Suppose 2.145 g of magnesium is heated in air. what is the theoretical yield of megnesium oxide that should be produced?

Answers

Answer 1
The Theoretical Yield of Magnesium Oxide is 3.55 grams 
Answer 2

The Theoretical Yield of Magnesium Oxide is 3.55 grams

What is theoretical yield?The theoretical yield is the maximum mass of a product that can be produced in a chemical process. It can be calculated using the balanced chemical equation. the product's relative formula mass, as well as the mass and mass-relative formula mass of the limiting reactantIn chemistry, yield, also known as reaction yield, is the number of moles of a product produced in relation to the amount of reactant consumed during a chemical reaction.Theoretical yields are the amounts of products calculated from the complete reaction of the limiting reagent, whereas actual yields are the amounts actually produced of a product.

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Related Questions

what is the difference between a atomic bomb and a nuclear reactor

Answers

a atomic bomb kill and destroys cities

while a nuclear reactor find things like toxic waste.

Answer:

Explanation: an atomic bomb was designed as a weapon of mass destruction, and a nuclear reactor is designed as an immense power source for large cities or universities.

A beer maker is using yeast to make his favorite brew. how does yeast produce ethanol? through the reduction of acetaldehyde, derived from pyruvate through the oxidation of acetaldehyde, derived from pyruvate through the direct reduction of pyruvate, similar to lactic acid fermentation directly from the reduction of glucose through the reduction of lactic acid

Answers

In brewing, yeast is used for the fermentation step, which is the conversion of sugars into carbon dioxide gas (CO2) and ethyl alcohols (etOH). Yeast cells require complex enzymes for the fermentation of glucose based sugars into alcohols and carbon dioxide. The process involves both aerobic phases where yeast proliferate on a log scale followed by an anaerobic phase where oxygen is deprived and C02 maintains the gaseous environment. The second phase also clarifies the product allowing for the conversion of less savory alcohols into more palatable alcohols like ethyl alcohol.

When a chemical reaction takes place, the starting substances (substances that will undergo the change) are called _____.

Question 2 options:

products


mixtures


reactants


yeilders

Answers

reactants sound like it could be right. ;)

Nacl , or halite, dissolves in water. which type of bond is most abundant which allows it to dissolve?

Answers

Intermolecular bonding:
Water is a polar molecule exhibit dispersion forces and hydrogen bonding
Salt is a polar molecule exhibit dispersion forces and dipole dipole bonding

Same bonding capacity therefore similar bonding capacity, therefore salt able to dissolves in water

What determines the horizontal arrangement of the periodic table?

Answers

The period determines the horizontal arrangement of the periodic table, I think anyways

Oxygen has an atomic number of 8 and most commonly, a mass number of 16. thus, what is the atomic mass of an oxygen atom?

Answers

oxygen has atomic mass 16 amu

[03.04]Based on the electronegativity values shown in the table below, which element would you expect to form a nonpolar covalent compound when combined with chlorine (Cl)? Pauling scale periodic table showing Cl is 3.0; Cu is 1.9; F is 4.0; Li is 1.0; N is 3.0 Cu F Li N

Answers

The answer is nitrogen c.

Answer:

C. Nitrogen

Explanation:

Nonpolar covalent bonds are a type of bond that occurs when two atoms share a pair of electrons with each other. An example of a nonpolar covalent bond is the bond between two hydrogen atoms because they equally share the electrons.

A bond between 2 nonmetal atoms that have the same electronegativity and therefore have equal sharing of the bonding electron pair.

The element with the same electronegativity value aas Cl is the correct option.

This is Nitrogen.

A 0.08541 g sample of gas occupies 10.0-ml at 288.5 k and 1.10 atm. upon further analysis, the compound is found to be 13.068% c and 86.932% br. what is the molecular formula of the compound? (order: c, x)

Answers

C2Br2 First, we need to determine how many moles of the gas we have. For that, we'll use the Ideal Gas Law which is PV = nRT where P = pressure (1.10 atm = 111458 Pa) V = volume (10.0 ml = 0.0000100 m^3) n = number of moles R = Ideal gas constant (8.3144598 (m^3 Pa)/(K mol) ) T = Absolute temperature Solving for n, we get PV/(RT) = n Now substituting our known values into the formula. (111458 Pa * 0.0000100 m^3) / (288.5 K * 8.3144598 (m^3 Pa)/(K mol)) = (1.11458/2398.721652) mol = 0.000464656 mol Now let's calculate the empirical formula for this compound. Atomic weight carbon = 12.0107 Atomic weight bromine = 79.904 Relative moles carbon = 13.068 / 12.0107 = 1.08802984 Relative moles bromine = 86.932 / 79.904 = 1.087955547 So the relative number of atoms of the two elements is 1.08802984 : 1.087955547 After dividing all numbers by the smallest, the ratio becomes 1.000068287 : 1 Which is close enough to 1:1 for me to consider the empirical formula to be CBr Now calculate the molar mass of CBr 12.0107 + 79.904 = 91.9147 Finally, let's determine if the compound is actually CBr, or something like C2Br2, or some other multiple. Using the molar mass of CBr, multiply by the number of moles and see if the result matches the mass of the gas. So 91.9147 g/mol * 0.000464656 mol = 0.042708701 g 0.0427087 g is a lot smaller than 0.08541 g. So the compound isn't exactly CBr. Let's divide them to see what the factor is. 0.08541 / 0.0427087 = 1.99982673 1.99982673 is close enough to 2 to within the number of significant digits we have for me to claim that the formula for the unknown gas isn't CBr, but instead is C2Br2.

PV = mRT: gas law.

M = [tex]\frac{n}{m}[/tex] : molecular mass

Use: M = [tex]\frac{mRT}{PV}[/tex]

Where

m = 0.04343 g

P = 1.10 atm

V = 0.0100 L

R = 0.08205746 (14) L atm K  mole  

T = 293.0 K

M: the molecular mass of the gas.

Then take the mass of this molecule, the molecular mass of the atom (C & Cl), and also the proportion of mass given to search out the amount of moles per mole of gas.

Further explanation

The chemical formula is a component of a formula, that has associate understanding of a substance that determines the kind and a relative range of atoms that area unit in this substance. Or in different languages, a formula are often given that contains data concerning the atoms that form up a selected chemical composition.

Chemical formula is split into 2 specifically chemical formula and formula. The formula announces that the formula mentioned will prove the molecules of the mix atoms. whereas the formula is that the original formula of a composition. The chemical formula are often determined if the relative molecular mass is thought.

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Molecular Mass https://brainly.com/question/7233727

Details

Class: highschool

Subject: Chemistry

Keywords: Mole, Formula, Mass

How many grams of c2h5oh must be burned to raise the temperature of 400.0 ml of water from 20.0 ∘c to 100.0 ∘c? (the specific heat of water is 1.00 cal/g⋅∘c or 4.184 j/(g⋅∘c)?

Answers

From tables, the heat of combustion of ethanol (C₂H₅OH) is 29.7 kJ/g.

Given:
V = 400 mL of water
ΔT = 100 - 20 = 80°C, temperature rise
c = 1.00 cal/(g-°C), specific heat of water = 4.184 J/(g-°C)

Because the density of water is approximately 1.0 g/mL. the mass of water is
m = 400 g.

Let x = grams of ethanol that should be burned to make the water rise
by 80 °C.
Then
(29.7 x 10³ J/g)*(x g) = (400 g)*(4.184 J/g-°C))*(80 °C)
29.7 x 10³x = 1.339 x 10⁵
x = 4.5 g

Answer: 4.5 grams

Which is the most accurate description of ionic and covalent bonding?

Answers

Ionic Bonding: 
This type of bonding occurs when atoms want to fulfil their valence shells by taking/giving electrons to other atoms. This, leads to completed valence shells in most cases and ionisation of both elements. The opposite charges cause the elements to stick together because opposites attract. 

Covalent Bonding: 
This type of bonding occurs when electrons are shared between atoms to each fill up their own valence shells by sharing. The balance between the attraction forces and repulsion forces between the shared electrons is called covalent bonding. 

Hope I helped :) 

The most accurate description of ionic and covalent bonding is that option C. Ionic bonds happen when valence electrons are transferred between ions. Whereas, in covalent electrons are shared.

Ionic bonding involves the complete transfer of one or more electrons from one atom to another.

This transfer creates ions, atoms with a net electric charge due to the loss or gain of one or more electrons. The ions are held together by strong electrostatic forces due to the attraction between positive and negative charges.

In contrast, covalent bonding involves the sharing of electrons between two atoms.

The shared electrons create a stable balance of attractive and repulsive forces between atoms. Typically, covalent bonds form between nonmetals, where both atoms involved have similar electronegativities.

The complete question is as follows:

Which is the most accurate description of ionic and covalent bonding?

A. Both bonds happen when valence electrons are shared between atoms.

B. Both bonds happen when valence electrons are transferred between ions.

C. Ionic bonds happen when valence electrons are transferred between ions.

D. Ionic bonds happen when valence electrons are shared between atoms.



Does seasonal temperature affect tides?

Which type of investigation would most likely be done to answer the question?


collective

comparative

descriptive

experimental

Answers

the last on experimental

Seasonal temperatures do not directly affect the primary gravitational forces that cause tides, but a comparative investigation would be used to study potential indirect effects. Data comparison across seasons would explore any patterns in tidal changes related to temperature.

The impact of seasonal temperatures on tides is not direct but can be influenced by various factors such as thermal expansion of water or changes in atmospheric pressure. However, the primary causes of tides—gravitational forces from the Moon and the Sun—are not affected by seasonal temperatures.

To investigate the question 'Does seasonal temperature affect tides?' a comparative type of investigation would be most suitable. This approach involves collecting and comparing data over different seasons to identify any variance in tide patterns that could be related to changes in temperature.

When studying the mechanisms of temperature acclimation or seeking improvements in models of atmospheric carbon dioxide concentrations, two scientific questions to pose might include 'How do regional variations in temperature affect the local marine hydrology and ecosystems?' and 'What is the relationship between atmospheric carbon dioxide levels and seasonal changes in temperature?'

The group of elements that tend to be found as toxic gases or liquids in their pure form including chlorine, bromine and iodine are called alkali metals true or false

Answers

Final answer:

The group of elements including chlorine, bromine, and iodine are called halogens, not alkali metals. Halogens are highly reactive nonmetals in Group 17, while alkali metals are reactive metals in Group 1.

Explanation:

The statement that the group of elements including chlorine, bromine, and iodine are called alkali metals is false. These elements actually belong to a group known as the halogens, which are part of Group 17 in the periodic table. The halogens include fluorine (F), chlorine (Cl), bromine (Br), iodine (I), and astatine (At), and are notorious for being highly reactive nonmetals. The term halogen means "salt-former," which indicates their tendency to react with alkali metals and alkaline earth metals to form halide salts. Chlorine exists as a toxic gas, bromine as a liquid, and iodine as a solid at room temperature.

In contrast, the alkali metals make up Group 1 in the periodic table and include elements such as lithium (Li), sodium (Na), potassium (K), rubidium (Rb), cesium (Cs), and francium (Fr). These elements are quite different from the halogens, as they are highly reactive metals. With the exception of hydrogen, which is often placed in Group 1 but is not a metal, alkali metals tend to combine with halogens to form compounds like table salt (sodium chloride).

Give an example of something that is observable but does not contain matter.
Explain.

Answers

 The best example I can give that is observable but does not contain matter is:

sunlight or simply light

 

Light does not contain matter because it is a beam of energy or to be specific made up of packet of photons.

 

1 What do strong acids and strong bases have in common?
A They both partially dissociate, with reverse reactions occurring.
B They both dissociate completely, with little or no reverse reactions.
C They both remain intact when placed in water, with no dissociation taking place. D They both dissociate completely, with reverse reactions constantly taking place.

Answers

B or C (a weak acid only partially disassociates so it's not A my best guess would be B)

Answer: Option (B) is the correct answer.

Explanation:

Strong acids are the acids which completely dissociate in a solution of water. Similarly like strong acids, strong bases also dissociate completely into a solution of water.

For example, [tex]HCl \rightarrow H^{+} + Cl^{-}[/tex]

                      [tex]NaOH \rightarrow Na^{+} + OH^{-}[/tex]

Also, there is little or no reverse reactions when strong acids and bases completely dissociate into ions.

Thus, we can conclude that strong acids and strong bases have in common that they both dissociate completely, with little or no reverse reactions.

What are the subatomic particles that are responsible for comprising the atom's atomic mass?

Answers

Proton and Neutron are responsible

What are the major organic molecules?


A.
lipids, minerals, proteins, sulfuric acid


B.
carbohydrates, lipids, proteins, nucleic acids


C.
nutrients, nucleic acids, carbon, oils


D.
carbohydrates, nucleic acids, vitamins, minerals

Answers

B (I’m pretty sure... sort of lol)

Answer:

The answer is option B

Explanation:

The major organic molecules are considered as the building blocks for larger larger and more complex molecule that sustain life. These organic molecules are better known by the term "Biological Macromolecules".

Now, there are 4 categories of Biological macromolecules which are referred to as lipids, proteins, nucleic acids, and carbohydrates. The word organic is used to refer to the fact that his molecules contain the carbon element as is contained, indeed, by most molecules in any living entity.

Each macromolecule serves a vital function in a living cell. Proteins serve the point of quickening requisite chemical reactions and providing a structure to the cell. Lipids are involved in providing long term energy sources to the body by building up fat for example. Carbohydrates provide short-term energy as opposed to lipids for example in the form of cellulose. Nucleic acids are the conduits for genetic information and are contained in DNA fibers.

The diagram below shows the different phase transitions that occur in matter.



Which best describes the process that arrow 1 represents?
Molecules are speeding up during boiling.
Molecules are depositing as ice on a surface.
Molecules are slowing down during condensing.
Molecules are moving from stationary positions.

Answers

The answer is certainly A.

Answer : Option A) Molecules are speeding up during boiling.

Explanation : As shown in the above image it is clearly observed that the molecules are been transformed from liquid to gaseous state. Which means that the intermolecular distance between the molecules is increasing as they are boiling and getting transformed into gaseous form. They are speeding up to form gas from liquid state and achieve stability as the heat is supplied in greater amount. Boiling of liquid is causing the liquid molecules to speed up and get transformed into gaseous molecules.

On the periodic table the number of protons in an atom of an element is indicated by its

Answers

find your element on the periodic table. More ↓
2. Locate the element’s atomic number. ↓
3. Determine the number of electrons. ↓
4. Look for the atomic mass of the element. ↓
5. Subtract the atomic number from the atomic mass.
Hello There!

It would be the Atomic Number.

Hope This Helps You!
Good Luck :)

The elements in group 7a are known by what name? transition metals halogens alkali metals alkaline earth metals noble gases

Answers

Halogens are in group 7!!!!!!
Final answer:

The elements in group 7A of the periodic table are known as halogens, which include fluorine, chlorine, bromine, iodine, and astatine.

Explanation:

The elements in group 7A of the periodic table are known as halogens. This group includes fluorine, chlorine, bromine, iodine, and astatine. In the periodic table, various groups have specific names. For example, group 1 elements are called alkali metals, group 2 elements are known as alkaline earth metals, group 18 elements are termed noble gases, and similarly, group 7A elements are named as halogens. Halogens have similar properties as they all have seven electrons in their outermost shell and readily gain an electron to achieve a stable electron configuration.

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If a solid forms when two ionic solutions are mixed together in a test tube, what does this indicate?

Answers

If a solid forms when two ionic solutions are mixed together in a test tube, it is an indication of a chemical change

The precipitaion os the solid indicates that a new product has been formed which is not soluble.

When a solid ionic compound is put in water, the compound is dissolved by ionizing (the ions separate and remain in aqueous phase). If you combine two ionic solutions and see a solid precipiate is becasue the ions have combined and form a new compound which is not soluble.

Find the ratio of the volume divided by the temperature for the first data pair. Use significant figures.
V / T = 0.72/276

Answers

From the pair of values given, the ratio of the volume to the temperature for the first data pair is, 0.0026 cm^3/K

What is a ratio?

A ratio is a comparison betweentwo quantities showing how much one quantity cobtains another.

From the data provided, the first data pair is as follows:

temperature = (276 K)volume = 0.72 cm^3

Ratio of volume to temperature = volume/temperature

Ratio = 0.72/276

Ratio = 0.002608 cm^3/K

The significant rule for division is the least number of significant figures used in the operation.

The least significant figure of the values given is 2.

Therefore, the ratio of the volume to the temperature for the first data pair is 0.0026 cm^3/K

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Answer:

They're both 0.0026

If the o2 is collected over water at 25 c (298 k) and 724.0 mm hg total pressure, how many mols o2 will a 1.00 l sample of collected gas contain?

Answers

To answer this item, it is assumed that O2 is an ideal gas such that it follows the ideal gas law.

    PV = nRT

Solving for n,
    n = PV / RT

where n is number of moles, P is pressure, V is volume, R is the universal gas constant, T is the temperature. 

Substituting the known values,
     n = (724 mmHg/760 mmHg/1 atm)(1 L) / (0.0821 L. atm/mol.K)(298 K)

Simplifying,
   n = 0.0389

Hence, the value of n is 0.0389. 

why scientists use mass instead of weight for their measurements

Answers

An objects weight is how hard gravity is pulling on it. We think the weight is the same everywhere ... because we all live on the surface of the planet Earth! But in orbit it would not push on the scales at all. The scales would show 0 kg ... but themass is still 100 kg !

Which of the following describes the characteristics of a gas?
Made up of particles packed closely together, having both definite shape and definite volume
Made up of particles packed relatively close together, having an indefinite shape but a definite volume
Made up of particles that are far apart from each other, having both indefinite shape and indefinite volume
Made up of positively charged particles and negatively charged electrons, having both indefinite shape and indefinite volume

Answers

I think made up of  particles that are far apart from each other, having both indefinite shape and indefinite volume describes the characteristics of a gas. 

Answer: The correct statement is made up of particles that are far apart from each other, having both indefinite shape and indefinite volume

Explanation:

There are 4 states of matter:

Solid state: In this state of matter, the particles are closely packed and they do not have any space between them. Thus, this state of matter has the highest intermolecular forces of attraction between them.  

This state have a definite shape and volume.

Liquid state: In this state of matter, the particles are present in random and irregular pattern. The particles are closely arranged but they can move from one place to another. The intermolecular forces between the particles are less as compared to the solid state.

This state have a definite volume but does not have a fixed shape and they can take up the shape of container in which they are kept.

Gaseous state: In this state, the particles are loosely arranged and have a lot of space between them. Thus, this state of matter has the lowest intermolecular forces of attraction between them.

This state have indefinite volume as well as shape. It can take up the volume and shape of the container in which they are kept.

Plasma state: In this state of matter, a hot ionized gas consisting of equal number of positively charged ions and negatively charged electrons are present.

This state have indefinite volume as well as shape.

Hence, the correct statement is made up of particles that are far apart from each other, having both indefinite shape and indefinite volume

PLEASE HELP!!! EMERGENCY!

Which characteristic of four different dinosaur fossils makes a dinosaur most similar to the present-day birds?

A- Flexible Wrist
B- Flapping ability
C- Flight Feathers
D- Primitive Feathers

Answers

I learned this a week a week ago its flight feathers btw this is not a emergency 

Why is a very small amount of cerium oxide nanoparticles need: A) the nanoparticles are elements
B) the nanoparticles are very reactive
C) the nanoparticles have a high surface area of volume ratio

Answers

have a high suface area to volume ratio

A very small amount of cerium oxide nanoparticles is needed due to their high surface area to volume ratio, which enhances reactivity and efficiency in chemical applications such as catalysis.

The answer is C) the nanoparticles have a high surface area to volume ratio. This high surface area to volume ratio is significant because it provides more active sites for reactions to occur. In the field of nanotechnology, substances like cerium oxide nanoparticles demonstrate different and often enhanced properties when compared to their bulk counterparts due to their tiny size (between 1 and 100 nm). As particles become smaller, their surface area becomes larger in comparison to their volume, which is particularly significant for chemical reactions which typically occur on surface sites.

The properties that arise from this high surface area to volume ratio include lower melting points, higher vapor pressures, and increased reactivity. Specifically, nanoparticles like cerium oxide are highly efficient in applications such as heterogeneous catalysis, where reactions occur at the surface of the catalyst. A small amount of these nanoparticles can provide a large surface area, thus making reactions more efficient and reducing the amount of material required.

What metric unit is used for measuring an eyelash?

Answers

Milimeters is the best answer

What 2 groups of rocks are formed from all 3 kinds of rocks?

Answers

In theory, all 3 can make up each Sedimentary, Metamorphic, and Igneous rocks. 

However, the progression of metamorphosis is really kind of linear, and it is only possible to metamorphose a Metamorphic rock further, so the answer to this question would be: 

Igneous and Metamorphic rocks

In the carbon-oxygen cycle, carbon dioxide is used for _____ and oxygen is used for _____. respiration, photosynthesis ozone, respiration photosynthesis, respiration evaporation, condensation

Answers

photosynthesis ozone and condensation

photosynthesis ozone and condensation good day


A mixture of 0.220 moles co, 0.350 moles f2 and 0.640 moles he has a total pressure of 2.95 atm. what is the pressure of co?

Answers

The partial pressure of CO is 0.536 atom.

Further Explanation

Dalton's Law of Partial Pressure states that the total pressure of a mixture of non-reacting gases is equal to the sum of the partial pressures of the individual gases. Mathematically, it can be represented as follows:

[tex]P_{total} \ = P_{1} + P_2 + P_3+...P_n[/tex]

If the total pressure is known as well as the number of moles of the gases in the mixture, the partial pressure of a component as can be calculated using the equation below:

[tex]P_x = P_{total} \times \frac{n_x}{n_total}[/tex]

where:

Pₓ is the partial pressure of gas X

P(total) = total pressure of the mixture

nₓ = number of moles of gas X

n(total) = total number of moles of gas

To solve the problem, first sort the given:

n(total) = 0.220 mol CO + 0.350 mol F₂ + 0.640 mol He = 1.21 molesn(CO) = 0.220 molP(total) = 2.95 atm

Then we plug in the given values into the equation above:

[tex]P_{CO} = 2.95 \ atm \times \frac{0.220 mol CO}{1.21 \ mol}\\\\\boxed {\boxed {P_{CO} = 0.536 \ atm}}}[/tex]

Learn MoreIdeal Gas Law brainly.com/question/12936013Root Mean Square https://brainly.com/question/5980325

Keywords: Dalton's Law of Partial Pressure, mole ratio

The pressure of CO is [tex]\boxed{{\text{0}}{\text{.536 atm}}}[/tex]  .

Further explanation:

Dalton’s law:

According to this law, the total pressure of the gaseous mixture is the sum of partial pressure of each gas. The given mixture contains CO, [tex]{{\text{F}}_2}[/tex]  and He. The expression to calculate partial pressure of CO is,

[tex]{P_{{\text{CO}}}} = {X_{{\text{CO}}}}\cdot {P_{{\text{total}}}}[/tex]                                                                        ….. (1)

Here,

[tex]{P_{{\text{CO}}}}[/tex] is the partial pressure of CO.

[tex]{P_{{\text{total}}}}[/tex] is the total pressure of the mixture.

[tex]{X_{{\text{CO}}}}[/tex] is the mole fraction of CO.

The mole fraction of CO is calculated as follows:

[tex]{X_{{\text{CO}}}} = \frac{{{\text{Number of moles of CO}}}}{{{\text{Total number of moles}}}}[/tex]                                             …… (2)

The formula to calculate total number of moles in the mixture is as follows:

[tex]{\text{Total number of moles}}={\text{Moles of}}\;{\text{CO}}+{\text{Moles of }}{{\text{F}}_2}+{\text{Moles}}\;{\text{of}}\;{\text{He}}[/tex]            …… (3)

Substitute 0.220 mol for the moles of CO, 0.350 mol for the moles of [tex]{{\text{F}}_2}[/tex]  and 0.640 mol for the moles of He in equation (3).

[tex]\begin{aligned}{\text{Total number of moles}}&={\text{0}}{\text{.220 mol}}+{\text{0}}{\text{.350 mol}}+{\text{0}}{\text{.640 mol}}\\&={\text{1}}{\text{.21 mol}}\\\end{aligned}[/tex]

Substitute 0.220 mol for the moles of CO and 1.21 mol for the total number of moles in equation (2).

[tex]\begin{aligned}{X_{{\text{CO}}}}&=\frac{{{\text{0}}{\text{.220 mol}}}}{{{\text{1}}{\text{.21 mol}}}}\\&= 0.1818\\\end{aligned}[/tex]

The value of [tex]{X_{{\text{CO}}}}[/tex]  is 0.1818.

The value of [tex]{P_{{\text{total}}}}[/tex]  is 2.95 atm.

Substitute these values in equation (1).

[tex]\begin{aligned}{P_{{\text{CO}}}}&=\left({0.1818}\right)\left({{\text{2}}{\text{.95 atm}}}\right)\\&=0.{\text{53631 atm}}\\&\approx0.{\text{536 atm}}\\\end{aligned}[/tex]

So the partial pressure of CO is 0.536 atm.

Learn more:

1. Calculate the moles of chlorine in 8 moles of carbon tetrachloride: https://brainly.com/question/3064603

2. Which law states the direct relationship between volume and absolute temperature at constant pressure? https://brainly.com/question/1403211

Answer details:

Grade: Middle School

Subject: Chemistry

Chapter: Gases and the kinetic-molecular theory  

Keywords: moles, pressure, 0.220 mol, 0.640 mol, 0.0350 mol, 0.536 atm, 2.95 atm, He, CO, F2, moles of CO, moles of F2, moles of He, Dalton law and pressure of CO.

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