How many grams of Oz would be needed to produce 1.875 moles of aluminum?
4 AI + 3 O2 -> 2Al2O3

Answers

Answer 1

Answer:

1.4063 moles of oxygen are required

Explanation:

Based on the chemical equation:

4Al + 3O₂ → 2Al₂O₃

4 moles of aluminium react with 3 moles of oxygen.

To solve this question we need to convert the moles of aluminium to moles of oxygen using the chemical reaction:

1.875 moles Al * (3 moles O₂ / 4 moles Al) =

1.4063 moles of oxygen are required

Related Questions

How many cubic centimeters are in the block? if the length is 1, the width is 1 and the height is 1?

Answers

Answer:

Volume = [tex]1cm^3[/tex]

Explanation:

Volume of cube = [tex]s^{3}[/tex]

Wherein,

s = length of side

Hence,

If the length of each side is 1cm,

Volume = [tex]1^3[/tex]

= 1[tex]cm^3[/tex]

The physical state of CaBr2 at room temperature? Predict the two other properties of CaBr2 Deduce the charge of ion Ca in the compound CaBr2

Answers

Answer:

CaBr2 is a colorless solid and the charge on Calcium is +2

Explanation:

CaBr2 is a colorless solid at room temperature.

Other properties include -

a) It is a crystalline solid

b) Melting point of 765°C.

c) It is deliquescent

d) Soluble in water and absolute alcohol.

The charge of Br is -1. Here two atoms of Br attaches with one atom of calcium. Hence the charge of calcium is +2

How many joules of heat are needed to increase the temperature of 19.3 g
of lead from 22°C to 41°C? (Specific heat of lead = 0.128 J/g•°C ROUND
YOUR ANSWER TO A WHOLE NUMBER DO NOT FORGET UNITS q = MCT

Answers

Answer:

c i think

Explanation:

The heat is needed to increase the temperature of 19.3 g lead from 22°C to 41° C is 46.9 J or 46.9 MCT.

What is heat?

Heat is defined as a form of energy related to the motion of an atom or molecules. It can also be defined as transfer of kinetic energy from one medium or object to another medium or object

Heat energy can be calculated as

q = mcΔT

ΔT = 41°C - 22°C = 19°C

So q = 19.3g x 0.128J/g °C x 19°C

        = 46.9 J or 46.9 MCT

Thus, the heat is needed to increase the temperature of 19.3 g lead from 22°C to 41° C is 46.9 J or 46.9 MCT.

To learn more about heat, refer to the link below:

https://brainly.com/question/1429452

#SPJ2

One mol of air contains 0.74 moles of nitrogen gas and 0.25 mol of oxygen gas. Compute the partial pressure of these gases at a total pressure of 1.7 atm and at a total pressure of 4.7 atm.

Answers

Explanation:

Partial pressure of a gas is the product of the mole fraction of that gas, which is the ratio of the no. of moles of the gas to the total no. of moles, and the total pressure.

total no. of moles=0.74+0.25=0.99 mol

mole fraction of N2=0.74/0.99=0.7475

mole fraction of O2=0.25/0.99=0.2525

total pressure=1.7+4.7=6.4 atm

partial pressure of N2=0.7475×6.4=4.784 atm

partial pressure of O2=0.2525×6.4=1.616 atm

Select the most likely product for this reaction:
Upper A g upper N upper O subscript 3 (a q) plus upper N a upper O upper H (a q) right arrow question mark.
AgOH(s) + NaNO3(aq)
Ag2O(s) + HNO3(aq)
Ag(s) + H2(g) + O2(g)

Answers

Answer:

(A) AgOH(s) + NaNO3(aq)

Explanation:

correct on edge 2021

Answer:

a

Explanation:

How many atoms are there in 1.005 moles of CO2?

Answers

Answer:

[tex]6.05211\times 10^{23}\ \text{atoms}[/tex]

Explanation:

Moles of carbon dioxide = 1.005 moles

[tex]N_A[/tex] = Avogadro's number = [tex]6.022\times 10^{23}\ \text{mol}^{-1}[/tex]

Number of atoms is given by

[tex]\text{Moles}\times N_A=1.005\times 6.022\times 10^{23}[/tex]

[tex]=6.05211\times 10^{23}\ \text{atoms}[/tex]

The number of atoms in the given amount of moles of carbon dioxide is [tex]6.05211\times 10^{23}\ \text{atoms}[/tex].

Fluorine gas reacts with aqueous iron (II) iodine to produce iron (II) fluoride and iodine liquid What is the balanced chemical equation for this reaction?

Answers

Answer:

F₂ (g) + FeI₂ (aq) →  FeF₂ (aq) +  I₂ (l)

Explanation:

Our reactants are:

F₂ → Fluorine gas, a dyatomic molecule

FeI₂ → Iron (II) iodine

Our products are:

I₂ → Iodine

FeF₂ → Iron (II) fluoride

Then, the reaction is:

F₂ (g) + FeI₂ (aq) →  FeF₂ (aq) +  I₂ (l)

We see it is completely balanced.

How much of the world’s drinking water is provided by rivers?
A. 50%
B. 75%
C.90%
D. None of these

(Be accurate & will give brainliest if the answer is correct when I get the quiz results back.)

Answers

the answer should be A

What is the empirical formula of a compound that is 7.74% H and 92.26% C? What is the molecular formula if the molar mass is 78.1134 g/mol?

What is the empirical formula of a compound that is 8.68% O, 6.56% H, and 84.75% C? What is the molecular formula if the molar mass is 184.2372 g/mol?

What is the empirical formula of a compound that is 90.51% C and 9.49% H? What is the molecular formula if the molar mass is 106.167 g/mol?

What is the empirical formula and molecular formula for a substance that is 39.72% C, 1.67% H, and 58.61% Cl if the molar mass of the substance is 181.44 g/mol?

What is the empirical formula of a compound that is 47% Pt, 18.84% K, and 34.16% Cl? What is the molecular formula if the molar mass is 415.098 g/mol?

What is the empirical formula of a compound that is 6.35% H, 55.83% Cl, and 37.83% C? What is the molecular formula if the molar mass is 127.0132 g/mol?​

Answers

Answer:

For all these questions, we want to find the empirical and molecular formulae of various compounds given their percent composition and molar mass. The technique used to answer one of the questions can accordingly be applied to all of them.

Approaching the first question, we treat the percentages of each element as the mass of that element in a 100 g compound (as the percentages add up to 100%). So, our 100 g compound comprises 7.74 g H and 92.26 g C.

Next, we convert these mass quantities into moles. Divide the mass of each element by its molar mass:

7.74 g H/1.00794 g/mol = 7.679 mol H

92.26 g C/12.0107 g/mol = 7.681 mol C.

Then, we look for the molar quantity that's the smallest ("smaller," in this case, since there are only two), and we divide all the molar quantities by the smallest one. Here, it's a very close call, but the number of moles of H is slightly smaller than that of C. So, we divide each molar quantity by the number of moles of H:

7.679 mol H/7.679 mol H = 1

7.681 mol C/7.679 mol H ≈ 1 C/H (the value is actually slightly larger than 1, but we can treat it as 1 for our purposes).

The quotients we calculated represent the subscripts of our compound's empirical formula, which should provide the most simplified whole number ratio of the elements. So the empirical formula of our compound is C₁H₁, or just CH.

Here, it just so happens that we obtained whole number quotients. If we end up with a quotient that isn't a whole number (e.g., 1.5), we would multiply all the quotients by a common number that would give us the most simplified whole number ratio (so, if we had gotten 1 and 1.5, we'd multiply both by 2, and the empirical formula would have subscripts 2 and 3).

To find the molecular formula (the actual formula of our compound), we use the molar mass of the compound, 78.1134 g/mol. The molar mass of our "empirical compound," CH, is 13.0186 g/mol. Since our empirical formula represents the most simplified molar ratio of the elements, the molar masses of our "empirical compound" and the actual compound should be multiples of one another. We divide 78.1134 g/mol by 13.0176 g/mol and obtain 6. The subscripts in our molecular formula are equal to the subscripts in our empirical formula multiplied by 6.

Thus, our molecular formula is C₆H₆.

---

As mentioned before, all the questions here can be answered following the procedure used to answer the first question above. In any case, I've provided the empirical and molecular formulae for the remaining questions below for your reference.

2. Empirical formula: C₁₃H₁₂O; molecular formula: C₁₃H₁₂O

3. Empirical formula: CH; molecular formula: C₈H₈

4. Empirical formula: C₂HCl; molecular formula: C₆H₃Cl₃

5. Empirical formula: Cl₄K₂Pt; molecular formula: Cl₄K₂Pt

6. Empirical formula: C₂H₄Cl; molecular formula: C₄H₈Cl₂

2.
You take a gas at 3 atm and increase the temperature from 120 K to 240 K. What is the final pressure?
A
6 atm
B
Not enough information
C
3 atm
D
1.5 atm

Answers

Answer:

A. 6atm

Explanation:

Using pressure law equation:

P1/T1 = P2/T2

Where;

P1 = initial pressure (atm)

T1 = initial temperature (K)

P2 = final pressure (atm)

T2 = final temperature (K)

According to this question;

P1 = 3 atm

P2 = ?

T1 = 120K

T2 = 240K

Using P1/T1 = P2/T2

3/120 = P2/240

Cross multiply

240 × 3 = P2 × 120

720 = 120P2

P2 = 720/120

P2 = 6atm


The image shows sedimentary rock layers with index fossils and a fault.

Which statement accurately describes the rock layers?

Layer 8 is older than layer 1.

Layer 3 is younger than layer 6.

Layer 4 and layer 10 are the same relative age.

Layer 2 and layer 9 are the same relative age.

Answers

Answer:

Layer 2 and layer 9 is the same relative age since it is the same type of rock and has the same fossils.

Hope this helped!

How many moles are in 3.0g of A1203?

Answers

Answer:

0.065 moles

Explanation:

What are the two factors that can increase an object's elastic energy?

Answers

Answer:

The factors that determine the amount of elastic potential energy being stored include the type of material and the amount it is deformed. The more an object is deformed, the more stored energy it has.

three examples of resistors

Answers

Answer:

fixed resistors, variable resistors, resistance dependent on a physical quantity

¿Cuántos gramos de dicloruro de manganeso se obtienen cuando reaccionan 7,5 g de ácido clorhídrico? MnO2 + 4 HCl = Mn Cl2 + Cl2 + 2 H2O *

Answers

Answer:

6.6 g

Explanation:

La ecuación de la reacción es;

MnO2 + 4 HCl -------> MnCl2 + Cl2 + 2H2O

Número de moles de HCl que reaccionan = 7.5g / 36.5 g / mol = 0.21 moles

Dado que;

4 moles de HCl producen 1 mol de MnCl2

0,21 moles de HCl producen 0,21 * 1/4 = 0,0525 moles de MnCl2.

Masa de MnCl2 = 125,844 g / mol * 0,0525 moles = 6.6 g

What is an ion with a positive charge called

Answers

Answer:

An ion with a positive charge is called cations because if there's a group of atoms, a positive or negative charges :3

Explanation:

:3

Help! Need it ASAP!
Is steam and vapour different? If they are then how are they different?

Answers

Answer:

Explanation:

Water vapor is when water molecules are present in the air, while steam is water heated to the point that it turns into gas. In simplified science, both are referred to as the gaseous state of water. Steam is usually white or translucent in nature, while water vapor can be clear or translucent.

Steam is simply, water vapor. Hence, the key difference between steam and vapor is that steam is the gaseous state of water whereas vapor is the gaseous state of any substance. Moreover, steam is typically invisible while the vapor of some substances is colorful.

PLEASE I NEED YOUR HELP, I WILL GIVE 10 POINTS PLEASEEEEE
People claim these rock formations in the Sahara Desert look like a mushroom and a chicken. They were not sculpted by humans. What do you think caused them to be shaped this way?

Answers

Answer:

Erosion

Explanation:

What are the procedures for performing an acid property test

Answers

Answer:

In the context of transaction processing, the acronym ACID refers to the four key properties of a transaction: atomicity, consistency, isolation, and durability. Atomicity. All changes to data are performed as if they are a single operation

Convert the following temperature units (Hint: K = °C +273)
A) 50°C = __________ K

B) 288 K = __________°C

Answers

Answer: a- 323 b- 15

Explanation:

Calculate the heat absorbed when 68.8 g of ice at -30.0 c is converted to steam at 160 c

Answers

Answer: 219 kJ

Explanation:

How might the structure of an atom be modeled

Answers

Answer:

you can explore the structure of atoms as you add protons, neutrons, or electrons to a model and the name of the element you have created

Explanation:

Four alleles determine if a rabbit is white, brown, or gray. This is an example of *
a.)incomplete dominance
b.)polygenic inheritance
c.)multiple alleles
d.)codominance

Answers

The answer is C multiple alleles

Answer:

imcomplete dominance

Explanation:

because it is

Question 7 of 10
The Sun has a diameter of about 865,000 miles.
Suppose you were making a scale model of the
solar system with a scale of 1 inch:1,000 miles.
How wide would the Sun be in your model?
A. 865,000 inches
B. 865 inches
C. 86.5 inches
O D. 8.65 inches

Answers

Answer:

you have to decide 865,000 with 1000 and the answer is 865

helppppppppppppppppppppppp

Answers

ITS CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCC

How are gas particles arranged in a container?
Select one:
a.Far apart
b.Loosely arranged
c.Neatly organized
d.Tightly packed

Answers

d: tightly packed :-)
the answer is a far apart

4. For water, H20 represents
only the empirical formula
only the molecular formula
only the structural formula
both the empirical & molecular formulas

Answers

Answer:

The empirical and molecular formula because the ratio is 2:1 and there is 2 hydrogen atoms and 1 oxygen atom.

Hope this helps!

Which term describes all the different populations within one area?
WILL GIVE BRAINLY!!

Answers

Answer:

a biotic factor это просто

Correct answer is ecosystem, a place where both biotic and abiotic things interact with each other.

Plz mark as brainleast plzzz

3. When the water level is higher outside the flask than inside, is the gas pressure inside the flask higher, lower or the same as atmospheric pressure? (Take your time to think about this. Perhaps think of what it feels like to be 10 feet under water.)

Answers

Answer:

The gas pressure inside the flask is higher than outside the flask ornthe atmospheric pressure.

Explanation:

Given a U-tube manometer with water in between each arm of U-tube. One end is open to the atmosphere while one end is sealed to a flask filled with a gas. The water in the open end of the tube is experiencing a pressure equal to the atmospheric pressure whereas the water at the end sealed of to the flask is experiencing pressure due to the gas in the flask.

If the water level in both arms of the tube are equal, then the pressure due to the gas is equal to atmospheric pressure.

If the water level in the arm sealed to the gas is higher than that of the open end, The gas pressure is less than the atmospheric pressure.

If the water level in the arm sealed to the flask is lower than the open end, the pressure due to the gas is higher than atmospheric pressure.

From the question, when the water level is higher outside the flask than inside, then the gas pressure inside the flask is higher than the atmospheric pressure.

Put each equation under the correct heading.

Answers

Decomp. ~ 2H2O —-> 2H2 + O2


Single Disp. ~ AgNO3 + Cu —> CuNO3 + Ag


Double Disp ~ Pb(NO3)2(aq) + 2KI(aq) -> 2KNO3(aq) + PbI2(s)


Combustion ~ CH4 + O2 —> CO2 + 2H2O


Synthesis ~ 2Mg + O2 —> 2MgO
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