If 25.0g solid iron (III) sulfide reacts with 25.0g gaseous hydrogen chloride to form solid iron (III) chloride
and 5.61g hydrogen sulfide gas, what is the percent yield of the reaction?

(Please show work)

Answers

Answer 1

Answer:

[tex]Y=48\%[/tex]

Explanation:

Hello!

In this case, since the described chemical reaction is:

[tex]Fe_2S_3+6HCl\rightarrow 3H_2S+2FeCl_3[/tex]

We can see the 6:2 mole ratio between hydrogen chloride (molar mass = 36.46 g/mol) and hydrogen sulfide (molar mass = 34.09 g/mol) and 1:3 between iron (III) sulfide (molar mass = 207.91 g/mol) and hydrogen sulfide. In such a way, we can compute the yielded moles of hydrogen sulfide by each reactant in order to identify the limiting one:

[tex]n_{H_2S}^{by HCl}=25.0gHCl*\frac{1molHCl}{36.46gHCl}*\frac{3molH_2S}{6molHCl} =0.343molH_2S\\\\n_{H_2S}^{by Fe_2S_3}=25.0gFe_2S_3*\frac{1molFe_2S_3}{207.91gFe_2S_3}*\frac{3molH_2S}{1molFe_2S_3} =0.361molH_2S[/tex]

It means that the HCl is the liming reactant as it produces less moles of hydrogen chloride than the iron (III) sulfide. Therefore, the theoretical yield in grams is:

[tex]m_{H_2S} =0.343molH_2S_2S*\frac{1molH_2S}{34.09gH_2S}\\\\m_{H_2S}=11.7g[/tex]

Thus, the percent yield is:

[tex]Y=\frac{5.61g}{11.7g}*100\%\\\\Y=48\%[/tex]

Best regards!


Related Questions

a human skull is ?????

Answers

Answer:

part of the skeleton that supports the structure of face and forms a cavity from bone.

Hope it help u.

Explanation:

hope it is helpful to you

How are protons and neutrons different from and similar to each other?

Answers

Answer: similar: Protons and neutrons have approximately the same mass, about 1.67 × 10-24 grams. Different:Protons are a type of subatomic particle with a positive charge. And  Neutrons are a type of subatomic particle with no charge (they're neutral).

Explanation:

hope that helped

Answer:

similarity:Protons and neutrons have about the same mass

Difference protons have a positive charge while neutrons have no charge

Explanation:

Write two advantages and two disadvantage of hydrogen

Answers

1.it is readily available since hydrogen is a basic earth element and it's very abundant.
2. It doesn't produce harmful emissions.
Disadvantages
1.it is expensive. It is expensive because it takes a lot of time to separate the element from others.
2.it is difficult to store. Even moving a tiny bit of hydrogen would be very expensive.
3. It is highly flammable. Since it is a very powerful source of fuel, hydrogen can be very flammable.

A solution is made by dissolving

37.5 g of sodium sulfide (Na2S) in

217 g of water.

What is the molality of the solution?

Answers

Answer:

2.21m

Explanation:

Molality, m, is defined as the ratio between moles of solute (The substance that is in less amount, sodium sulfide) and kilograms of solvent (Water, in this case).

Thus, we need to convert mass of sodium sulfide to moles using its molar mass and grams of water to kilograms:

Moles Na2S (Molar mass: 78.0452g/mol):

37.5g * (1mol / 78.0452g) = 0.48 moles Na2S

Kilograms water:

217g * (1kg / 1000g) = 0.217kg

Molality:

0.48 moles Na2S / 0.217kg =

2.21m

Answer:

2.21

Explanation:

Assume a density of water of 1.00 g/mL, and calculate the mass of water in the solution

Answers

Answer:

1g or 10^-3kg

Explanation:

as you know , the density =mass \volume

so  you have the mass from the number it self

[tex]\frac{1g}{1 ml}[/tex] so from this equation, you will get 1 g and you can to SI to be [tex]10^{-3}[/tex]kg

A sheet of aluminum measures 55.0 cm by 23.3 cm. If the volume is 2.90 cm^3 what is the thickness of the foil?

Express your answer with the appropriate units.

Answers

Answer:

0.0023 cm

Explanation:

The following data were obtained from the question:

Length (L) = 55 cm

Breadth (B) = 23.3 cm

Volume (V) = 2.9 cm³

Thickness (T) =?

Thus, we can obtain the thickness of the aluminum foil as illustrated below:

V = L × B × T

2.9 = 55 × 23.3 × T

2.9 = 1281.5 × T

Divide both side by 1281.5

T = 2.9/1281.5

T = 0.0023 cm

Therefore, the thickness of the aluminum foil is 0.0023 cm

A cleaning product company is having trouble with the phi control of one of their products. The prod basic but the pH is too high What could the company try to correct the pH of the product? A. Increasing the amount of product in each container B. Diluting the contents of each container by adding water C. Allowing some water to evaporate from each container D. Adding drain cleaner from this activity to each container (tts)

Answers

Answer:

Option B.

Explanation:

Obviously, a cleaning agent companies is going to be a producer of cleaning agents which are chemical substance which are used for the main purpose of removing unwanted particles (dirt).

For this particular Question, option ''B'' is correct because upon the addition of H2O, there will surely be changes in the numbers of ions in the cleaning agents.

From the Question above, we have that the cleaning agents has pH which is too high, therefore in order to reduce the pH of the cleaning agents, water will be used to mix the product or cleaning agents. Upon the addition of water there will be decrease in OH^-.

How are changes of state different from chemical change?

Answers

Question:

How are changes of state different from chemical change?

Answer:

Physical changes alter only the size, shape, form or matter state of a material. Water boiling, melting ice, tearing paper, freezing water and crushing a can are all examples of physical changes.

On the other hand, chemical changes are a bit different. In a chemical change, a new substance is formed.

Answer:

Chemical change happens when a substance changes they molecular structure, it often involves change in color (rusting iron), transfer of energy (copper smelting), or gas bubbling.

Changes of state is a physical change. An example is ice, it melts to create water. Water then can be freezed back to ice. Water is still H2O in both states(solid/liquid) Dissovling is another example. You can dissolve salt in water and can separate it by evaporating water and leaving the salt behind.

Explanation:

What molecules are needed to make atp

Answers

Answer:

APT is made of a nitrogen base (adenine), a ribose sugar, and three phosphate groups.

Hope this helped! :)

Answer:

The energy released from each molecule of glucose is used to attach a phosphate to each of four molecules of adenosine diphosphate (ADP) to produce two molecules of adenosine triphosphate (ATP) and an additional molecule of NADH.

Explanation:

Mr. Juan is husband of Maria, before they get married Maria knows that her husband cannot make a baby since he cant produce sperm. But during their 2 years in marriage, Maria got pregnant. Is Juan can file a case to Maria? What it is? Support your answer?​

Answers

Answer:

yes but first he need to check himself

Explanation:

bcoz if he cannot produce a sperm than she might have cheated him and the baby might be of someone other.

The properties of compund are different from the properties of their constituenr​

Answers

Answer: Atoms of carbon and hydrogen

Explanation:

A 0.2 g sample of pyrolusite is analyzed for manganese content as follows. Add 50.0 mL of 0.1 M solution of ferrous ammonium sulfate to reduce the MnO2 to Mn2 . After reduction is complete, the excess ferrous ion is titrated in acid solution with 0.02 M KMnO4, requiring 15.0 mL. Calculate the percent manganese in the sample as Mn3O4.

Answers

Answer:

66.7%

Explanation:

The reaction for the titration of the excess ferrous ion is:

5Fe⁺² + MnO₄⁻ + 8H⁺ → 5Fe³⁺ + Mn²⁺ + 4H₂O

We calculate the moles of Fe⁺² from the used moles of KMnO₄:

0.02 M * 15.0 mL = 0.30 mmol KMnO₄0.3 mmol KMnO₄ * [tex]\frac{5mmolFe^{+2}}{1mmolKMnO_4}[/tex] = 1.5 mmol Fe⁺²

Then we substract those 0.30 mmol from the original amount used:

0.1 M * 50.0 mL = 5.0 mmol Fe⁺²5.0 - 1.5 = 3.5 mmol Fe⁺²

The reaction between ferrous ammonium sulfate and MnO₂ is:

2Fe⁺² + MnO₂ + 4H⁺ → 2Fe³⁺ + Mn²⁺ + 2H₂O

So we convert those 3.5 mmol Fe⁺² that were used in this reaction to MnO₂ moles:

3.5 mmol Fe⁺²  * [tex]\frac{1mmolMnO_2}{2mmolFe^{+2}}[/tex]= 1.75 mmol MnO₂

Then we convert MnO₂ to Mn₃O₄, using the reaction:

3MnO₂ → Mn₃O₄ + O₂1.75 mmol MnO₂ * [tex]\frac{1mmolMn_3O_4}{3mmolMnO_2}[/tex] = 0.583 mmol Mn₃O₄

Finally we convert Mn₃O₄ moles to grams:

0.583 mmol Mn₃O₄ * 228.82 mg/mmol = 133.40 mg Mn₃O₄

And calculate the percent

0.2 g = 200 mg133.40 / 200 * 100% = 66.7%

. The earth’s diameter is 1.276 x 107 meters. How many yards is this?

Answers

Answer:

1.396 x [tex]10^{7}[/tex] yards

Explanation:

The Earth has a spherical shape, thus its diameter is a straight line that passes through its center; dividing into two equal halves.

Given that the diameter of the earth is 1.276 x [tex]10^{7}[/tex] meters.

But,

1 meter = 1.09361 yards

So that,

1.276 x [tex]10^{7}[/tex] meters = x

⇒ x = 1.276 x [tex]10^{7}[/tex] x 1.09361

               = 1.39545 x [tex]10^{7}[/tex] yards

The diameter of the earth is 1.396 x [tex]10^{7}[/tex] yards.

Of the metal ions tested, sodium produces the brightest and most persistent color in the flame. Do you think potassium could be detected visually in the presence of sodium by burning this mixture in a flame

Answers

When sodium is present, it is challenging to distinguish potassium because sodium causes the flame to have the most vivid and lasting color.

Spectra of Sodium and Potassium

Sodium should be absent if we wish to distinguish the coloration of other metals. In the absence of sodium, potassium tints the flame violet. However, we were able to identify the existence of both ions using a spectroscope. Only a few brightly colored lines in the spectrum can be detected when the light produced by an element's atoms is observed in a spectroscope.

A given excited atom may only undergo energy changes of specific fixed, definite amounts, as evidenced by the fact that it only emits radiation at a limited set of fixed wavelengths.

These ions' emission spectra can be seen to consist of a number of lines when we use a spectroscope to look at them. Each metal's series is distinct. In contrast to sodium, potassium has a distinctive set of lines. Thus, both are distinguishable from one another.

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What is the pH of a 0.164 M monoprotic acid whose Ka is 9.217 × 10−3?

Answers

Answer:

The pH of the solution is 1.68.

Explanation:

Hope this helped!

A solution containing HCI would likely have
a high pH and a low pOH.
a low pH and a high pH.
a high pH and a high poH.
a low pH and a low poH

Answers

Answer:

B on EDGE 2021

Explanation:

THE ANSWER ABOVE IS INCORRECT brainliest pls?

Given the solution containing HCl, the solution is likely to have a low pH and a high poH

What is pH ?

This is simply a measure of the acidity / alkalinity of a solution.

The pH measures the hydrogen ion concentration while the pOH measures the hydroxide ion concentration

pH scale

The pH scale is a scale that gives an understanding of the variation of the acidity / alkalinity of a solution.

The scale ranges from 0 to 14 indicating:

0 to 6 indicates acid 7 indicates neutral 8 to 14 indicate basic

However, it should be noted that as the pH increases, pOH decreases and as pH decreases, pOH increases.

Considering the question given above, the solution (HCl) is acidic.

Therefore, the solution will have a low pH and a high pOH

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20.
Which of the following is an example of an analgesic?
- Aspirin
- Insulin
- Penicillin
- Cortisone

Answers

Answer:

Aspirin which is also considered as

NSAID

Explanation:

they are prescribed drugs

Among the given examples, aspirin is an example of an analgesic. The correct answer is option a.

Analgesics are a class of drugs that are used to relieve pain.

Aspirin is a non-steroidal anti-inflammatory drug (NSAID) that works by inhibiting the production of prostaglandins, which are chemicals in the body that cause pain and inflammation.

Aspirin is commonly used to treat mild to moderate pain, such as headaches, toothaches, and menstrual cramps. In addition to its analgesic properties, aspirin is also used as an anti-inflammatory and antipyretic (fever-reducing) agent.

Therefore, the example of an analgesic is aspirin that is commonly used to relieve pain. Option a is the correct answer.

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Using the same sample of gas (P1 = 605 torr , T1 = 20 ∘C ), we wish to change the pressure to 6050 torr with no accompanying change in volume or amount of gas. What temperature T2, in Celsius, is needed to reach this pressure?

Answers

Temperature to reach the pressure : 2657 °C

Further explanation

Gay Lussac's Law  

When the volume is not changed, the gas pressure is proportional to its absolute temperature  

[tex]\tt \dfrac{P_1}{T_1}=\dfrac{P_2}{T_2}[/tex]

P₁=605 torr

T₁=20 + 273 = 293 K

P₂=6050 torr

[tex]\tt T_2=\dfrac{T_i\times P_2}{P_1}\\\\T_2=\dfrac{293\times 6050}{605}\\\\T_2=2930~K=2657~^oC[/tex]

How does temperature effect the molecules of a substance that is dissolved. ​

Answers

Explanation:

Generally, temperature increases the rate of any chemical reaction considerably.

In a dissolution process, the solute is solvated in the solvent. Solutes are usually the solids or liquids being dissolved in the solution.

When temperature increases, the average kinetic energy of the solvent molecules increase also. The indicator of the average kinetic energy in a body is heat. As molecules begins to move rapidly, it brings both the solvent and solute in contact faster with each other.

500 cc of 2N Na2CO3 are mixed with 400 cc of 3N H2SO4 and volume was diluted to one litre. Will the resulting solutiomacidic,basic or neutral?Also calculate the molarity of the dilute solution.​

Answers

Answer:

Given info : 500 cc of 2N Na2CO3 are mixed with 400 cc of 3N H2SO4 and volume was diluted to one litre. To find : will the resulting solution is acidic , basic or neutral ? Calculate the molarity of the dilute solution. solution : no of moles of Na2CO3 = normality/n %3D - factor x volume 2/2 x 500/1000 = 0.5 mol %D no of moles of H2SO4 = 3/2 x 400/100O = 0.6 mol %3D We see, Na2CO3 + H2S04 => Na2S04 + CO2 + H2O Here one mol of Na2C03 reacts with one mole of H2SO4. So, 0.5 mol of Na2CO3 reacts with 0.5 mol of H2SO4. so, remaining 0.1 mol of H2SO4 makes solution acidic. Now molarity of solution = remaining no of moles of H2SO4/volume of solution= 0.1/1 = %3D 0.1M

"When 500 cc of 2N [tex]Na_{2}CO_{3}[/tex] is mixed with the 400 cc of 3N [tex]H_{2} SO_{4}[/tex] and volume was diluted to one liter then solution will be acidic and molarity will be 0.55 mol"

What is Molarity?

The molar concentration of a chemical species, specifically a solute in a solution, is measured in terms of the amount of material per unit volume of solution.

It is given that normality of [tex]Na_{2}CO_{3}[/tex] is 2 and [tex]H_{2} SO_{4}[/tex] is 3. It can be written in term of molarity like, the molarity of [tex]Na_{2}CO_{3}[/tex] is 0.1 M and molarity of [tex]H_{2} SO_{4}[/tex] is 1.5 M.

Now calculate the number of moles in [tex]Na_{2}CO_{3}[/tex]

For [tex]Na_{2}CO_{3}[/tex] = 500 cc / 1000 cc/L ×0.1 mol/L =0.05 mol.

For [tex]H_{2} SO_{4}[/tex] = 400 cc/ 1000 cc/L × 1.5mol /L = 0.60 mol.

It can be said that 0.05 mol reacts with  0.05 mol [tex]H_{2} SO_{4}[/tex] .

Now calculate the molarity of  [tex]H_{2} SO_{4}[/tex] solution= 0.55 mol /L = 0.55 mol.

Hence, remaining 0.1 mol solution will make acidic.

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A system includes:
а
objects that are interacting.
B the surrounding air.
C the surface or medium on which the objects rest.
D all of the above.

Answers

It’s D, all of the above.

A 50.0 mL solution of Ba(OH)2 is combined with a 150 mL solution of 0.20 M HCl. If the resulting solution has a hydroxide ion concentration of 0.12 M, what was the concentration of Ba(OH)2 in the original solution?

Answers

Answer:

0.54M of Ba(OH)2

Explanation:

When Ba(OH)2 reacts with HCl, BaCl2 and H2O are produced as follows:

Ba(OH)2 + 2HCl → BaCl2 + 2H2O

The remanent hydroxide ion is because not all Ba(OH)2 reacts. Thus, we need to find moles of Ba(OH)2 that doesn't react and moles of Ba(OH)2 that reacts. The ratio between total moles and volume of the Ba(OH)2 solution = 0.050L is the molarity of the original solution

Moles of Ba(OH)2 that doesn't react:

50mL + 150mL = 0.200L * (0.12 mol OH- / L) = 0.024 moles OH-

2 moles of OH- are in 1 mole of Ba(OH)2:

0.024 moles OH- * (1mol Ba(OH)2 / 2 mol OH-) = 0.012 moles Ba(OH)2

Moles of Ba(OH)2 that react:

0.150L * (0.20mol / L) = 0.030 moles HCl

2 moles of HCl react per mole of Ba(OH)2:

0.030 moles HCl * (1mol Ba(OH)2 / 2 mol HCl) = 0.015 moles Ba(OH)2

Total moles:

0.012mol + 0.015mol = 0.027mol Ba(OH)2 in 50mL

0.027mol Ba(OH)2 / 0.0500L =

0.54M of Ba(OH)2

how to differentiate between methane and ethene gas​

Answers

Methane and ethane are simple organic molecules. These are alkane compounds. Both methane and ethane are colorless and odorless gaseous compounds at room temperature. Methane is a major greenhouse gas. Although ethane is also a greenhouse gas, it is less abundant in the atmosphere. There are many differences between chemical and physical properties of methane and ethane. The main difference between methane and ethane is that methane contains only one carbon atom bonded to four hydrogen atoms whereas ethane contains two carbon atoms bonded to each other and each carbon atom is bonded to three hydrogen atoms.

A chemist prepares a solution of calcium sulfate (CaSO4) by measuring out 0.232 g of calcium sulfate into a 300.mL volumetric flask and filling the flask to the mark with water. Calculate the concentration in mol/L of the chemist's calcium sulfate solution. Be sure your answer has the correct number of significant digits.

Answers

Answer:

5.6667*10^-3mol\L

Explanation:

get the number of moles:

0.0232\(40+32+16+16+16+16)=1.7*10^-3

get the consentration:

1.7*10^-3 \0.3=5.6667*10^-3mol\L

A 45.0 mL solution of 0.0450 M hydroxylamine is extracted with 125 mL of solvent. The distribution constant for the reaction is 5.00 and the pKa of the protonated form of hydroxylamine is 5.960. Calculate the concentration of hydroxylamine remaining in the aqueous phase at pH=4.50 and pH=6.50 .

Answers

Answer:

pH = 4.5, concentration = 0.045 M.

pH = 6.5, concentration = 0.175 M.

Explanation:

The ka for the can be calculated by using the formula below;

Ka = 10^-pka = 10^-5.960 = 1.1 × 10^-6

The concentration of hydrogen ion at pH = 4.50 can be calculated as given below;

{H^+ } = 10^-4.50 = 3.2 × 10^-5 M.

(NB=> 10 in this regards means the inverse of log).

The next step is to determine the distribution coefficient which can be calculated by using the formula below;

distribution coefficient = (partition coefficient) × ka / ka + ( concentration of Hydrogen ion,H^+).

distribution coefficient =( 5 × 1.1 × 10^-6 ) / 1.1 × 10^-6 + 3.2 × 10^-5 M. = 5.5 × 10^-6/ 3.2 = 0.00000171875

The fraction remaining from the compound = 45.0 mL / 45.0 mL + (0.00000171875 × 125).

= 0.999995.

Thus, the concentration at pH = 4.5 = 0.999995 × 0.0450 M = 0.045 M

(B). pH=6.50, thus the concentration of Hydrogen ion = 10^-6.5 = 3.2 × 10^-7 M.

distribution coefficient = (partition coefficient) × ka / ka + ( concentration of Hydrogen ion,H^+).

distribution coefficient = (5 × 1.1 × 10^-6)/ 1.1 × 10^-6 + 3.2 × 10^-7 M).

distribution coefficient = 5.5 × 10^-6/ 1.42 × 10^-6 = 3.9.

Therefore, the concentration = 3.9 × 0.0450 M = 0.175 M.

The rms speed of the molecules of a gas at 145∘C is 187 m/s. Calculate the mass m of a single molecule in the gas.

Answers

The mass m of a single molecule in the gas is 32.19 g

The root square mean  (R.M.S) velocity V of the molecules of a really perfect fuel is given with the aid of the expression, v=sqrt(3RTM) and v=sqrt(3KTm) where R is universal gas consistent, T is absolutely the (Kelvin) temperature, m is the molar mass, okay is Boltzmann's consistent and M is the molecular mass.

The basis-mean-square speed is utilized in fuel, for the measure of the speed of debris, mentioned as the square root of the common speed-squared of the molecules in a gas. it's far represented with the aid of the equation:

Calculation:-

vrms=√3RT/M,

M = √3RT/vrms

   = 1.732 × (8.314) ×418 / 187

  = 32.19 g

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which charcoal Is used as gas mark absorbent​

Answers

Answer:

where is the answers at

Explanation:

Module 1 Exam
Elicia
Chemistry A -
9. Water at which of the following temperatures would have particles with the greatest average kinetic energy?
O 50°C
O 100°C
O 10°C
0°C

Answers

Answer:

100°C

Explanation:

The higher temperature causes the molecules to increase in speed, and kinetic energy is greatest in the gas phase.

2. Enumerate four Reactive Oxygen Species (ROS)

Answers

Answer:

Examples of ROS include peroxides, superoxide, hydroxyl radical, singlet oxygen, and alpha-oxygen.

What volume will be occupied by 33.0 grams of CO2 at 500 torr and 27 °C?

Answers

Answer:

V = 27.98 L

Explanation:

Given data:

Mass of CO₂ = 33.0 g

Pressure = 500 torr

Temperature = 27°C

Volume occupied = ?

Solution:

Number of moles of CO₂:

Number of moles = mass/molar mass

Number of moles = 33.0 g/ 44 g/mol

Number of moles = 0.75 mol

Volume of CO₂:

PV = nRT

R = general gas constant = 0.0821 atm.L/ mol.K  

Now we will convert the temperature.

27+273 = 300 K

Pressure = 500 /760 = 0.66 atm

By putting values,

0.66 atm×V = 0.75 mol × 0.0821 atm.L/ mol.K  × 300 K

V = 18.47 atm.L/0.66 atm

V = 27.98 L

The volume that will be occupied by 33.0 grams of CO2 at 500 torr and 27 °C is 28.11L.

IDEAL GAS LAW:

The volume of an ideal gas can be calculated using the ideal gas law equation as follows:

PV = nRT

Where;

P = pressure (atm)V = volume (L)n = number of moles (mol)R = gas law constant (0.0821 Latm/molK)T = temperature (K)

According to this question;

P = 500torr = 0.657atmV = ?n = 33/44 = 0.75molT = 27°C = 27 + 273 = 300K

0.657 × V = 0.75 × 0.0821 × 300

0.657V = 18.4725

V = 18.4725 ÷ 0.657

V = 28.11L

Therefore, the volume that will be occupied by 33.0 grams of CO2 at 500 torr and 27 °C is 28.11L.

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