How many grams of O2 are needed to produce 0.400 mole Fe2O3 in the following reaction?
4 Fe(s) + 3 028 2 Fe2O3(s)

Answers

Answer 1

Answer

7.2 g of Oxygen are needed to produce 0.400 mole Fe₂O₃ in the following reaction

Explanation:

4 Fe(s) + 3O₂= 2 Fe₂O₃(s)

4 moles of Fe reacts with 3 moles of oxygen to give 2 moles of Fe₂O₃

to get the grams of oxygen needed to produce 0.400 mole Fe₂O₃ in the following reaction

we first get the moles then convert it to grams

3 moles of oxygen are needed to give 2 moles of Fe₂O₃ in the equation thus we have 3:2

let the represent the moles of oxygen that will be intended for 0.400 mole Fe₂O₃ in the following reaction

x:0.4

3:2=x:0.4

3/2 = x/0.4

cross multiply

3x0.4 = 2x

1.2 = 2x

x= 1.2/2 = 0.6

moles is 0.6

1 mole of Oxygen is 12g of Oxygen

0.6 mole of oxygen will give = 0.6 x12= 7.2 g of Oxygen

7.2 g of Oxygen are needed to produce 0.400 mole Fe₂O₃ in the following reaction

Answer 2

To produce 0.400 moles of Fe₂O₃, 95.8 g of O₂ are needed.

Let's consider the following balanced equation.

4 Fe(s) + 3 O₂(g) ⇒ 2 Fe₂O₃(s)

We can calculate the grams of O₂ needed to produce 0.400 moles of Fe₂O₃ considering the following relationships.

The molar mass of Fe₂O₃ is 159.69 g/mol.The molar ratio of Fe₂O₃ to O₂ is 2:3.

[tex]0.400molFe_2O_3 \times \frac{159.69gFe_2O_3}{1molFe_2O_3} \times \frac{3molO_2}{2molFe_2O_3} = 95.8 gO_2[/tex]

To produce 0.400 moles of Fe₂O₃, 95.8 g of O₂ are needed.

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How many grams of O₂ are needed to produce 0.400 mole Fe₂O₃ in the following reaction?

4 Fe(s) + 3 O₂(g) ⇒ 2 Fe₂O₃(s)


Related Questions

What is the molar mass of sodium carbonate (Na2CO3)?

Answers

Answer:

105.9888 g/mol

Explanation:

The molar mass of sodium carbonate is 105.9888 g/mol (grams per mole)

The molar madd of sodium carbonate is 105.9888g/mol

11. If you have three moles of S., how many moles of Als, can be produced?

Answers

Answer:3

Explanation:

The three moles of S are divided by the moles in your product in this case 1 (AlS)

3/1=3

If you're good with covalent bonds please help.

Answers

Answer:

[tex]SiS_2[/tex]: Silicon disulfide

[tex]NBr_3[/tex]: Nitrogen tribromide

[tex]N_2Cl_4[/tex]: Dinitrogen tetrachloride

Explanation:

Whenever you have an binary compound such as this, you can look at the individual elements for the name. The first word will simply be the prefix + the name of the element.

*** Notice you don't need to put a prefix if theres only 1. This is understood as mono. Only on the first word.

For the second word, its simply the root + ide.

Balance N2 + H2 —NH3 what type of reaction

Answers

3! You have to ensure balance of all the different elements.

1. If 400 grams of C2H6O2 is added to 4,000 g of water, calculate the molality?

Answers

Answer:

1)1.61molKg-1

Explanation:

we find the molality using the formula mole of solute/Kg of solvent..

Rewrite this chemical reaction with the correct coefficients. Mg + Ag+ -> Mg2+ +
Ag*

Answers

Answer:

Mg + 2Ag⁺ ⟶ Mg²⁺ +2Ag  

Explanation:

1. Start with the skeleton equation.

Mg + Ag⁺ ⟶ Mg²⁺ + Ag  

2. Separate it into two half reactions

Mg ⟶ Mg²⁺  

Ag⁺ ⟶ Ag  

3. Balance charge by adding electrons to the deficient side

Mg ⟶ Mg²⁺ + 2e⁻

Ag⁺ + e⁻ ⟶ Ag  

4. Multiply each half-reaction by numbers to equalize the electrons transferred

1×[Mg ⟶ Mg²⁺ + 2e⁻]

2×[Ag⁺ + e⁻ ⟶ Ag]  

5. Add the two half-reactions, cancelling species that occur on each side

Mg ⟶ Mg²⁺ + 2e⁻

2Ag⁺ + 2e⁻ ⟶ 2Ag            

Mg + 2Ag⁺ ⟶ Mg²⁺ +2Ag

The equation is now balanced.

most radioactive place on earth

Answers

Answer: Ramsar, Iran (happy to help)

Explanation:

Which goes with this phase days after the rainstorm the playground is now dry

Answers

it’s evaporation because the water evaporated from the sun

Coconut oil is commonly used as a fuel. Palmitic acid is the primary ingredient that produces the heat. Balance the combustion reactions for palmitic acid.

C16H32O2 + O2 → CO2 + H2O

Answers

Answer:

The answer is C16H32O2 + 23 O2 --->  16CO2 + 16H2O

Explanation:

Answer:

blank, 23, 16 , 16

Explanation:

look at my ss

1. A dichotomous key helps us _____________ organisms. identify dissect 2. A dichotomous key us3. Typically, a dichotomous key moves from the _______ to the specific traits when helping us to identify organisms. general unknown

Answers

Answer:

Identify

Explanation:

I just did a USATestprep on it your welcome

Answer:

identify

Explanation:

A chemist must dilute 34.3mL of 1.72mM aqueous calcium sulfate solution until the concentration falls to 1.00mM. He'll do this by adding distilled water to the solution until it reaches a certain final volume.
Calculate this final volume, in milliliters. Round your answer to 3 significant digits.

Answers

Final answer:

To dilute the calcium sulfate solution, use the dilution formula to calculate the final volume, which is approximately 58.7mL.

Explanation:

To dilute the 1.72mM aqueous calcium sulfate solution to 1.00mM, we can use the dilution formula:

C1V1 = C2V2

Where C1 is the initial concentration, V1 is the initial volume, C2 is the final concentration, and V2 is the final volume. Rearranging the formula, we have:

V2 = (C1V1) / C2

Plugging in the values: C1 = 1.72mM, V1 = 34.3mL, C2 = 1.00mM, we can calculate the final volume:

V2 = (1.72mM * 34.3mL) / 1.00mM = 58.732mL

Rounding to 3 significant digits, the final volume is approximately 58.7mL.

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An electric current can be best conducted by

Answers

Answer:

a metal

Explanation:

metals are good conductors of electricity.

what does calibrating the cabbage pH indicator mean

Answers

Answer:

Calibrating the cabbage pH indicator means creating a color key based on solutions that have known pH values.

Explanation:

Answer: 1st a

2nd b, d

3rd a

Explanation:

For the formation of ammonia, NH3, the enthalpy of reaction is shown:

3H2(g) + N2(g) --> 2NH3(8)

AH = -45.9 kJ

How much energy is required to convert ammonia back to hydrogen and nitrogen?

Answers

Answer: The amount of energy required to convert ammonia back to hydrogen and nitrogen is 45.9 kJ

Explanation:

Endothermic reactions are defined as the reactions in which energy is absorbed in the reaction. The enthalpy change of the reaction is positive.

Exothermic reactions are defined as the reactions in which energy is released in the reaction. The enthalpy change of the reaction is negative.

For the given chemical equation:

[tex]3H_2(g)+N_2(g)\rightarrow 2NH_3(g);\Delta H=-45.9kJ[/tex]

In the above reaction, the enthalpy change is negative. So, the reaction is exothermic in nature.

For the reverse reaction, the magnitude of the enthalpy change remains the same but sign for it changes.

Hence, the amount of energy required to convert ammonia back to hydrogen and nitrogen is 45.9 kJ

hi:) are electrostatic forces ionic bonding? I’m kinda confused :/

Answers

Answer:

Yes indeed BRUVA!!!! Electrostatic is a term used to describe the charges of the ionic compound

Yes because I really don’t know how to explain it but yes they are

A scientific theory never changes. ture or false ?

Answers

Answer:

False.

Explanation:

Scientific theories and hypothesis are all tentative. Science tries to prove something is either true of false and come up with answers (as much as we can) for many problems. Sometimes they are made based on limited data or information. Over the years, we come up with need findings discoveries which are able to give us more information and give us better answers. There have been a couple of scientific laws which had to be completely revised or discarded after new observations. An example of this would be the Laws of Thermodynamics. A couple of the laws have been changed over the decades after scientists made new disoveries and observations.

Rocks, as they are compressed, begin forming mountains above the Earth's surface when two continental plates converge.
The continental crust increases in depth as the mountains grow above. The Himalayan Mountains formed at a convergent
plate boundary in this manner. The rocks are smashed together causing them to
due to the intense heat and
pressure from the colliding plates and eventually forming
rock.
melt; igneous
layer; sedimentary
recrystallize; metamorphic
melt into the Earth's interior; metamorphic

Answers

Final answer:

Continental plates colliding under intense pressure and heat cause existing rocks to recrystallize into metamorphic rocks, contributing to the formation of mountain ranges such as the Himalayas.

Explanation:

When two continental plates converge, the intense pressure and heat they generate cause the existing rocks at the plate boundary to recrystallize, forming metamorphic rocks. This process, often associated with mountain building, is evident in the formation of the Himalayan Mountains at such a convergent plate boundary. Between colliding continental masses, like the African plate and the Eurasian plate forming the Alps, or the Asian and Arabian plates creating the Zagros Mountains, the pressure and heat metamorphose the rocks in the mountain chains. The creation and the shaping of these mountains are not solely due to tectonic forces but are also significantly affected by volcanic activity and erosion by elements like water and ice over time.

What’s earths relation to the sun during June solstice and December solstice

Answers

On the June solstice, it reaches its northernmost point and the Earth's North Pole tilts directly towards the sun, at about 23.4 degrees. It's also known as the northern solstice because it occurs when the sun is directly over the Tropic of Cancer in the Northern Hemisphere. (This is only the June solstice) I’m not so sure about the December solstice

During the June solstice, the Northern Hemisphere is tilted towards the Sun resulting in longer days; vice versa for the December solstice when the Southern Hemisphere experiences summer.

During the June solstice, which occurs around June 21, the Earth's Northern Hemisphere is tilted toward the Sun.

This results in the North Pole experiencing 24 hours of daylight, while the Sun's rays are directly over the Tropic of Cancer.

Conversely, during the December solstice, around December 21, the Northern Hemisphere tilts away from the Sun, causing shorter days and longer nights.

At this time, the Southern Hemisphere enjoys summer as it leans into the Sun, with the Sun's rays hitting directly over the Tropic of Capricorn. The South Pole experiences 24 hours of daylight.

June Solstice: Northern Hemisphere tilted towards the Sun, maximum sunlight at the Tropic of Cancer.

December Solstice: Northern Hemisphere tilted away from the Sun, maximum sunlight at the Tropic of Capricorn.

5.00 L of a gas is collected at 100K and then allowed to expand to 20.0 L. What must the new temperature
be in order to maintain the same pressure?
A. 400 °C
B. 127 °C
C. 223 °C
D. 627°C

Answers

Answer: Option B) 127 °C

Explanation:

Initial volume of gas V1 = 5.00 L

Initial temperature of gas T1 = 100K

New volume of gas V2 = 20.0 L

new temperature of gas T2 = ?

Since volume and temperature are involved while pressure is constant, apply the formula for Charles law

V1/T1 = V2/T2

5.00 L/100K = 20.0 L/T2

cross multiply

5.00 x T2 = 100 x 20.0

5.00T2= 2000

T2 = 2000/5.00

T2 = 400K

Convert temperature in Kelvin to Celsius

(400K - 273) = 127°C

Thus, the new temperature of the gas is 127°C

The mass of an electron is

A. equal to the proton mass plus the neutron mass

B. the smallest of the three major particles

C. the same as the mass of the proton

D. the same as the mass of the atom

Answers

Answer:

B

Explanation:

technically an electron has a very negligible mass

please like and Mark as brainliest

A platinum bar measures 5.0 cm long and 4.0 cm wide and 1.5 cm thick. It has a mass of 700.0 g calculate the mass of the platinum bar?

Answers

The mass of the platinum bar is approximately 699.9 grams.

To calculate the mass of the platinum bar, we can use its volume and density.

Given:

- Length (l) = 5.0 cm

- Width (w) = 4.0 cm

- Thickness (h) = 1.5 cm

- Mass (m) = 700.0 g

First, let's calculate the volume of the platinum bar using the formula for the volume of a rectangular prism:

[tex]\[ \text{Volume} = l \times w \times h \\\[ \text{Volume} = 5.0 \, \text{cm} \times 4.0 \, \text{cm} \times 1.5 \, \text{cm} \\\[ \text{Volume} = 30.0 \, \text{cm}^3 \][/tex]

Now, we can use the density formula to find the mass:

[tex]\[ \text{Density} = \frac{\text{Mass}}{\text{Volume}} \\\[ \text{Density} = \frac{700.0 \, \text{g}}{30.0 \, \text{cm}^3} \\\[ \text{Density} \approx 23.33 \, \text{g/cm}^3 \][/tex]

Now that we have the density of platinum, we can calculate the mass of the bar:

[tex]\[ \text{Mass} = \text{Density} \times \text{Volume} \\\[ \text{Mass} = 23.33 \, \text{g/cm}^3 \times 30.0 \, \text{cm}^3 \\\[ \text{Mass} \approx 699.9 \, \text{g} \][/tex]

So, the mass of the platinum bar is approximately 699.9 grams.


Pleassssdseee help meee

Answers

I believe it’s Non polar molecule

What’s the answer for this ?

Answers

Answer: Open System

Explanation: It's an open system because the "Cup" is literally exposed to the surroundings. It will lose heat or gain heat or any other type of energy in its surroundings.

Which of the following gases diffuse more slowly than oxygen? F2, Ne, N2O, C2H2, NO, Cl2, H2S

Answers

Answer:

Cl2, N2O, F2, H2S

Explanation:

You must recall Graham's law at this point. Graham's law states that the rate of diffusion of a gas is inversely proportional to the square root of its vapour density or molar mass.

Now, the greater the molar mass of a gas, the lesser the rate of diffusion of that gas. The gas that will diffuse more slowly than oxygen must have a higher molar mass than oxygen. Oxygen has a molar mass of 32gmol-1, let us look at the molar masses of other gases.

F2= 37.99681 g/mol

Ne= 20.1797 gmol-1

N2O= 44.013 g/mol

C2H2= 26.04 g/mol

NO= 30.01 g/mol

Cl2= 70.906 gmol-1

H2S= 34.1 g/mol

Hence in order of decreasing slower diffusion than oxygen gas

Cl2, N2O, F2, H2S

Final answer:

Neon, Nitrous Oxide, and Hydrogen Sulfide diffuse more slowly than oxygen.

Explanation:

Oxygen (O2) is a diatomic gas that diffuses relatively quickly. Among the given gases, Neon (Ne), Nitrous Oxide (N2O), and Hydrogen Sulfide (H2S) diffuse more slowly than oxygen. Neon is a monatomic gas with a larger atomic mass, which affects its diffusion rate. Nitrous Oxide is a larger, more complex molecule, and Hydrogen Sulfide has a hydrogen bond, both of which slow down their diffusion rates compared to oxygen.

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What are eggshells made of?

Answers

Answer:

Eggshell is made almost entirely of calcium carbonate

Explanation:

2.00 moles of an ideal gas was found to occupy a volume of 17.4L at a pressure of 3.00 atm and at a temperature of 45 C. Calulate the value of the cas constant R in

Answers

Answer:

[tex]0.082 atm L mol^{-1} K^{-1}[/tex]

Explanation:

The pressure, the volume and the temperature of an ideal gas are related to each other by the equation of state:

[tex]pV=nRT[/tex]

where

p is the pressure of the gas

V is the volume of the gas

n is the number of moles

R is the gas constant

T is the absolute temperature

For the gas in this problem:

n = 2.00 mol is the number of moles

V = 17.4 L is the gas volume

p = 3.00 atm is the gas pressure

[tex]T=45C+273=318 K[/tex] is the absolute temperature

Solving for R, we find the gas constant:

[tex]R=\frac{pV}{nT}=\frac{(3.00)(17.4)}{(2.00)(318)}=0.082 atm L mol^{-1} K^{-1}[/tex]

Name three things you know about angiosperms

Answers

Answer:

Angiosperms are further classified as monocotyledonous and dicotyledonous plants. Cotyledons are the first leaves – the seed leaves – that a plant grows upon germination. The female reproductive organs of an angiosperm are the stigma, style and the ovary which are collectively known as the carpel.

Explanation:

All angiosperms have flowers at some stage in their life. ...
Angiosperms have small pollen grains that spread genetic information from flower to flower. ...
All angiosperms have stamens.

What type of substance would be best for use in a cooling system?


a gas with a low specific heat


a liquid with a high specific heat


a solid with a high specific heat


a liquid with a low specific heat

Answers

Answer:

Liquid with a specific high heat

Explanation:

The type of substance would be best for use in a cooling system would be a liquid with a high specific heat and the correct option is option B.

What is Specific heat?

The specific heat is the amount of heat per unit mass required to raise the temperature by one degree Celsius.

The units of specific heat are usually calories or joules per gram per Celsius degree. For example, the specific heat of water is 1 calorie (or 4.186 joules) per gram per Celsius degree.

This property of water in our body to maintain constant body temperature.

Therefore, The type of substance would be best for use in a cooling system would be a liquid with a high specific heat and the correct option is option B.

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What is the random mixing of gas molecules called?
O
A. Diffusion
O B. Volume
O.C. Temperature
OD. Pressure

Answers

The random mixing of gas molecules is called A.)Diffusion

A farmer has a large field with one type of
crop. This area has high biodiversity.
Agree
Disagree

Answers

Answer:

Disagree

Explanation:

Biodiversity is having a variety, or a diversity of life. Having one crop is not a variety, therefore this field does not have high biodiversity.

Final answer:

In the terms of biodiversity, a large field planted with only one type of crop does not display high biodiversity. This creates a monoculture, not diverse, and more prone to disease and pests due to lack of genetic diversity.

Explanation:

In the context of biodiversity, a large field with only one type of crop is not considered highly diverse. Biodiversity refers to the variety of life within an ecosystem, habitat, or a specific geographic area. It includes all the different types of genes, species, and ecosystems. A field with just one type of crop results in a monoculture, which is the opposite of biodiversity.

Monocultures are more susceptible to pests and diseases because there is a lack of genetic diversity. On the other hand, high biodiversity usually means more stability in an ecosystem, with increased resilience against environmental changes and disturbances.

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