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Nikolay [14]
4 years ago
4

Which describes the oxidizing agent in a chemical reaction?

Chemistry
2 answers:
adell [148]4 years ago
7 0
An oxidizing agent is one that causes oxidation by gaining electrons from another atom/molecule. 

A helpful reminder is OIL RIG which stands for:

Oxidation is Loss
Reduction is Gain

The answer is D
Mamont248 [21]4 years ago
3 0
Hello
The term "oxidizing agent" itself is very helpful in this question. An "agent" of something is an entity that carries out the required task. Thus, an oxidizing agent must oxidize. In order for it to oxidize something else, it must itself be reduced. Now we discuss the movement of electrons.
Defining oxidation as the increase in oxidation state, eg from +1 to +2, we see that charge is becoming more positive. Thus, to increase positive charge, electrons must be removed. The opposite is true of reduction.
Something that is helpful in remembering this is OIL RIG
Oxidation is loss (of electrons) Reduction Is Gain (of electrons)
Therefore, the answer is D
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3 years ago
For the reaction ? Fe+? H2o ⇀↽? Fe3o4+? H2 , a maximum of how many grams of fe3o4 could be formed from 354 g of fe and 839 g of
Evgesh-ka [11]

The given reaction is:

3Fe + 4H2O → Fe3O4 + 4H2

Given:

Mass of Fe = 354 g

Mass of H2O = 839 g

Calculation:

Step 1 : Find the limiting reagent

Molar mass of Fe = 56 g/mol

Molar mass of H2O = 18 g/mol

# moles of Fe = mass of Fe/molar mass Fe  = 354/56 = 6.321 moles

# moles of H2O = mass of h2O/molar mass of H2O = 839/18 = 46.611 moles

Since moles of Fe is less than H2O;  Fe is the limiting reagent.

Step 2: Calculate moles of Fe3O4 formed

As per reaction stoichiometry:

3 moles of Fe form 1 mole of Fe3O4

Therefore, 6.321 moles of Fe = 6.321 * 1/ 3 = 2.107 moles of Fe3O4

Step 4: calculate the mass of Fe3O4 formed

Molar mass of Fe3O4 = 232 g/mol

# moles = 2.107 moles

Mass of Fe3O4 = moles * molar mass

= 2.107 moles * 232 g/mol = 488.8 g (489 g approx)

 


7 0
4 years ago
Read 2 more answers
Which substance below is resonance stabilized by delocalized pi electrons?
mariarad [96]
If you do not this, I suggest brushing up on delocalization as well as sigma/pi bonds. Benzene is the only one of the 5 with any pi bonds, so this should be a relatively easy question if you are familiar with the concepts. I would search up a detailed (not to detailed though) explanation of both.
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3 years ago
The free energy of formation of nitric oxide, NO, at 1000 K (roughly the temperature in an automobile engine during ignition) is
Assoli18 [71]

<u>Answer:</u> The value of K_p for the chemical equation is 8.341\times 10^{-5}

<u>Explanation:</u>

For the given chemical equation:

N_2(g)+O_2(g)\rightarrow 2NO(g)

To calculate the K_p for given value of Gibbs free energy, we use the relation:

\Delta G=-RT\ln K_p

where,

\Delta G = Gibbs free energy = 78 kJ/mol = 78000 J/mol  (Conversion factor: 1kJ = 1000J)

R = Gas constant = 8.314J/K mol

T = temperature = 1000 K

K_p = equilibrium constant in terms of partial pressure = ?

Putting values in above equation, we get:

78000J/mol=-(8.314J/Kmol)\times 1000K\times \ln K_p\\\\Kp=8.341\times 10^{-5}

Hence, the value of K_p for the chemical equation is 8.341\times 10^{-5}

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Harry Hess resurrected Wegener’s continental drift hypothesis and also the mantle convection idea of Holmes.
stepan [7]

Answer:

true

Explanation:

7 0
3 years ago
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