) = 0.62965 mol H2O

Step 5: Calculate moles H2

CH4(g) + H2O(g) ⇄ CO(g) + 3H2(g)

For 1 mol CH4 we need 1 mol H2O to produce 1 mol CO and 3 moles H2

H2O is the limiting reactant. It will completely be consumed. (0.62965 moles). Methane is in excess. There will react 0.62965 moles. There will remain  0.984668 - 0.62965 = 0.355018 moles methane

For 0.62965 moles H2O we'll have 3*0.62965 = 1.88895 moles H2

Step 6: Calculate volume H2

p*V = n*R*T

V= (n*R*T)/p

⇒with V = the volume of H2 = TO BE DETERMINED

⇒with n = the moles of H2 produced = 1.88895 moles

⇒with R = the gas constant = 0.08206 L*atm/mol*K

⇒with T = the temperature = 273K

⇒with p = the pressure of H2 = 1.0 atm

V = (1.88895 * 0.08206 * 273) / 1.0

V = 42.32 L

Step 7: Calculate the percent yield

% yield = (actual yield / theoretical yield) * 100 %

% yield = (26.2 / 42.32) * 100 %

% yield = 61.9 %

The % yield of this reaction is 61.9 %

8 0
4 years ago
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