70.0 mL of water was added to 100.0 mL of 0.250 M CaCl₂ solution. Assuming the volumes are additive, what is the CaCl₂ concentration in the diluted solution?

Answers

Answer 1

70.0 mL of water was added to 100.0 mL of 0.250 M CaCl₂ solution. Assuming the volumes are additive,  The CaCl₂ concentration in the diluted solution is 0.147 M.

given that :

volume V1 = 100 mL

volume V2 = 100 + 70 = 170 mL

Molarity M1 = 0.250 M

Molarity M2 = ?

using dilution equation we get :

M1 V1 = M2 V2

M2 = ( M1 V1) / V2

M2 = ( 0.250 × 100 ) / 170

M2 = 0.147 M

Therefore , the dilution solution will have 0.147 M

Thus, 70.0 mL of water was added to 100.0 mL of 0.250 M CaCl₂ solution. Assuming the volumes are additive, what is the CaCl₂ concentration in the diluted solution is 0.147 M.

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Related Questions

HELP PLEASEEEEE!!!!!!

Answers

Organism – Squid

Number of chromosomes after meiosis: 26

Number of chromosomes in the body cells: 52

Number of chromosomes in gametes: 26

Number of chromosomes after mitosis: 52

Organism – Sunflower

Number of chromosomes after meiosis: 19

Number of chromosomes in the body cells: 38

Number of chromosomes in gametes: 19

Number of chromosomes after mitosis: 38

Organism – Pea plant

Number of chromosomes after meiosis: 7

Number of chromosomes in the body cells: 14

Number of chromosomes in gametes: 7

Number of chromosomes after mitosis: 14

Organism – Cow

Number of chromosomes after meiosis: 30

Number of chromosomes in the body cells: 60

Number of chromosomes in gametes: 30

Number of chromosomes after mitosis: 60

Chromosome are made up of genetic material called DNA and it looks like a thread. It is present in the inside of nucleus of a cell.

During meiosis number of chromosomes would be reduced to half whereas in mitosis number of chromosomes remains the same.

The number of chromosomes in body cells is the chromosomal number of an organism and in gametes it would be reduced to half.

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Convert 8.75X10^-4 to regular number

Answers

To convert the given number to regular notation, we have to move the decimal dot as many times as indicated by the exponent of 10. In this case, that exponent is -4, so we have to move the decimal dot 4 times to the left:

It means that the answer is 0.000875.

A piece of magnesium ribbon is reacted with excess hydrochloric acid to produce aqueous magnesium chloride
and hydrogen gas. The volume of the dry hydrogen gas produced is 45.6 milliliters. The temperature of the gas
is 293 K, and the pressure is 99.5 kilopascals.
Balance the given equation using the smallest whole number coefficients.

___Mg(s) + ___HCl(aq) →> ___MgCl₂(aq) + ____H₂(g)

Answers

The balanced chemical equation between magnesium and hydrochloric acid  is Mg + 2 HCl[tex]\rightarrow[/tex] MgCl₂ + H₂

What is a chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.

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Metals reacts with hydrogen halides to produce metallic halides easily and the reaction evolves hydrogen gas. The balanced reaction of Mg and HCl is written as follows:

[tex]Mg (s) + 2HCl \rightarrow MgCl_{2} (aq)+ H_{2}(g)[/tex]

What is a balanced reaction?

A balanced reaction is represented by a chemical equation, in which each elements are equal in number on both side of the reaction. Thus the coefficients of reactants must be in proper stoichiometric ratios.

Metals easily reacts with hydrogen halides such as HCl, HBr, HF etc to form their metal halides. This reaction evolves hydrogen gas. Metals are highly electropositive and they can donate electrons to the electronegative atoms such as Cl.

In the given reaction, there are 2 hydrogens and two chlorines in the product side. Thus We have to multiply HCl by 2. Thus, there will be equal number of hydrogens in both side and similar for Mg and chlorines.

Therefore, the balanced reaction is :[tex]Mg (s) + 2HCl \rightarrow MgCl_{2} (aq)+ H_{2}(g)[/tex]. and the whole number coefficients are 1,2,1,1.

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Give the number of valence electrons in krypton. Write out the electronic configuration for the valence electrons. Valence electrons: _______ Electronic configuration for the valence electrons: ________

Answers

ANSWER

[tex]\begin{gathered} \text{ Valence electrons; 8} \\ \text{ Electronic configuration for the valence electrons; 4s}^2\text{ 4p}^6 \end{gathered}[/tex]

EXPLANATION

Krypton is an example of a noble gas. Noble gases are not reactive because their octet state has been completely filled. Krypton belongs to group 0 or 18.

Since the octet state is completely filled, then the number of electrons at the outermost shell is 8

Therefore, the valence electrons of Krypton is 8

The electronic configuration of the valence electron is written below as

[tex]\text{ 4s}^24p^6[/tex]

In the titration of 64.0 mL of 0.400 M HCOOH with 0.150 M LiOH, how many mL of LiOH are required to reach the halfway point?

Answers

The volume of the base, LiOH required to reach the halfway point will be 170.6 mL.

The balanced chemical equation for this reaction will be:

HCOOH +LiOH → HCOOHLi + [tex]H_{2}O[/tex]

It can be observed that,

The mole ratio of HCOOH ([tex]n_{a}[/tex], acid) = 1

The mole ratio of LiOH ([tex]n_{b}[/tex], base) = 1

Volume of acid, HCOOH ([tex]V_{a}[/tex] = 64.0 mL

Molarity of acid, HCOOH ([tex]M_{a}[/tex]) = 0.4 M

Molarity of base, LiOH ([tex]M_{b}[/tex]) = 0.150 M

The volume of a base can be determined by the formula:

Ma×Va / Mb ×Vb = nA / nB.....(i)

Now, put the given data in above formula:

(0.4 × 64) / (0.150 × [tex]V_{b}[/tex]) = 1

25.6 / (0.150 × [tex]V_{b}[/tex]) = 1

By solving it:

0.150 × [tex]V_{b}[/tex] = 25.6

[tex]V_{b}[/tex] = 25.6 / 0.150

[tex]V_{b}[/tex] = 170.6 mL

Therefore, the volume of the LiOH required to reach the halfway point will be 170.6 mL.

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Consider the reaction: 2H2₂0 +
energy --> 2H2 + O₂
exothermic because absorbing
energy
endothermic because absorbing
energy
endothermic because releasing
energy
exothermic because releasing
energy

Answers

Explanation:

endothermic because absorbing

energy

H2O is absorbing heat to release hydrogen and oxygen gas. any reaction that requires energy from outside is endothermic.

Name the attatched alkene

Answers

Answer:

limonene molecule.

Explanation:

9. Which statement provides evidence that supports the Big Bang Theory?* 2 points
O the universe began as a very high density singularity
Small spiral galaxies become larger elliptical galaxies
Dark matter makes up the majority of matter in the galaxy.
The chemical makeup of the universe has changed dramatically

Answers

The statement the chemical makeup of the universe has changed dramatically provides evidence that supports the Big Bang Theory (Option D).

What is the Big Bang Theory?

The Big Bang Theory is a widely accepted theory in physics that states all the universe began with a huge explosion and form then matters expanded in space at the same time that it is cooling.

Therefore, with this data, we can see that the Big Bang Theory states that the chemical composition of the universe associated with hydrogen and helium modified since this explosion.

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Answer:

d

Explanation:

i need to put 5 grams of hydrogen through two sets of chemical reactions, one resulting in a covalent outcome, the other resulting in an ionic outcome. I also need to balance the equations used during this process as well as calculate the number of molecules produced by the covalent compound, and the mass of the ionic product.This is a big project in my chemistry class and I've chosen Hydrogen as my element to use throughout these chemical reactions. I will provide the assignment outline and the work I've done so far :)thank you so very much for the help!

Answers

1.For a covalent bond , we will use the equation below:

2H2(g) +O2(g) → 2H2O(g)

Mass = 5 g : :

Moles = 4.96 : : 4.96

1.1 number of moles for hydrogen :

moles = mass /Molecular mass

= 5g/1,00784

=4.96 moles

1.2 Determine molar ratio in oder to get the moles for product 2H2O

we see that :

2 moles of Hydrogen produces: 2 moles of water

so, 4.96 moles of hydrogen will produce : x = 4.96*2 /2 = 4.96

This means that moles for water = 4.96

1.3 Calculating molecules of the product

n = 4.96moles

Molecules of H2O = 4.96 mol * 6.022×10^23molecules/1mol

=2.99x10^24 molecules

9) A base can release hydroxide ions in a solution. In this following reaction, which
one is the base?
NaOH(s) + H20(1) - Na+(aq) + OH-(ag)

Answers

Answer:

NaOH

Explanation:

Sodium hydroxide is a proton acceptor. Metal hydroxides are almost always bases. H₂O is water and is neutral. Sodium is a positively charged metallic ion. Hydroxide is a negatively charged ion.

fig. 15 shows a simplified diagram of the electrolysis of a molten electrolyte containing lithium chloride. b. Describe how the electron configuration of each lithium ion changes when it arrives at the cathode. You may draw a diagram to help you answer this question.​

Answers

During the electrolysis of the molten lithium chloride, the Lithium ions (Li⁺) at the cathode undergoes reduction, and the electron configuration of lithium becomes 1s²2s¹.

What is electrolysis?

Electrolysis can be described as the process in which the electric current is passed through the chemical compound to break them.  In this process, the atoms and ions are interchanged by the addition or removal of electrons.

The ions are allowed to move freely in this process. When an ionic compound is melted or dissolved in water then ions are produced which can move freely.

During the electrolysis of molten lithium chloride, the lithium ions reach the cathode and accept the electrons while chloride ions reach at anode and loss electrons to become chlorine gas.

At anode :  2 Cl⁻ →    Cl₂ + 2e⁻

At cathode:   2 Li⁺   +   2e⁻  →  Li

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A 6.5 L gas sample at 298 K and 0.51
atm expands until a volume of 9.9 L is
reached. What will be the final
temperature if the final pressure is
0.65 atm? Please show the work.

Answers

The final temperature if the final pressure is 0.65 atm will be 585 K

It is given that

Initial Volume of sample = V1 = 6.5 L

Initial temperature = T1 = 298 K

Initial pressure = P1 = 0.51 atm

Final Volume = V2 = 9.9 L

Final temperature = T2 = ?

Final pressure = P2 = 0.65 atm

Gay-Lussac's law - The pressure of a gas is directly proportional to the. temperature when volume and amount of substance is constant. P1/T1 = P2/T2 Combined gas law P1V1/T1 = P2V2/T2 Use the gas laws for pressure, volume and temperature calculations.

P1V1/T1 = P2V2/T2

0.52 x 6.5/298 = 0.65 x 9.9/T2

0.011 = 6.435/T2

T2 = 585 K

Hence, final temperature if the final pressure is 0.65 atm will be 585 K

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Which statement describes how a macroscopic property of gases provides information about microscopic gas particles?A. Gases fill their container, showing that gas particles are not tied together and can move far apart.B. Gases fill their container, showing that gas particles are strongly attracted through electrostatic forces.C. Gases have a fixed volume, showing that gas particles are strongly attracted through electrostatic forces.D. Gases have a fixed volume, showing that gas particles are not tied together and can move far apart.

Answers

It's important to know that gases don't have a defined volume as solids do because they don't have a definite shape.

Also, gas partcles are not tied together because their intermolecular forces are weak, this enables them to travel away one from another.

Therefore, the answer is A.

Which of the following statements is true? *
The stronger the acid the easier the H+ ions dissociate in solution.
The weaker the acid the easier the H+ ions dissociate in solution.
The stronger the base the easier the H+ ions dissociate in solution.
O The weaker the base the easier the H+ ions dissociate in solution.
4 points

Answers

The stronger the acid the easier the H+ ions dissociate in solution of the following statements is true.

The correct option is A.

Does a stronger acid dissociate more?

Because it almost entirely dissociates, HCl is a powerful acid. A weak acid, such as acetic acid (CH₃COOH), on the other hand, does not dissociate easily in water because numerous H+ ions are still locked up inside the molecule. In conclusion, more free H+ ions are liberated into solution with stronger acids.

Why do more stronger acids than weak acids dissociate?

Strong acids (and bases) are completely dissociated into ions, which is the cause of this. In comparison to weak acids (and bases) of comparable concentrations, they therefore supply more ions for conductivity. An illustration is the complete ionization of a 0.1 M hydrochloric acid solution.

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The complete question is -

Which of the following statements is true?

A-The stronger the acid the easier the H+ ions dissociate in solution.

B-The weaker the acid the easier the H+ ions dissociate in solution.

C-The stronger the base the easier the H+ ions dissociate in solution.

D-The weaker the base the easier the H+ ions dissociate in solution.

What is the number of molecules in
500m cube of Oxygen at room temperature

Answers

4.95 is the number of molecules in 500m cube of Oxygen at room temperature and pressure

we have got data

pressure=1atm

temperature=298 k

volume=500 m^3

gas constant, R=8.31

now, by applying ideal gas equation

PV=nRT

1×500=n×8.31×298

n=2476.38/500

n=4.95

It is the lowest part of the material and has chemical elemental properties. Atoms do not independently exist; rather, they combine to form ions and molecules, which then combine to form the material that we can see, feel, and touch.

Molecules are made up of one or more atoms connected by covalent (chemical) connections. Atoms can be visualized as circles with a nucleus in the center (made up of protons and neutrons) and one or more concentric circles around it that indicate the "shells" or "levels" in which the electrons surrounding the atom's nucleus are located, as well as markings that identify the electron. each level

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How many grams of calcium fluoride are in 1.5 moles of calcium fluoride?

Answers

The number of grams of calcium fluoride in 1.5 moles of calcium fluoride is 88.5grams.

How to calculate mass?

The mass of a substance or compound can be calculated by multiplying the number of moles of the substance by its molar mass as follows:

mass = no of moles × molar mass

According to this question, there are 1.5 moles of calcium fluoride (CaF). The molar mass of calcium fluoride can be calculated as follows:

CaF = 40g/mol + 19g/mol = 59g/mol

mass = 59g/mol × 1.5mol

mass = 88.5grams.

Therefore, 88.5grams of calcium fluoride is present in 1.5 moles of the compound.

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If you have 4 cups of flour, 2 sticks of butter, 8 eggs, 4 cups of sugar, 2 cups of milk, and 4 tsp of baking powder, how many cakes can you make?

Answers

Based on the mole ratio of the reactants, 2 cakes can be made.

What are limiting reactants?

Limiting reactants are the reactants in a chemical reaction that are used up in a reaction.

Limiting reactants are the reactants upon which the reaction depends. Once the limiting reactant is used up, the reaction will stop.

Hence, the amount of product that can be formed from a reaction depends on the limiting reactant.

The limiting reactant of a reaction is obtained from the mole ratio of the reactants in the reaction.

Considering the equation of the reaction of the baking of cake:

2 cups flour + 1 stick butter + 4 eggs + 2 cups sugar + 1 cup milk + 2 tsp. baking powder = 1 cake

The amount of reactants present:

4 cups of flour,2 sticks of butter,8 eggs,4 cups of sugar,2 cups of milk, and4 tsp of baking powder

The amount of the reactants available is twice their mole ratio, hence two cakes can be made.

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9. Determine the percent compositions for each of the following compounds. a. Ba(OH)2 b. copper (I) oxide C. Fe(C2H3O2)3 d. iron (III) nitrate hexahydrate (*see notes on backside to help with the hexahydrate part)

Answers

Answer:

Iron 24.03%

Carbon 30.90%

Hydrogen 3.86%

Oxygen 41.20 %

Explanation:

Here, we want to get the percentage composition of the given compound

What this means is that we want to get the percentage composition of each of the elements present in the compound

Firstly, we calculate the molar mass of the given compound

We can calculate the molar mass by adding the atomic masses of the elements and their multiplicities

Mathematically, we have that as:

[tex]\begin{gathered} 56\text{ + 3\lparen2\lparen12\rparen + 3\lparen1\rparen +2\lparen16\rparen\rparen} \\ =\text{ 56 + 3\lparen24+3+32\rparen} \\ 56\text{ + 177 = 233 g/mol} \end{gathered}[/tex]

Now, let us get the percentage compositions

For Iron, we have:

[tex]\frac{56}{233}\times\text{ 100 \% = 24.03 \%}[/tex]

For Carbon, we have:

[tex]\frac{72}{233}\times\text{ 100 \% = 30.90 \%}[/tex]

For Hydrogen, we have:

[tex]\frac{9}{233}\times\text{ 100 \% = 3.86 \%}[/tex]

For Oxygen, we have:

[tex]\frac{96}{233}\times\text{ 100 \% = 41.20\%}[/tex]

What is 4.8829g + 121.3 g + 9.384 g . ensure your answer confiding to rules regarding significant figures

Answers

Answer:

[tex]135.6g[/tex]

Explanation:

Here, we want to sum the given values, then give an answer to the correct significant figures

The correct significant figure for addition operation is the significant figure of the number that has the lowest count of values after the decimal places

Looking at the values, the number with the lowest significant figure after the decimal value is 121.3

Thus, our answer will have a value with 1 significant figure after the decimal place

We have it that:

[tex]\begin{gathered} \text{ 4.8829 + 121.3 + 9.384 = 135.5669g} \\ which\text{ finally is:} \\ 135.6g \end{gathered}[/tex]

-Sulfuric acid, H2SO4, can be neutralized by sodium hydroxide, NaOH. The unbalanced equation is:H2SO4(aq) + NaOH(aq) → Na2SO4(aq) + H2O(l)A student who was asked to balance the reaction wrote the following:H2SO4(aq) + Na2OH(aq) →Na2SO4(aq) + H3O(l)Is this correct? Explain why or why not using what you know about the law of conservation of mass and chemical changes. If necessary, provide the correct balanced equation.- How to balance reactions? include tips

Answers

Answer:

No, the student did not balance the equation correctly

The balanced equation of reaction is:

[tex]H_2SO_{4(aq)}\text{ + 2NaOH}_{(aq)}\text{ }\rightarrow\text{ Na}_2SO_{4(aq)}\text{ + 2H}_2O_{(l)}[/tex]

Explanation:

The law of conservation of mass states that:

What this simply means in relation to chemical equations is that, there must be the same number of moles of atoms of each element on either side of the reaction

Looking at the equation given by the student, we can clearly see that the correct form of the molecules is not written although we have an equal number of moles shown

Thus, we have the balanced equation of reaction as follows:

[tex]H_2SO_{4(aq)}\text{ + 2NaOH}_{(aq)}\text{ }\rightarrow\text{ Na}_2SO_{4(aq)}\text{ +2H}_2O_{(l)}[/tex]

From the above, we can see the balanced equation of reaction

What mass of oxygen can be obtained from heating 163.27G of potassium chlorate?

Answers

Step 1

The reaction involved:

2 KClO3 => 2 KCl + 3 O2 (completed and balanced)

------------

Step 2

Data provided:

Mass of KClO3 = 163.27 g

---

Data needed:

The molar mass of:

KClO3) 122.6 g/mol

O2) 32.00 g/mol

-------------

Step 3

Procedure:

By stoichiometry,

2 KClO3 => 2 KCl + 3 O2

2 x 122.6 g KClO3 ------ 3 x 32.00 g O2

163.27 g KClO3 ------ X

X = 163.27 g KClO3 x 3 x 32.00 g O2/2 x 122.6 g KClO3

X = 63.92 g

Answer: 63.95 g (the nearest value)

The molar mass of oxygen gas (O2) is 32.00 g/mol. The molar mass of C3H8 is 44.1 g/mol. What mass of O2, in grams, is required to completely react with 0.025 g C3H8?"Determine the mass of each of the following compounds, rounding molar masses of elements to the gram before adding up the total: C3H8 (propane)"

Answers

The molar mass of oxygen gas (O2) is 32.00 g/mol.

The molar mass of C3H8 is 44.1 g/mol.

This kind of reaction is a combustion:

C3H8 + 5O2 → 3CO2 + 4H2O (In a combustion we obtain CO2 and H2O. Don't forget to balance this equation)

Procedure:

Let's use stoichiometry to solve this

44.1 g C3H8 --------- 5 x 32.00 g O2

0.025 g C3H8 --------- X

X = 0.091 g O2

Answer: mass of O2 required = 0.091 g

you find the density of an object 4 times 1.3g/ml 1.25g/ml 1.17g/ml and 1.22g/ml now determine the percent deviation from the mean

Answers

Firstly we will determine the average or the mean of the objects density:

[tex]\begin{gathered} Mean=\frac{1.3g•mL^{-1}+1.25g•mL^{-1}+1.17g•mL^{-1}+1.22g•mL^{-1}}{4} \\ Mean=\frac{4.94g•mL^{-1}}{4} \\ Mean=1.235 \end{gathered}[/tex]

Now we will calculate the deviation. The deviation is how much is trial is different from the average. We take the absolute value so the answers can be positive:

[tex]\begin{gathered} Trial\text{ }1:|1.3-1.235|=0.065 \\ Trial\text{ }2:|1.25-1.235|=0.015 \\ Trial\text{ }3:|1.17-1.235|=0.065 \\ Trial\text{ }4:|1.22-1.235|=0.015 \end{gathered}[/tex]

We will determine the average of the deviation:

[tex]\begin{gathered} Deviation\text{ }mean=\frac{0.065+0.015+0.065+0.015}{4} \\ Deviation\text{ }mean=0.04 \end{gathered}[/tex]

To determine the percent deviation we:

[tex]\begin{gathered} \%\text{ }deviation=\frac{mean\text{ }deviation}{mean}\times100 \\ \\ \%\text{ }deviation=\frac{0.04}{1.235}\times100 \\ \\ \%\text{ }deviation=3.24\% \end{gathered}[/tex]

Answer: The percent deviation from the mean is 3.24%,

how did democritus model change throughout history write a paragraph using other theories about atoms.

Answers

Democritus proposed the idea that atoms were unique to the substance they were found .

How has the atomic model evolved through time?

Model of Bohr (1913)

Niels Bohr made Rutherford's model better. He demonstrated, using mathematical concepts, that electrons reside in energy levels or shells surrounding the nucleus. Due to the discovery of subatomic particles, the Dalton model has evolved over time.

The importance of the atomic theory

Astonishing scientific advancements in fields like contemporary chemistry and nuclear energy resulted from the finding that all matter is composed of microscopic particles, which was made possible by the atomic theory.

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ions can travel directly from the cytoplasm of one animal cell to the cytoplasm of an adjacent cell through _____.

Answers

Ions can travel directly from the cytoplasm of one animal cell to the cytoplasm of an adjacent cell through  gap junctions.

What is cytoplasm?

Cytoplasm is the gelatinous liquid that fills the inside of a cell.

The cytoplasm is composed of water, salts, and various organic molecules. Some intracellular organelles, such the nucleus and mitochondria, are enclosed by membranes that separate them from the cytoplasm.

The cytoplasm has the following functions :

The cytoplasm functions to support and suspend organelles and cellular molecules.The cytoplasm also has many cellular processes which occur in  them such as protein synthesis, the first stage of cellular respiration (known as glycolysis), mitosis, and meiosis.

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What is the theoretical yield, in grams, of CO₂, if 29.9 g of C₂ H₂ completely reacts?

Answers

The theoretical yield, in grams, of CO₂ is 93.97g having molar mass 44g

What is molar mass ?

The "counting unit" used by chemists to describe the quantity of atoms, ions, molecules, or formula units in a specific chemical sample is called a mole. The mole is comparable to other counting units you have employed in the past, such as pair (2), dozen (12), and gross (144). Avogadro's number (6.022 x 1023) of molecules (or formula units) make up one mole of a substance (ionic compound). The mass of 1 mole of a chemical is indicated by its molar mass. It provides you with the amount of grammes per mole of a substance, to put it another way. Therefore, grams/mole are the units for molar mass.

2C2H2 + 5O2=====> 4CO2+2H2O

Molar Mass of C2H2 = 2*12+2*2 = 28g = 1 mol

2 mol of C2H2 = 28*2 = 56g

Molar Mass of  CO2 = 12+2*16 = 44g = 1 mol

4 mol of CO2 = 4*44 = 176g

56g of C2H2 gives 176g of CO2

29.9g of C2H2 gives 176*29.9/56g of CO2

                                   = 93.97g of CO2

The theoretical yield, in grams, of CO₂ is 93.97g having molar mass 44g

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A solution is prepared by mixing 500. mL of 0.10 M NaOCl and 500. mL of 0.20 M HOCl. What is the pH of this solution? [Ka(HOCl) = 3.2 × 10–8 ]

Answers

The pH of the solution is calculated as 7.2.

What is the pH of the solution?

Let us recall that we can make us of the Henderson–Hasselbalch equation

to obtain the pH of the solution if we would follow the steps that have been itemized below.

Number of moles of the acid = 500/1000 L * 0.20 M = 0.1 moles

Number of moles of salt =  500/1000 L * 0.1 M = 0.05 moles

Total volume of the solution = 500 mL + 500 mL = 1000 mL or 1L

Now;

Molarity of the acid = 0.1 moles/1 L = 0.1 mol L-1

Molarity of the salt = 0.05 moles/1 L = 0.05 molL-1

Then we apply the equation;

pH = pKa + log[(A-)/(HA)]

pKa = - log (Ka) = - log(3.2 × 10^–8) = 7.5

Thus we have;

pH = 7.5 + log (0.05/0.1)

pH = 7.5 - 0.3

pH = 7.2

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9) How many ATOMS of fluorine are there in 3.71 moles of nitrogen trifluoride (NF3)? (Hint: this requires two conversions)

Answers

The number of atoms of fluorine present in 3.71 moles of nitrogen trifluoride, NF₃ is 6.7×10²⁴ atoms

How to determine the number of atoms

We'll begin by obtaining the number of moles of fluorine in 3.71 moles of nitrogen trifluoride NF₃. This can be obtained as follow:

1 mole of nitrogen trifluoride, NF₃ contains 3 moles of F

Therefore,

3.71 moles of nitrogen trifluoride, NF₃ will contain = 3.71 × 3 = 11.13 moles of F

Finall, we shall determine the number of atoms of fluorine pressnt in the compound as follow:

From Avogadro's hypothesis,

1 mole of fluorine = 6.02×10²³ atoms

Therefore,

11.13 moles of fluorine = (11.13 moles × 6.02×10²³ atoms) / 1 mole

11.13 moles of fluorine = 6.7×10²⁴ atoms

Thus, from the calculations made above, we can conclude that the number of atoms of fluorine present is 6.7×10²⁴ atoms

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What is the difference between concentrated and dilute with strong and weak?

Answers

The strength is a measure of the degree of ionization of a substance in an aqueous solution.

Some substances are strong and they dissociate completely (this is the case of hydrochloric acid, HCl, in water), some are weak and they do not dissociate completely (like acetic acid, CH3COOH).

The concentration is a measure of the amount of the substance in a solution and it is usually explessed in moles or percentage. It is a ratio of the substance to the solvent. A concentrated solution is a solution with a high percentage of the substance (solute) in the solution, and a dilute one is a solution with a low percentage of solute.

What is the theoretical yield when 1.1134 g of gold (III) oxide is reacted with 20.0 L of H2 at 1.000 atm and 800K.

Answers

The theoretical yield of the gold is 0985 g

What is the theoretical yield?

Recall that the yield is defined as the mass of the product that is obtained in the reaction. Let us recall that a chemical reaction must involve the interaction of the reactants so as to obtain in a given amount, the products of the particular reaction that is in question.

Now;

Number of moles of the gold (III) oxide  = 1.1134 g/442 g/mol = 2.5 * 10^-3 moles

We can get the number of moles of the hydrogen from the ideal gas equation;

PV = nRT

n = PV/RT

n = 1.000 atm  * 20.0 L/0.082 atm LK-1mol-1 *  800K

n = 0.3 moles

Given that the mole ratio of the reaction is 1 mole of the oxide to three moles of hydrogen;

1 mole of gold (III) oxide reacts with 3 moles of hydrogen

2.5 * 10^-3 moles of gold (III) oxide reacts with 2.5 * 10^-3 moles *  3 moles /1 mole

= 7.5 * 10^-3 mole of hydrogen

Hence the hydrogen is present in excess.

The theoretical yield =

1 mole of the oxide produced 2 moles of the gold

2.5 * 10^-3 moles of the oxide produced 2.5 * 10^-3 moles * 2 moles/1 mole

= 5 * 10^-3 moles of gold

Theoretical yield = 5 * 10^-3 moles of gold * 197 g/mol

= 0985 g

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