PLEASE HELP ASAP
Aluminum oxide (Al2O3) and iron (Fe) react according to the following
balanced equation:
4Al2O3 + 9Fe + 3Fe304 + 8A|
If there are 10.2 grams of Al2O3 and 11.2 grams of Fe, which statement
identifies the limiting reagent in this reaction and best supports that claim?

PLEASE HELP ASAP Aluminum Oxide (Al2O3) And Iron (Fe) React According To The Followingbalanced Equation:4Al2O3

Answers

Answer 1

Answer:

Fe is the limiting reagent

Explanation:

Answer 2

In a chemical reaction, the limiting reactant, also known as the limiting reagent. Therefore, the correct option is option C.

What is limiting reagent?

In a chemical reaction, the limiting reactant, also known as the limiting reagent, controls how much product is produced. Calculating the percentage value of a reaction is achievable if the limiting reactant has been identified.

Because elements and compounds in an equilibrium chemical equation react in accordance with their mole ratios, there must be a limiting reactant. Therefore, when one of the reactants was present in a larger amount than the other and the mole ratio inside the balanced equation specifies that it takes 1 mole from each reactant to generate a product, the reactant existing in the lesser amount would be the limiting reactant.

4Al[tex]_2[/tex]O[tex]_3[/tex] + 9Fe [tex]\rightarrow[/tex] 3Fe[tex]_3[/tex]O[tex]_4[/tex] + 8A|

moles of Al[tex]_2[/tex]O[tex]_3[/tex] = 10.2 /101.96

                            =0.10moles

moles of Fe = 11.2/55.8

                   =0.20

Fe is the limiting reagent

Therefore, the correct option is option C.

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Answer:

A dipole-dipole force is when the positive side of a polar molecule attracts the negative side of another polar molecule.

A hydrogen bond is a dipole-dipole force and is an attraction between a slightly positive hydrogen on one molecule and a slightly negative atom on another molecule.

Answer:

Hydrogen bonds are dipole-dipole interactions in which at least one of the atoms involved is a hydrogen atom. Dipole-induced dipole bonds are those electric bonds that exist between a molecule with a permanent dipole moment and a molecule in which a temporary dipole moment has been induced.

A chemist determined by measurements that 0.0400 moles of potassium iodide participate in a chemical reaction. Calculate the mass of potassium iodide that participates. Be sure your answer has the correct number of significant digits.

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j

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Answer:

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Explanation:

By dating the rocks in Earth's ever-changing crust, as well as the rocks in Earth's neighbors, such as the moon and visiting meteorites, scientists have calculated that Earth is 4.54 billion years old, with an error range of 50 million years

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1. How many valence electrons are in a molecule of Acetate?

a 2
b 6
c 5
d 1

2. If Acetate is part of an ionic bond, what will it's charge be?

a neutral
b negative
c positive

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Answers

It would be 12.46 I hope this helps

Answer:

[tex]\boxed {\boxed {\sf 0.068 \ mol \ NaCl}}[/tex]

Explanation:

To convert from molecules to moles, Avogadro's Number must be used. This number is 6.022 *10²³. It tells us the number of particles (atoms, molecules, etc.) in 1 mole of a substance.

In this case, the particles are molecules of sodium chloride. We can make a ratio.

[tex]\frac {6.022*10^{23} \ molecules \ NaCl}{ 1 \ mol \ NaCl}[/tex]

Multiply by the given number of molecules.

[tex]4.1*10^{22} \ molecules \ NaCl *\frac {6.022*10^{23} \ molecules \ NaCl}{ 1 \ mol \ NaCl}[/tex]

Flip the fraction so the moles of sodium chloride cancel.

[tex]4.1*10^{22} \ molecules \ NaCl *\frac {1 \ mol \ NaCl}{6.022*10^{23} \ molecules \ NaCl }[/tex]

[tex]4.1*10^{22} *\frac {1 \ mol \ NaCl}{6.022*10^{23} }[/tex]

[tex]\frac {4.1*10^{22} \ mol \ NaCl}{6.022*10^{23} }[/tex]

[tex]0.06808369313 \ mol \ NaCl[/tex]

The original measurement of molecules has 2 significant figures, so our answer must have the same. For the number we calculated that is the thousandth place.

The 0 in the ten thousandth place tells us to leave the 8.

[tex]0.068 \ mol \ NaCl[/tex]

There are 0.068 moles of sodium chloride.

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identify a pH value between 2.5 and 7.5 at which the concentration of the weak acid being titrated is less than the concentration of its conjugate base.

Answers

The acids do not completely dissociate in water. So, they tend to form a buffer system. Above pH 3.5, the concentration of the conjugate base is more than the concentration of the acid.  

Weak acids: These are the acids that do not completely dissociate in water. So, they tend to form a buffer system.Buffers are used to resist a slight change in pH. The pH is equal to the pKa of the solution at equivalence.At equivalence, the concentration of weak acid and its conjugate base is equal.

After the equivalence point, the concentration of the conjugate base is more than the concentration of the acid.  

Therefore, after 3.5 the concentration of the conjugate base is more than the concentration of the acid.  

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Please please please someone give me the answers to all of these our teacher is very bad at explaining things and we are all confused i really need the answers please

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Answer: #1 2Al + 2S - Al2S2

Explanation: You have to make sure there are 2 of each on each side

1. Which type of matter has the molecules packed closer together?
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solid
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Answers

Answer:

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a. Solid

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d. All of them

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Answers

Answer:

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7. Why would it be difficult to measure the rate of reaction for the rusting of iron?

Answers

Answer:

For rusting, it is difficult to write an equation due to the complexity of the reaction. Thus, we can express the reaction like the following. According to the law of conservation of mass, the increased mass of nail and rust is the amount of oxygen.

Explanation:

I hope this helps:)

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Answers

Answer:

Given

mass of H2O (m) =35.6g

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sln

n=m/mr

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n=1.978moles

the moles of H2O are 1.978moles

Which of the following best explains what happens when the kinetic energy of particles in a liquid state increases?

Answers

Answer:

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Answers

Answer:

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Explanation:

Did the assignment

Answer:

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Answer:

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Answer:D

Explanation:

Answer: D- artificial selection

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Answers

Answer:

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Answers

Answer:

212 degrees

Explanation:

Answer:

212 degrees Fahrenheit

Explanation:

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Answers

Answer:

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Explanation:

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Entropy can be described as a measure of spontaneous changes that take place in a system. In simpler words, entropy is the tendency of the universe towards disorder.

Entropy measures of randomness or disorder of a thermodynamic system and is represented by ‘S’. The value of entropy is dependent upon the amount of substance so it is an extensive property.

The change in the value of entropy depends on changes in quantities such as temperature, pressure, volume, and the number of moles of substance present in the system.

When the temperature of the system increases the kinetic energy of the molecules increases and they start to move faster. Therefore, the entropy of the geyser system increase as energy is added to the system.

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What is this molecule an
example of?
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Answers

Answer:

D. Compounds

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Because it's says that have 3 components

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Answers

Answer:

if it cannot be made to fit the new findings

Answer:

As additional scientific evidence is gathered, a scientific theory may be modified and ultimately rejected if it cannot be made to fit the new findings; in such circumstances, a more accurate theory is then required.

Explanation:

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iammallika

Compound X has a molar mass of 104.01 g.mol and the following composition:
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Answers

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Answers

Answer:

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Answers

Answer:

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Answers

Answer:

answer is #4

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Zn^0 -------> Zn^2+  ,

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the answer will be number 4 if not i’m sorry

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Answers

Answer:

Valence electrons increase as you go across the table (by periods)

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