Determine the mass of 21.05 moles of iron(III) sulfide.

Answers

Answer 1

Answer:

The mass of 21.05 moles of iron(III) sulfide is 4,372.085 grams.

Explanation:

Iron (III) sulfide is a chemical compound with the formula Fe₂S₃.

Being the molar mass of the elements:

Fe: 55.85 g/moleS: 32 g/mole

then the molar mass of iron sulfide (III) is:

Fe₂S₃= 2* 55.85 g/mole + 3* 32 g/mole=  207.7 g/mole

Molar mass is the amount of mass that a substance contains in one mole. Then the rule of three can be applied: if in 1 mole of iron (III) sulfide there are 207.7 grams, in 21.05 moles how much mass is there?

[tex]mass=\frac{21.05 moles*207.7 grams}{1 mole}[/tex]

mass= 4,372.085 grams

The mass of 21.05 moles of iron(III) sulfide is 4,372.085 grams.


Related Questions

please help this is for a really big grade thanks whoever gets it correct will be given brainliest and 50pts ​

Answers

Answer: Humans have increased the global temperature due to fossil fuel burning and are negatively contributing to the increase of CO2 emissions and greenhouse gases.

Explanation:

#1 Over the past century humans have negatively impacted the environment by increasing the global temperature due to fossil fuel emissions and a steady increase in the human population which has led to more resources being extracted and used.

#2 Human activities have brought a sudden increase in the global temperature recently due to the increase in greenhouse gas emissions from factories, automobiles, and homes. While we are beginning to use renewable resources, a large portion of our energy consumption still comes from the production and burning of fossil fuels.

#3 Some ways we can start to put a stop to global warming are by using renewable energy resources and decreasing the use of fossil fuel emissions. We can also decrease our carbon footprint by using electric powered vehicles and devices instead of petroleum burning automobiles and home appliances, and by riding bikes and walking over short distances.

Note: Please reword this a bit so you don't get in trouble for plagiarism.

How many liters are in 27.6 g of copper phosphate with a molarity of 6.03 ?

Answers

Answer:

Volume in L = 0.028 L

Explanation:

Given data:

Mass of copper phosphate = 27.6 g

Molarity solution = 6.03 M

Volume of solution = ?

Solution:

First of all we will calculate the number of moles of copper phosphate.

Number of moles = mass/molar mass

Number of moles = 27.6 g/ 159.61 g/mol

Number of moles = 0.17 mol

Volume of solution:

Molarity = number of moles / volume in L

By putting values,

6.03 M = 0.17 mol / volume in L

Volume in L = 0.17 mol / 6.03 M

Volume in L = 0.028 L

Deuterium is an isotope of hydrogen (H) that has:
A. 1 proton and 1 neutron
B. 1 proton and 2 neutrons
C. 1 proton and O neutrons
D. 2 protons and 1 neutron

Answers

A. 1 proton and 1 neutron

Answer: B. 1 proton and 1 neutron(s)

Explanation: Founders Educere answer.

I love you, fellow summer school students good luck!

Please rate and vote and mark brainliest, I want a rank up.

A spring toy is moving down steps, What happens to the energy of the toy?

Answers

When the toy is falling down the steps some of the Kinetic energy is changing to potential energy. As it is still falling some of the potential energy changes to kinetic energy.


Hope this helps

Which term is NOT submicroscopic?
A. atom
B. ion
C. pen
D. molecule

Answers

It’s is c and pen ushebejdhahejrdgwejr

what is k more reactive than li?

Answers

So potassium is more reactive than lithium because the outer electron of a potassium atom is further from its nucleus than the outer electron of a lithium atom. Francium atoms, with 7 shells, are the largest atoms in Group 1

A chemist is identifying the elements present in a sample of a sea water. What characteristics of an element's
atoms always determines the element's identity?

A.
B
C.
D
The number of protons
The number of neutrons
The location of valence electrons
The number of valence electrons

Answers

Answer:

The number of valence electrons

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Answers

Answer:

108- Hassium

11- sodium

56- Barium

92- uranium

25- manganese

103- lawrencium

10- neon

22- titanium

8- oxygen

14- silicon

32- germanium

39- yttrium

What type of stress results when two plates converge? Compression Shear Hot spot​

Answers

Answer:

Compression

Explanation:

Hi! When two convergent plates collide, they should create compressive pressure, or compression.

Which would aid a student in preparedness for a lab?
O using a fire extinguisher if there is a fire
O reading the lab manual before class
O telling the teacher about a chemical spill
O cleaning up after the lab

Answers

I would say C. Telling the teacher about a chemical spill

Answer: cleaning up after the lab, D.

Explanation:

The molar masses of four unknown gases are shown in the table.
Molar Mass of Unknown Gases
Gas Molar Mass
A 44 g/mol
B 20 g/mol
C 30 g/mol
D 32 g/mol
Which gas is likely to have the lowest rate of diffusion?
a. Gas A
b. Gas B
c. Gas C
d. Gas D

Answers

a. Gas A has the lowest rate of diffusion

Further explanation

Given

The molar masses

Required

the lowest rate of diffusion

Solution

Graham's law: the rate of effusion of a gas is inversely proportional to the square root of its molar masses or  

the effusion rates of two gases = the square root of the inverse of their molar masses:  

[tex]\rm \dfrac{r_1}{r_2}=\sqrt{\dfrac{M_2}{M_1} }[/tex]

So  :

[tex]\tt r\approx \dfrac{1}{\sqrt{M} }[/tex]

The greater the molar mass, the smaller the rate

So gas A has the lowest rate

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Answers

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3 difference between Homogeneous mixture and Heterogeneous Mixture​

Answers

Answer:

Difference between Homogeneous mixture and Heterogeneous Mixture are as follows:

A mixture or sample that is consist of uniform composition and properties is called a homogeneous mixture while a mixture or sample that is consist of different composition and properties is called a heterogeneous mixture.Homogenous mixture has only single phase while heterogeneous mixture has  two or more phases.Homogenous mixture can not be separated by physical methods while heterogeneous mixture can be separated out physically.Example of homogenous mixture is Water and sugar and heterogeneous mixture is oil and water.

why can't copper sulphate be prepared by adding copper metal to dilute sulphuric acid

Answers

Answer:

Copper metal will not react with sulfuric acid . ( Copper metal is too unreactive / it is " below hydrogen in the reactivity series " ). So use copper carbonate, it reacts easily to give copper sulfate ( and carbon dioxide and water ) .

Explanation:

i hope it's help you

Copper sulphate cannot be prepared by adding copper metal to dilute sulphuric acid because copper is below hydrogen in the reactivity series of metals.

What is copper sulphate?

Copper sulphate is an inorganic compound formed by the reaction of copper and sulphur.

What is sulphuric acid?

Sulphuric acid is a strong acid that are made by the oxidizing solutions of sulphur dioxide.

Copper is below hydrogen in the reactivity series of metals, so it is unable to displace hydrogen from dil. sulphuric acid.

However, it reacts with conc. sulphuric acid to form copper sulphate.

Cu + conc. 2H2SO4  → CuSO4 + 2H2O + SO2

To learn more about copper sulphate and sulphuric acid here

https://brainly.com/question/21011057

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What would be the anode
a magnesium and zinc galvanic cell?

Answers

Answer:

Magnesium Mg act as anode

Explanation:

Because its reduction potential is much less than zinc

Answer: C. Mg(s)

Explanation:


What is the main difference between physical and chemical changes
versus nuclear changes? *
A.Nuclear changes do not involve the subparticles- protons, neutrons, or electrons.
B.Nuclear changes release less energy than chemical and physical changes.
C.Nuclear changes result in the formation of a different element while physical and
chemical changes involve the same elements from start to finish.
D.There are no differences.

Answers

Answer:

B

Explanation:

Because nuear changes release less negeyr than a chmeicsl and phsycial change

The table shows index fossils.

A 4 row table. Row 1, CENOZOIC ERA. It is split into Quaternary Period, Pecten gibbus, and Tertiary Period, Calyptraphorus velatus. Row 2, MESOZOIC ERA. It is divided into Cretaceous Period, Scaphites hippocrepis, Jurassic Period, Perisphinctes tiziani, and Triassic Period, Trophites subbullatus. Row 3, PALEOZOIC ERA. It is divided into Permian Period, Leptodus americanus, Pennsylvanian Period, Dictyoclostus americanus, Mississippian Period, Cactocrinus multibrachiatus, Devonian Period, Mucrospirifer mucronatus, Silurian Period, Cystiphyllum niagarense, Ordovician Period, Bathyurus extans, and Cambrian Period, Paradoxides pinus. Row 4, PRECAMBRIAN, has no additional information.

Which conclusion about Paradoxides pinus is supported by the information in the table?

Life forms existed during the Cambrian period.
Similar fossil species formed after the Devonian period.
This fossil species first appeared during the Cenozoic era.
Different life forms were surviving during Precambrian time.

Answers

Answer:

A. life forms existed during the Cambrian period

Explanation:

Answer:

A

Explanation:

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b. How many grams of CO2 are produced from 36
grams of CH4?

Answers

Answer:

Ch4 G +2o2 g co2 G +2h2o g How many moles of methane are required to produce 22 g co2 G after combustion

Explanation:

it's 22 grams..

hope the answer was helpful ....

Balance this equation-
Fe + O2 Fe3 O4

Answers

3Fe + 2O2 —- Fe3 + O4

Which electron configuration is magnetic, paired or unpaired electrons

Answers

Answer:

paired electrons is magnetic configuration

Help me please if your good at science :)*me over here struggling about to cry*


During which time period does the car have the greatest acceleration?
A. Between 2 and 4 seconds
B. Between 1 and 6 seconds
C. Between 0 and 1 seconds
D. Between 1 and 2 seconds

Answers

Answer:

C. Between 0 and 1 seconds

Explanation:

Since 0 - 1 seconds the car accelerates to 20mph. The rest each second the car accelerates 5mph.

Answer:

c

Explanation:

a p e x!

Choose the correct missing coefficient to balance the following equation:
___NO + O2 ---> 2NO2 *

1
2
3
4

Answers

Answer:

the answer is 2 hope this helps

silver bromide (AgBr) has a solubility of 7.07 × 10^-7 mol/L
a. write the dissolution reaction of Abraham, including all states.
b. write the expression for ksp for AgBr
c. calculate the solubility product constant of AgBr​

Answers

a. AgBr(s)⇒ Ag⁺(aq) + Br⁻(aq)

b.  Ksp AgBr = s²

c. 5 x 10⁻¹³  mol/L

Further explanation

Given

solubility AgBr = 7.07 x 10⁻⁷ mol/L

Required

The dissolution reaction

Ksp

The solubility product constant

Solution

a. dissolution reaction of AgBr

AgBr(s)⇒ Ag⁺(aq) + Br⁻(aq)

b. Ksp

Ksp AgBr  = [Ag⁺]  [Br⁻]

Ksp AgBr = (s) (s)

Ksp AgBr = s²

c. Ksp AgBr = (7.07 x 10⁻⁷)² = 5 x 10⁻¹³  mol/L

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Answers

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If 525 N of force is applied to a 4.5
kg mass, how fast will it accelerate?

Answers

Answer:

121.11m/s²

Explanation:

Given parameters:

Force   = 525N

Mass = 4.5kg

Unknown:

Acceleration  = ?

Solution:

From Newton's second law of motion, we can find the solution to this problem. Using the expression below:

       F  =  m x a

F is the force

m is the mass

a is the acceleration

      So'

              525  = 4.5 x acceleration

            Acceleration = 121.11m/s²

Where does the energy required to break the interactions between butane molecules come from when butane boils?​

Answers

Answer:

The properties of liquids are intermediate between those of gases and solids, but are more similar to solids. In contrast to intramolecular forces, such as the covalent bonds that hold atoms together in molecules and polyatomic ions, intermolecular forces hold molecules together in a liquid or solid. Intermolecular forces are generally much weaker than covalent bonds. For example, it requires 927 kJ to overcome the intramolecular forces and break both O–H bonds in 1 mol of water, but it takes only about 41 kJ to overcome the intermolecular attractions and convert 1 mol of liquid water to water vapor at 100°C. (Despite this seemingly low value, the intermolecular forces in liquid water are among the strongest such forces known!) Given the large difference in the strengths of intra- and intermolecular forces, changes between the solid, liquid, and gaseous states almost invariably occur for molecular substances without breaking covalent bonds.

Explanation:

     im not sure this is what your looking for but i found this

Convert this temperature from °F to °C. Explain how pls?


-2.2 C
10.6°C
2.2°C
33.3°C

Answers

Answer:

Start with the temperature in Fahrenheit (e.g., 100 degrees).

Subtract 30 from this figure (e.g., 100 - 30 = 70).

Divide your answer by 2 (e.g., 70 / 2 = 35).

about the lung with balloons what respiratory organ do the small balloons represents? the big balloons?

Answers

Answer:

The plastic bottle represents the chest cavity, the straws act as the bronchi, the small balloons inside the plastic bottle serves as the lungs and the big balloon at the bottom of the plastic bottle is the diaphragm.

Explanation:

What is the mass of 6.78x1050 molecules of NaCl

Answers

Answer:

Explanation:

As

Molar mass of NaCl= 58.44 gm

So we got it that,

58.44 mass of NaCl contain = 6.023*10^23  molecules of Na Cl

x mass will contain = 6.78*10^50

by cross multiplication , we get

x=  58.44*(6.78*10^50)/  6.023*10^23  

x= 65.785 * 10^27  molecules

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Which of the following is an example of erosion in action?
a) Rock on the edge of river
b) Soil material being moved downstream carried by water
c) A desert valley
d) A tree growing next to a lake

Answers

Answer:

b) Soil material being moved downstream carried by water

Explanation:

Erosion can be defined as a geological process which typically involves the wearing out of earthen (soil) materials and the transportation of these materials by natural forces like water, wind, etc. Soil erosion is greatest when the soil is steep.

The steepness of a body such as river or stream refers to the downward slope or gradient of the body of water.

Generally, the steepness of a body affects the rate at which other materials would flow or move around. Thus, the steeper a river or stream, the greater would be its rate of erosion.

An example of erosion in action is soil material being moved downstream carried by water.

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