How many gram of oxygen gas are produced from 6.0 mols of carbon dioxide?

Answers

Answer 1

Answer:

From the mole ratio of the gases, 10 moles of hydrogen will produce 10 moles of water, and if 10.0 L of hydrogen and 6.0 L of oxygen were used, 10.0 L of water will be produced.

What is the mole ratio of reactants in the formation of water?

The mole ratio of the reactants in the formation of water can be shown from the equation below:

Mole ratio of hydrogen to oxygen is 2:1

10 moles of hydrogen will require 5 moles of oxygen, therefore hydrogen is the limiting reactant.

10 moles of hydrogen will produce 10 moles of water.

1 mole of a gas has a volume of 22.4 L.

If 10.0 L of hydrogen and 6.0 L of oxygen were used, 10.0 L of water will be produced.

Therefore, the volume ratio of gas equals mole ratio of gas

Explanation:

Answer 2

Answer: 192g O2

Explanation:

Balanced equation

S + O2 → SO2

1mol O2 produces 1 mol SO2

6mol O2 required to produce 6 mol SO2

Molar mass O2 = 32g/mol

Mass of 6 mol O2 = 6*32 = 192g O2 required.


Related Questions

under what conditions can calcium bromide conduct electricity

Answers

CaBr conducts electricity in the molten state but does not conduct as a solid. ionic dissolution equation.

MULTIPLE CHOICE QUESTION
Which of the following is an example of a
chemical change?
An iron nail forming rust
Tearing paper into many little pieces
Steam coming out from boiling water
Mixing sand with sugar
Dissolving coffee powder in hot water

Answers

Answer:

rust

Explanation:

Chemical rxn of iron and oxygen = rust

An elemental gas has a mass of 10. 3g. If the volume is 58. 4 l and the pressure is 758 torr at a tempertaure of 2. 5 c what is the gas

Answers

The required elemental gas which has a mass of 10.3 g in the given conditions is helium gas.

How do we calculate molar mass?

Relation between the molar mass and moles of any substance will be represented as:

n = W/M, where

W = given massM = molar mass

Moles of gas will be calculated by using the ideal gas equation:

PV = nRT, where

P = pressure = 758 torrV = volume = 58.4Ln = moles = ?R = universal gas constant = 62.363 L.torr / K.molT = temperature = 25 degree C = 298K

On putting all values, we get moles

n = (758)(58.4) / (62.363)(298) = 44,267.2 / 18,584.2

n = 2.38 moles

Molar mass of the gas will be calculated by using the above first equation is:

M = 10.3g / 2.38mol = 4.32 g/mol = 4g/mol (approx)

Hence given elemental gas is helium.

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The increase in boiling point from CH4, SiH4, GeH4 to SnH4 is caused by the increase in strength of which type of intermolecular force?

Answers

Methane (CH4) with the smallest atomic size, would have the lowest boiling point.

What is Boiling point ?

It is the temperature at which the pressure exerted by the surroundings upon a liquid is equaled by the pressure exerted by the vapour of the liquid; under this condition, addition of heat results in the transformation of the liquid into its vapour without raising the temperature.

CH₄, SiH₄, GeH₄, SnH₄ are very similar. They are all in the same group and their molecular geometry is a tetrahedral.

They have covalent bonds. The key difference: The number of protons and electrons.

These are non-polar molecules, so there are no ionic bonds. There are no H bonded to a F, N or O, so there is no hydrogen bonds.

Dipole induced dipole forces (AKA London dispersion forces) dictate the boiling points of these atoms. It is the attraction between atoms that dictate how easily they can disperse.

The electrons in an atom are constantly moving due to their repulsion of each other. However, if one electron has moved and the other has not, it is temporarily charged.

The biggest molecule will have the highest boiling point. The more protons and electrons, the stronger the effect.

Therefore, Methane (CH4) with the smallest atomic size, would have the lowest boiling point.

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Which type of organism transfers the most energy in a food web?
F. Consumer
G. Producer
H. Decomposer
J. Prey

Answers

Answer:

Producers.

Explanation:

Since the source of energy is the sun, the trophic level representing producers contains the most energy.

What is the entropy change if one mol of water is warmed from 0 c to 100 c

Answers

The entropy change if one mole of water is warmed from 0 degree C to 100 degree C is 1,316.7 J/K.

How do we calculate the entropy change?

Change in entropy will be measured by using the below equation as:

ΔS = (n)(Cp)ln(T₂/T₁), where

n = moles of water = 1 mol

Cp = specific heat of water = 4180 J/mol.K

T₂/T₁ = ratio of temperatures in K = 373 / 273 = 1.37 K

On putting values, we get

ΔS = (1)(4180)ln(1.37) = (4180)(0.315)

ΔS = 1,316.7 J/K

Hence required value of entropy is 1,316.7 J/K.

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____________is not an effect of heat
a. Expansion
b. Change of state
c. Contraction
d. Chemical change​

Answers

Answer:

c. contraction

Explanation:

Heating will cause substances to expand, or change their state (like solid to liquid) or it may be a chemical reaction.

C- contraction
Not an affect of heat

The definition of the acceleration states that an object accelerates when it

Answers

Answer: Acceleration and velocity

Explanation:

Newton's second law says that when a constant force acts on a massive body, it causes it to accelerate, i.e., to change its velocity, at a constant rate. In the simplest case, a force applied to an object at rest causes it to accelerate in the direction of the force.

Answer:

Moving with changing velocity

Explanation:

the resultant force acting on it is not zero

hence

Write the reaction for the weak base co32- in water

Answers

The weak base carbonate reacts with the water forming bicarbonate and the hydroxide ion.

What is a weak base?

The weak bases are given as the compounds that have the inability to get completely dissociated in water.

The carbonate is given as the weak base, as in water it remains constituted in the form of a bond with oxygen.

The reaction of water with the carbonate ion is given as:

[tex]\rm CO_3^{2-}\;+\;H_2O\;\rightleftharpoons HCO_3^-\;+\;OH^-[/tex]

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4Fe + 3O2 → 2Fe2O3

Iron combines with oxygen to form rust. Given the chemical reaction, how many grams of iron(Fe) would produce 10 g of rust(Fe2O3)?(molar mass of iron= 55.85; molar mass of rust= 159.69g)


A) 6.99


B) 29.9


C) 69.9


D) 9.99

Answers

6.99 grams of iron (Fe) would produce 10 g of rust (Fe2O3) when iron combines with oxygen to form rust.

How to calculate mass?

The mass of a substance can be calculated as follows:

According to this question, iron combines with oxygen to form rust as follows:

4Fe + 3O2 → 2Fe2O3

First, we convert the mass of rust to moles as follows:

moles of Fe2O3 = 10g/159.69 = 0.063moles

4 moles of Fe produces 2 moles of Fe2O30.063 moles of Fe2O3 will be produced by 0.125 moles of Fe.

Next, convert moles of Fe to mass as follows:

mass of Fe = 0.125 × 55.85 = 6.99g

Therefore, 6.99 grams of iron (Fe) would produce 10 g of rust (Fe2O3) when iron combines with oxygen to form rust.

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students mixed two liquids in a beaker and listed their observations

> Liquid 1 was colorless
> Liquid 2 was colorless
> The mixture of liquids 1 and 2 formed a colorless solution
> small, solid particles formed and fell to the bottom of the beaker

based on these observations, which statement contains the best evidence that a chemical reaction occurred?

A. There is a change in shape
B. there is a change in volume
C. the two liquid mix into a solution
D. the two liquids made a new substance

Answers

The two liquids made a new substance.

What is a physical and chemical change?

A chemical change results from a chemical reaction, while a physical change is when matter changes forms but not chemical identity.

A chemical change occurs when some substances are transformed into different substances, with different nature and properties. In this case when both liquids are mixed a solid is formed.  This is an example of a change of state of the liquids reactants to the solid product, which has properties and characteristics different from that of the initial liquids of the mixture which is called a chemical change.

Hence, option D is correct.

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List all of the ions present in solution when the following strong

electrolyte compound is dissolved in water

Co3(PO4)2

Answers

Answer:

Co²⁺ and PO₄³⁻

Explanation:

Strong electrolytes completely dissolve in water. Therefore, the ionic bonds between the cation and anion in Co₃(PO₄)₂ would break apart. The resulting ions would be Co²⁺ and PO₄³⁻. The phosphate (PO₄³⁻) would NOT further seperate because the phorphorus and oxygen bonds are covalent, not ionic. Phosphate ions are a type of polyatomic ion (ions which have covalent bonds).

If 10 grams of potassium chlorate decompose to form potassium chloride and oxygen gas inside a 500 mL container at a temperature of 45 °C. what will the pressure be inside the container?​

Answers

Answer:

10 atm

Explanation:

There's a lot to do here, but lets take it one step at a time. First, let's write a balanced equation for the decomposition of potassium chlorate into potassium chloride and oxgyen gas.

2 KClO3 → 2 KCl + 3 O2

Now let's find the moles of the KClO3 (molar mass 122.55 g/mol) that we have take 10 g/122.55 g/mol, grams will cancel and we are left with 0.0816 moles. lets divide that by two since we have a two in front of the KClO3 in the equation, and then multiply that number by 5 since it's the total moles of products, in summary, multiply by 5/2 to get 0.204 moles.

Now that we know the moles of our products, let's plug some stuff into the ideal gas law PV = nRT. We are looking for P so let's solve for that. P = (nRT)/V, now let's plug in our values. Make sure V is converted to liters so 0.5 L. And convert celcius to kelvin by adding 273

P = ((0.204 moles)(318 K)(0.08206 L atm mol^-1 K^-1))/0.5 L

A lot of units cancel, and we get about 10.65 atm, if you don't want the answer in atm, you can find a conversion equation. But let's round to sig figs for now, which will bring us to 10 atm.

Which state or states of matter have fixed volume but not a fixed shape? (HELP FAST)

Answers

Answer:

liquid

Explanation:

A solid is defined as substance with a set volume and form. A liquid is defined as substance with a set volume but no fixed form. A gas is substance that does not have a definite volume or shape. Plasma, like a gas, has no set volume or shape.

the outermost layer of earth's atmosphere is​

Answers

Answer: Exosphere

Explanation:

Answer:

exosphere

Explanation:

the outermost layer of earth's atmosphere is called exosphere

You were task to cook rice for your family's dinner. After few minutes, you noticed that steam is coming out from the cooking pot. What do you call that process?
A. Insulation
B. Convection
C. Conduction
D. Heat transfer​

Answers

Answer:

Convection

Explanation:

Convection is steam and the condensation of vapor.

Chemical bonds are formed when potential energy is when it’s High or Low?

Answers

Answer:

high I think

Explanation:

i just did it

Answer:

Bond forms to get stability. Stability will be maximum at low potential energy. So, in bond formation, atoms loose their potential energy to get stabilized and heat is evolved. Generally bond formation is also an exothermic reaction


A gas has a volume of 840 mL at -38°C and a pressure of 0.98 atm. If the pressure
changes to 1.37 atm when the gas is heated to 16°C, what is the new volume?

Answers

Answer:

X is an element in period 3 with two electrons in the outer shell. Draw a full diagram of the ion form by this element

If 3. 5 grams of ni are reacted with excess oxygen to form nickel oxide unser standard state conditions, what is the entropy change for the reaction?

Answers

Entropy Change is the measure of the randomness of the thermodynamic system. The entropy change for the reaction is -49.3 J/K.

What is the change in entropy?

Entropy change is the ratio of the heat transfer of the system to the absolute temperature of the system.

The entropy of nickel = 182.1 J/mol. K

The entropy of oxygen = 205.0 J/mol. K

The entropy of nickel oxide = 37.99 J/mol. K

Entropy change is calculated as:

[tex]\begin{aligned}\Delta \rm S &= 2(37.99)-2(182.1)-205\\\\&= 75.98 - 364.2 - 205\\\\&= -493.22 \end{aligned}[/tex]

Therefore, -49.3 J/K is the entropy change.

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This next step is going to take some skill and some careful observation. the wave speed is associated with the movement of crests and troughs along the medium. faster waves will have crest s that move from the left side of the screen to the right side of the screen in less time; that is the crests move from left to right faster . set the animation to a low frequency (about 0.1 hz) and observe the wave speed. it might help to put your finger o r a pen cap on a crest and follow move your finger (or pen cap) from left to right along with the crest. then repeat for a high frequency (about 1.0 hz) . make the same observation of wave speed - the speed of the crest moving from let to right across the s creen. does this ten - fold increase in frequency - from about 0.1 hz to about 1.0 hz - have any noticeable and appreciable effect upon the wave speed? explain your answer and discuss your observations.

Answers

The speed of the wave increases as the frequency of the wave is increased from 0.1 Hz to 1.0 Hz.

What is the relationship between wave speed and frequency?

The speed of a wave of a given wavelength is directly proportional to its frequency.

An increase in the frequency of a wave results in a proportional increase in the speed of the wave of the wavelength remains the same.

In the animation, as the frequency of the wave is increased from 0.1 Hz to 1.0 Hz, the speed of the wave is observed to increase as the time taken for the crests and troughs to move across the screen becomes smaller.

Therefore, the speed of the wave increases as the frequency of the wave is increased from 0.1 Hz to 1.0 Hz.

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If you want to prepare 2.00 L of a 0.800 M NaNO_3 solution from a NaNO_3 stock solution that is 1.5 M in concentration, how many mL of the stock solution must you start with

Answers

1066.7 ml of the stock solution must start with, preparing 2.00 L of a 0.800 M NaNO3 solution.

What is volume?

Volume is the space occupied by a three-dimensional object.

By the formula [tex]\rm M_1V_1= M_2V_2[/tex]

M1 is the initial molarity, 1.5 M

M2 is the final molarity, 0.800 M

V1 is the initial volume

V2 is the final volume, 2.00 L

Putting the values in the equation

[tex]\rm 1.5\;M \times V_1= 0.800\;M \times 2.00\;L\\\\V_1 = \dfrac{ 0.800\;M \times 2.00\;L}{1.5\;M} = 1066.7\;ml[/tex]

Thus, the initial volume is 1066.7 ml

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In general, the rate of evaporation increases with ___________.

Answers

Answer:

heat increase,   pressue loss,  altitude gain,  

Explanation:

Approximately how long has a victim been dead if their body temperature is 13.5C degrees? 50-52hrs 47-48hrs 33-34hrs 35-36hr

Answers

answer:
A) 50-52

explanation:
Assuming the body has been in a room temperature area, the victim has been dead for 50-52 hours. As a rule of thumb, dead bodies lose about 1.5 degrees Fahrenheit per hour. Average body temperature in Celcius is 37 so to find the amount of heat lost, 37 - 13.5 = 23.5. Converted to Fahrenheit, 23.5C = 74.3. Now to find the amount of hours passed by dividing the difference in average temperature and the bodies current temperature by the average heat lost per hour. 74.3 / 1.5 = 49.59... or 50 when rounded up. Therefore the victim has been dead for approximately 50 hours.

a seashell composed largely of calcium carbonate reacts with a solution of HCl . As a result, 1500 ml of dry co2 gas at stp. How many grams of caco3 are consumed at the reaction

Answers

The amount of CaCO₃ that are consumed at the reaction is 6.7 grams.

What is ideal gas equation?

Ideal gas equation will be represented PV = nRT from which we can calculate the moles of carbon dioxide, where

P = standard pressure = 1 atmV = standard volume = 1500mL = 1.5LT = standard temperature = 273 KR = universal gas constant = 0.082 L.atm/K.mol

On putting all these values, we get

n = (1)(1.5) / (0.082)(273) = 0.0669 moles = 0.067 mol

Given chemical equation is:

CaCO₃ + 2HCl → CO₂ + CaCl₂ + H₂O

From the stoichiometry of the reaction it is clear that,

1 moles of CO₂ = produced by 1 moles of CaCO₃

0.067 moles of CO₂ = produced by 0.067 moles of CaCO₃

Now mass of CaCO₃ will be calculated as:

n = W/M, where

n = moles = 0.067molW = required mass = ?M = molar mass = 100g/mol

W = (0.067)(100) = 6.7g

Hence required mass of CaCO₃ is 6.7g.

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Alkanes contain the maximum possible amount of hydrogen, they are known as being __________. What one word completes the sentence?

Answers

Alkanes contain the maximum possible amount of hydrogen, they are known as being saturated hydrocarbon.

What is alkanes?

The easiest category of hydrocarbons would be the alkanes. They exclusively possess hydrogen as well as carbon. So every hydrogen atom produces one link, while each carbon atom generates four.

What is hydrocarbon?

When all of a hydrocarbon's carbon-carbon bonds possess single bonds, the hydrocarbon was said to have been saturated. A hydrocarbon would be an organic substance with only carbon as well as hydrogen as its components.

Therefore, alkanes contain the maximum possible amount of hydrogen, they are known as being saturated hydrocarbon.

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Consider this reaction: h2s hno3 right arrow. s no h2o reduction half-reaction: n 5 3e- right arrow. n 2 oxidation half-reaction: s-2 right arrow. s 2e- after balancing the chemical equation, what are the coefficients for these compounds? h2s hno3

Answers

The coefficients of H2S and HNO3 in the balanced reaction equation are 2 and 3 respectively.

Chemical reaction

In a chemical reaction, reactans interact in a unique way to form products. In this case, the unbalanced reaction equation is; H2S + HNO3-----> NO + H2O.

Since this reaction is redox and electrons are lost/gained in the process, the coefficients of H2S and HNO3 in the balanced reaction equation are 2 and 3 respectively.

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Answer:

Explanation:

1st: 3

2nd: 2

Potassium carbonate (K2CO3) has one potassium atom bonded to carbon, and that carbon is also bonded to three oxygens. Their electronegativities are shown in the list:

K: 0.82
C: 2.55
O: 3.44
How would you describe the bonds (K–C and C–O) in this molecule?

1: K-C is iconic, and C-O is covalent
2: K-C is iconic, and C-O is nonpolar covalent
3: K-C is polar covalent, and C-O is nonpolar covalent
4: K-C is polar covalent, and C-O is polar covalent

Answers

Answer:

Based on the electronegativity difference between them, K-C is ionic, and C-O is polar covalent.

What is a bond?

A bond is formed by the interaction of two atoms. A bond can be either ionic or covalent.

Now we have to look at the electronegatives on each bond. The electronegativity difference between the K-C bond is larger than that between the C-O bond hence, K-C is ionic, and C-O is polar covalent.

Explanation:

Continued depletion of the ozone layer will most likely result in:.

Answers

Answer:

More radiation entering the earth's atmosphere.

Explanation:

The ozone layer is layer of O₃ (oxygen) and prevents most radiation from reaching earth.

How to find hydrogen ion concentration from molarity of solution

Answers

The concentration of the hydrogen ions from molarity can be given with the number of hydrogen atoms in the molecular formula.

What is molarity?

Molarity is given as the moles of the solute present in a liters of solution. The compound with the number of hydrogen atoms in the molecular formula with degradation possesses the equivalent concentration of the hydrogen ions.

The compound with molecular formula AH having molarity 2, will produce 2M of hydrogen ions.

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PLEASE HELP DUE IN 15!!!!!!! WILL GIVE BRAINLIEST!!
Question 12:
How many grams of NaOH are present in 7.54 moles of NaOH. (The molar mass of NaOH is 39.997 grams/mol)

a. 0.19 grams of NaOH
b. 32.5 grams of NaOH
c. 5.30 grams of NaOH
d. 301.6 grams of NaOH

Answers

the answer is D

n=m/mr
therefore
m=nxmr
7.54x39.997=301.6 grams of NaOH
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