give 1 ph value where benzoic acid and dibromobenzene would be in different layers in an extraction. assume that possible ph values are between 0 and 14.

Answers

Answer 1

1 pH value where benzoic acid and dibromobenzene would be in different layers in an extraction is 6.

When extracting benzoic acid and dibromobenzene, the most effective separation can be achieved by using a pH value of 6.

At this pH, benzoic acid will remain in the aqueous layer while dibromobenzene will separate out into the organic layer.

This is due to the differences in acidity between the two compounds, with benzoic acid being more acidic than dibromobenzene, thus remaining in the aqueous layer at a lower pH.

At this particular pH value, the benzoic acid will move to the aqueous layer, while the dibromobenzene will move to the organic layer.

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Related Questions

a sample of tap water consists of water, fluoride ions, calcium ions, and several other dissolved ions. the ions are evenly distributed throughout the water. which term or terms could be used to describe this sample of tap water?

Answers

Solution is the term that could be used to describe this sample of tap water.

The best way to characterize this tap water sample is as a solution. Surface or subsurface sources provide the water for domestic faucets.

The Safe Drinking Water Act criteria established by the Environmental Protection Agency must be met by tap water in the United States (EPA). The amount of impurities in the water delivered to houses is restricted by these standards.

Added minerals in tap water include calcium, magnesium, and potassium. Some people believe that hard tap water is healthier because of its higher mineral content.

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The complete question is

A sample of tap water consists of water, fluoride ions, calcium ions, and several other dissolved ions. The ions are evenly distributed throughout the water. Which term or terms could be used to describe this sample of tap water?Check all that apply.1. mixture2. heterogeneous mixture3. homogenous mixture4. solution5. pure chemical substance6. compound7. element

What type of bond will form between Li and O?

Answers

The type of bond that will form between Li and O is : ionic bond.

What is meant by ionic bond?

Ionic bond is also called as electrovalent bond. It is type of linkage formed from electrostatic attraction between oppositely charged ions in a chemical compound. Such bond forms when the valence (outermost) electrons of one atom get transferred permanently to another atom.

Lithium and oxygen form the ionic bond. Lithium is in group 1A, therefore each atom of lithium has one valence electron. This is Lewis valence electron structure for lithium. Oxygen is in group 6A, thus each atom of oxygen has six valence electrons.

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PLEASE HELPP !!

At what group # does the ionic radius suddenly increase dramatically from the lowest to the highest? Why?

Answers

Atomic and ionic radii in any group get larger as you descend from top to bottom. This is because more main shells are added as the atomic number rises.

What causes ionic radius to increase?This change in size (i.e., radius) that occurs when an atom acquires or loses its outermost electron is known as the ionic radius (s). If an atom gets another electron, it transforms into the negatively charged anion known as an anion, which has a larger ionic radius.Because valance electrons are added to the same energy level at the same time that the nucleus's protons are rising, the atomic radius shrinks over time. The stronger attraction between the electrons and the nucleus caused by the rise in nuclear charge.On the periodic table, the atomic radius grows as the number of energy levels in the elements rises from top to bottom.

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How do you find the ionic bond?

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Ionic bonds is also called electrovalent bonds because the bond is made between the atoms with opposite charges and the forces acting between them is electrovalent force. ionic bond is found when we see the opposite charges bind together.

Ionic bond, also called electrovalent bond, is he bonding force that is held in between the two charged species. this is the force that is generated between the two charged species and it is particular that one has excess of electrons and the other one has loss of electrons so that they can generate opposite charges between them in order to attract them to each other. this is the strongest force between the atoms. ionic bonds have the most attractive force in the atom and the most strong it. by this primary information, we can firmly consider that ionic  bonds are called electrovalent bonds because the bond is made between the atoms with opposite charges and the forces acting between them as electrovalent force.

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What type of reaction is C2H6 G O2 G → CO2 g H2O g?

Answers

The reaction C2H6 + O2 → CO2 + H2O is a combustion reaction.

C2H6 is the chemical formula for ethane, a hydrocarbon compound made up of two carbon atoms and six hydrogen atoms. It is a type of alkane, which is a hydrocarbon compound made up of only carbon and hydrogen atoms and characterized by its single covalent bonds. It is a flammable gas and it's used as a fuel and a refrigerant.2H6 is the chemical formula for ethane, a hydrocarbon with two carbon atoms and six hydrogen atoms. It is a colorless, odorless gas that is used as a fuel and as a feedstock for the production of chemicals such as ethylene and vinyl chloride.

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Land, Labor, Capital, Entrepreneurship, Knowledge. what are the five factors of production?

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Land, labor, capital, entrepreneurship, and knowledge make up the five components of production.

Land, labor, entrepreneurship, and capital are examples of the components of production, which are the inputs needed to generate a good or service.

The owners of the major production factors are typically the richest people in a society. In capitalism, the factors affecting production are frequently under the authority of firm owners and investors. In socialist systems, the state (or community) frequently has greater control over the inputs necessary for production.

Land is a broad concept that refers to both agricultural land and other sorts of land resources, such commercial real estate. Natural resources like oil and gold can be extracted from the ground and made fit for human consumption.

Labor is the effort put forth by a person to market an item or service. It can appear in numerous ways, once more. Workers who work on a hotel's construction site include, for example, the waiter who serves clients or the receptionist who registers them.

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What are Lewis dot structures? In other words, what is the basis of representing valence electrons with dots? How does this knowledge help you understand Lewis dot structures of ionic and covalent compounds?

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The valence electrons of an atom can be represented using Lewis dot structures, which are also used to depict the bonding and non-bonding electrons in molecules.

The valence electrons of an atom are shown by Lewis dot structures, sometimes called electron dot structures. To represent the element's valence electrons in these structures, dots are placed all around the element's symbol. The number of valence electrons that each element has depends on where it is on the periodic table. Dots are used to symbolize valence electrons in order to highlight the electrons that are available for formation of bonds. To display the bonding and non-bonding electrons in a molecule, Lewis dot structures are utilized. This can be useful in figuring out a compound's reactivity and chemical characteristics. The Lewis dot structure can be used to depict the electron transfer for ionic compounds, which are created when electrons are transferred from one atom to another. Atoms with a complete complement of electrons (ions with a positive charge) and atoms that have either gained or lost electrons are visible in the Lewis dot structure of an ionic compound (ions with a negative charge). The Lewis dot structure can be used to illustrate the sharing of electrons in covalent compounds, which are created when atoms share electrons. A covalent compound's Lewis dot structure reveals how its atoms share electrons via a covalent connection. The nature of chemical bonding, the stability and reactivity of compounds, and the prediction of bond angles, geometry, and polarity of molecules can all be better understood by knowing Lewis dot structures.

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A particle of matter that has no electrical charge and forms part of the nucleus of an atom is called: ________

Answers

Answer: The neutron

Explanation:

The neutron is a particle with no electrical charge and it resides in the nucleus of the atom.

(Look at picture) !!!!!!!

if one liter of a solution has 58.44 g of salt dissolved in it, how many grams of salt are dissolved in 3.1 ml of the solution? express your answer in grams using the correct number of significant figures. do not enter your answer using scientific notation.

Answers

3.1 ml of the solution contains 0.1818 g of salt dissolved in it.

Mass of solute = 58.44g,

The volume of solvent is 1L = 1000ml

Firstly it is essential to determine the concentration of salt in the solution to establish how many grams of salt are dissolved in 3.1 ml of the solution. Then, the solution's salt concentration can be determined using the knowledge that 58.44 g of salt makes up one litre of the solution.

Calculating the concentration -

Concentration = (mass of solute / (volume of solvent

= 58.44/1000

= 0.05844

Knowing the salt concentration in the solution allows us to determine how much salt dissolves in 3.1 ml of the solution.

Calculate the amount of salt -

Amount of solute = Total concentration x volume of solvent

= 0.05844 x 3.1

= 0.1818

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Use compound type to infer the relative boiling points of the following compounds: NaF, N2O and, H2O rank them in order from lowest to highest boiling point. Explain how you made your ranking. Then look up the boiling points and check your answer.

Answers

Answer:

H2O: 100°C

N2O: -88.5°C

NaF: 1414°C

Explanation:

H2O is a covalent molecule with strong hydrogen bonds between its molecules, giving it a high boiling point.

N2O - Because N2O has a weaker intermolecular force than H2O, it has a lower boiling point.

NaF is an ionic compound with no covalent bonds, only electrostatic forces between its ions, and thus has the lowest boiling point of the three.

These compounds' boiling points are:

H2O: 100°C

N2O: -88.5°C

NaF: 1414°C

Answer:i forgor

Explanation:i dont remember

What is amperage, and what is its relationship to voltage and power?

Answers

Answer:

Amperage, also known as electric current, is a measure of the flow of electric charge in a circuit. It is typically measured in amperes (A).

Explanation:

Amperage is a measure of the flow of electric charge in a circuit. The more charge that flows through a circuit in a given amount of time, the higher the amperage. Voltage, also known as electric potential difference, is a measure of the energy of electric charge. It is typically measured in volts (V). Power, typically measured in watts (W), is the rate at which energy is transferred in an electrical circuit. The relationship between amperage, voltage, and power can be described by the equation: Power (Watts) = Voltage (Volts) x Amperage (Amps). This is known as Ohm's law, which states that the current flowing in a circuit is directly proportional to the voltage applied and inversely proportional to the resistance.

A chemist mixes 4 liters of one acid solution with 10 liters of a 40% solution, resulting in a 30% acid solution. The table shows the amount of each solution used.

Answers

The acid concentration of the first solution is 5% or 0.05

as per stated details

the initial acid solution contains 4 litres

Let the initial acid solution's concentration equal x.

so the first solution's effective dosage is 4x.

the second acid solution has a volume of 10 litres

the second acid solution's concentration is 40%, that equals 0.4.

then the second solution's effective dosage is 0.4. (10)

The resulting acid solution will then contain (4+10) litres.

the acid solution's concentration is 30%, that is 0.3

thus the final solution's effective quantity is equal to 0.3(4+10).

Combining these findings yields equation.

4x +0.4(10) = 0.3(4+10)

4x +4 = 0.3(14)

4x = 4.2 - 4

4x = 0.2

x=0.05

Therefore, the final result is 0.05, or 5%.

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How many atoms of carbon are in 4.00 moles of C?

Answers

In 4.00 moles of Carbon (C), there are 24.088 X 10²³ carbon atoms.

As it is known that one mole of any element contains 6.022 X 10²³ atoms.

So, 1 mole of Carbon also contains  6.022 X 10²³ carbon atoms.

In the question, it has been asked the number of atoms in 4 moles of Carbon which is equal to:

4 X 6.022 X 10²³ = 24.088 X 10²³ carbon atoms.

Also, the mass of  6.022 X 10²³  carbon atoms is 12 grams.

So, the mass of 4 moles of carbon atoms can also be found:

(mass of 24.088 X 10²³ carbon atoms) = 4 X 12 =48 grams

Or, 48 X 6.024 X 10²³ amu = 289.152 X 10²³ amu (atomic mass unit).

The atomic mass of an element can be defined as the sum of the number of protons and a number of neutrons present in the nucleus of an element. It is represented by the letter 'A'.

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What is the molality of a solution that contains 0.625 g of argon dissolved in 150 g of water?

Answers

The molality of a solution that contains 0.625 g of argon dissolved in 150 g of water is 0.1 moles/ kg

One approach to express the concentration of a solute in a solution is by molality. The unit of measurement is kilograms of solvent divided by moles of solute. We must convert the mass of the solute into moles and divide it by the mass of the solvent in order to determine the molality of the given solution.

Since

the water weighs 150.0 grams.

But first, the moles should be determined.

moles= mass/ mass molar

moles = 0.625 g/  39.948 g/ moles

= 0.0156 moles.

molality = moles / kg

molality = 0.015 moles/ 0.15 kg

molality = 0.1 moles/ kg

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What amount of carbon dioxide is produced by the reaction of 1 mole of ch4?

Answers

The amount of carbon dioxide , CO₂ is produced by the reaction  of the 1 mole of the methane CH₄ is 44 g.

The reaction is given as :

CH₄  +  2O₂  ----> CO₂  +  2H₂O

The moles of the methane , CH₄ = 1 mol

The moles is given as :

The number of the moles = mass / molar mass

1 mole of the CH₄ produce the 1 mole of the CO₂

The moles of the CO₂  = 1 mole

The mass of the carbon dioxide , CO₂  = moles × molar mass

The molar mass of CO₂  = 44 g/mol

The mass = 1 × 44

                = 44 g.

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What mass of calcium hydroxide is formed when 10. 0g of calcium oxide reacts with 10. 0g of water.

Answers

The 10 g of the calcium oxide reacts with the 10 g of the water and formed the calcium hydroxide. The  mass of calcium hydroxide is 13 g.

Given that :

The mass of calcium oxide = 10 g

The mass of water is 10 g

The reaction is given as :

CaO + H₂O --->   Ca(OH)₂

1 mole of CaO react with 1 mole of H₂O to form 1 mole of Ca(OH)₂

The moles = mass / molar mass

Moles of CaO = 10 g / 56 g/mol

                         =0.179 moles

Moles of H₂O = 10 g / 18 g/mol

                       = 0.556  moles

CaO is the limiting reagent .

The moles of Ca(OH)₂ = 0.17 mol

Mass =  moles × molar mass

          = 0.17 moles ×  74 g/mol

           = 13  grams

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A silver-colored necklace with a mass of 43. 0 grams is heated in the drying 1 point

oven to a temperature of 120. 0C. It is then dropped into a calorimeter

containing 95. 0 grams of water at 20. 0C. The water and necklace reach a

final temperature of 25. 5C. Determine, in Joules and in calories, how much

energy the water gained. Calculate the specific heat of the metal. Silver's

specific heat is 0. 0558 cal/g. C. Was the necklace pure silver? Provide an

explanation for your answer. *

Your answer

Answers

A  silver-colored necklace with the mass of 43. 0 grams is heated.  The specific heat of the metal is 0.537 J/g °C.

The specific heat capacity is given as :

Q = m c ΔT

Where,

Q = heat

m = mass

c = specific heat capacity

ΔT = change in temperature

The heat gained = The heat lost

Heat lost by the silver = m c ΔT

                                            = 43 × c  (120 - 25.5)

                                            = 4063.5 c

Heat gained by water =  m c ΔT

                                     =  95 × 4.18 × (25.5 -20)

                                      = 2184.05 J

The heat gained = The heat lost

2184.05 J = 4063.5 c

c =  0.537 J/g/°C

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a solution is made from 23.5 g of glycerin in 130 g of methanol at 50 °c. what is the mole fraction of methanol? round your answer to the third decimal place.

Answers

To find the mole fraction of methanol, we first need to calculate the moles of each component in the solution.

First, we'll find the moles of methanol:

Methanol: 130 g x (1 mol / 32.04 g) = 4.04 mol

Next, we'll find the moles of glycerine:

Glycerine: 23.5 g x (1 mol / 92.09 g) = 0.255 mol

To find the mole fraction of methanol, we'll divide the moles of methanol by the total moles of both components:

Methanol mole fraction = 4.04 mol / (4.04 mol + 0.255 mol) = 0.994

So, the mole fraction of methanol in this solution is 0.994 (rounded to the third decimal place).

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in the titration of 20.0 ml of 0.200 m hobr with 0.100 m naoh, what is the ph after 20.0 ml of the naoh solution is added? (ka hobr

Answers

The pH of the solution 8.6 after 20.0 ml of the NaOH solution is added in the titration.

The term Titration is a common laboratory method of quantitative chemical analysis to determine the concentration of an identified analyte. In this, a reagent termed the titrant or titrator is prepared as a standard solution of known concentration and volume.

pH = pKa + log(salt / acid)

This expression is called the Henderson-Hasselbalch equation.

= 8.6 + log ( (20*0.1 / (20 0.2- 20* 0.1 ) )

=8.6

The Henderson-Hassel Bach equation is derived from the definition of the acid dissociation constant. It provides a relationship between the pH of acids in aqueous solutions and their acid dissociation constant. According to this, when the concentrations of the acid and the conjugate base are the same.

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Which condition is caused by nitrogen bubbles and requires the use of a decompression chamber?

Answers

The condition that is caused by nitrogen bubbles and requires the use of a decompression chamber is called decompression sickness (DCS).

What is decompression sickness (DCS)?

The decompression sickness (DCS) is the type of disorder that occurs whereby there is release of excess dissolved nitrogen in the blood and tissues by high pressure leading to formation of bubbles as pressure decreases.

The clinical manifestations of decompression sickness include the following:

FatigueLoss of appetiteHeadacheVague feeling of illness

The treatment of this disorder requires the use of high-pressure decompression chamber because this restores normal blood flow and oxygen to affected tissues.

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What change in oxidation number represents reduction?

Answers

A decrease in oxidation number represents reduction.

Redox reactions, also known as oxidation–reduction reactions, are processes that involve the transfer of electrons from one species to another. These types of reactions are known as oxidation–reduction reactions. It is said that a species has become oxidized if it has lost electrons, while it has been said that a species has become reduced if it has gained electrons. 

Using oxidation numbers, which are assigned to atoms in molecules by presuming that all bonds to the atoms are ionic, we are able to determine whether or not a reaction is a redox in nature. During the course of a process, oxidation is indicated by an increase in the oxidation number, and reduction is indicated by a decrease in that number.

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what is the ph of the solution that results from adding 25 ml of 0.33 m hcl to 25 ml of 0.58 m nh3? (kb for nh3

Answers

The pH of the solution that results from adding 25 ml of 0.33 m HCl to 25 ml of 0.58 m NH3 is 0.30.

In order to calculate the pH of the solution that results from adding 25 ml of 0.33 m HCl to 25 ml of 0.58 m NH3, one must first calculate the total molarity of the solution.

To do this, a simple equation can be used: M = (V1 x M1 + V2 x M2) / (V1 + V2). In this case, V1 = 25 ml and M1 = 0.33 m, and V2 = 25 ml and M2 = 0.58 m, so the total molarity (M) of the solution would be 0.50 m.

The next step is to calculate the pH of the solution. To do this, simply use the equation pH = -log[H+] and substitute the molarity of the solution (0.50 m) in place of [H+]. This gives us a pH of -log(0.50 m) = 0.30.

Therefore, the pH of the solution that results from adding 25 ml of 0.33 m HCl to 25 ml of 0.58 m NH3 is 0.30.

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the biggest hazard in a laboratory comes as a result of

Answers

The biggest hazard in a laboratory comes as a result of contact with hazardous materials, such as chemicals, biological agents, and radiation.

What is hazard?

Hazard is the potential for harm, damage, or loss, such as injury, illness, death, property damage, financial losses, or environmental damage. It can be caused by a variety of sources, including natural disasters, human activities, or mechanical failure. Hazards can be physical, biological, chemical, or psychological in nature.

Working with these materials can pose a serious risk of exposure, leading to illness, injury, or worse. It is important to take proper safety precautions when working in a laboratory, such as wearing protective gear, using the right tools, and following safety instructions.


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What are the non-renewable energy sources of energy Mcq?

Answers

One category of non-renewable energy sources is natural gas.

The fact that we currently rely on these resources to meet the majority of our energy needs makes the fact that they cannot be replaced once they are depleted a serious issue for humanity. There are no renewable energy sources like natural gas. It takes millions of years for a fossil fuel to form. We can only produce more until a finite amount of it remains in the earth. Because it comes from sources that were created over millions of years by the action of heat and pressure on organic materials, the vast majority of natural gas in the United States is classified as a fossil fuel.

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why do electrons go into the 4s orbital before the 3d orbitals?

Answers

Answer:

so so soon deep see see second

Explanation:

hail also

What is the molarity of a solution made by dissolving 2.25 mol KOH in enough water to make 8.0 L of solution?​

Answers

Answer:

-Molarity is defined as moles of solute divided by liters of solution and has units of mol/L. To get this answer, you just divide the number of moles by the volume in liters: 2.5 mol/195L = 0.013 M. I think

Explanation:

Answer: 0.28125

Explanation:

if an equal number of moles of the weak acid hcooh and the strong base lioh are added to water, is the resulting solution acidic, basic, or neutral?

Answers

If an equal number of moles of the weak acid HCOOH and the strong base LiOH are added to water the resulting solution will be basic.

Take titration of a weak acid with a strong base as an example. Only a mild acid is present at the beginning. With the weak acid, the concentration of H₃O⁺ is in balance. If a strong base is added to the weak acid will give up its H⁺ in order to transform the base (OH-) into water (H₂O) and the conjugate base: HA + OH⁻ → A⁻+ H₂O. Since the added OH⁻ is consumed by this reaction, the pH will change to more basic.

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Predict the product(s) of this reaction: (Don't worry about balancing)

Zn(NO3)2 + NaOH -->

Answers

Explanation:

zn(NO3)2+2NaOH....zn(OH)2+2NaNO3

calculate the percent by mass of chlorine, cl, in the hydrated form of the solid that has the formula cocl2.6h2o

Answers

The percent by mass of chlorine, l, in the hydrated form of the solid that has the formula COCl₂.6H₂O is 33.98%

To calculate the percentage of chlorine in COCl₂.6H₂O first we calculate the molar mass of COCl₂.6H₂O.

molar mass COCl₂.6H₂O= (1 x Ar C ) +( 1 x Ar O) +(2 x Ar Cl)= 6( 2ArH + ar O)

molar mass COCl₂.6H₂O=(12+ 16+ 70 + 108)= 206 g/ moles

mass Cl in COCl₂.6H₂O. = mass Cl/ mollar mas COCl₂.6H₂O. x 100%

mass Cl in COCl₂.6H₂O. = 70/ 206 x 100% = 33.98 %

Therefore, the percent by mass of chlorine, l, in the hydrated form of the solid that has the formula COCl₂.6H₂O is 33.98%

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What is the balanced form of the equation c2h6 o2 → CO2 h2o?

Answers

The balanced form of the equation is C2H6 + O2 → CO2 + H2O.

C2H6 is the chemical formula for ethane, a hydrocarbon compound composed of two carbon atoms and six hydrogen atoms. It is a colorless, odorless gas that is used primarily as a feedstock in the production of other chemicals, such as ethylene and ethanol. It can also be found in natural gas and crude oil, and is a byproduct of the breakdown of organic matter.The following equation must be balanced for the combustion of ethane (C2H6):O2 + C2H6 = CO2 + H2O.Each element has an equal amount of atoms on both sides of the equation. As it stands, the equation is already in balance.

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