can you calculate the number of moles in 170 grams of methane (CH4)

Answers

Answer 1

Answer:

1 grams Methane = 0.062334579609362 mole using the molecular weight calculator and the molar mass of CH4. ... errors may occur, so always check the results. Use this page to learn how to convert between grams Methane and mole. Type in your own numbers in the form to convert the units!

Explanation:

1 grams Methane = 0.062334579609362 mole using the molecular weight calculator and the molar mass of CH4. ... errors may occur, so always check the results. Use this page to learn how to convert between grams Methane and mole. Type in your own numbers in the form to convert the units!

Answer 2
The number of moles of methane molecules, CH4, are in 80 grams of methane.
5 moles

Related Questions

Phosphorus-32 has a half-life of 14.0 days Starting with 4.00 g of 2P how many grams will remain after 112 days?

Answers

Answer:

You'll be left with 0.25 g of phosphorus-32. The nuclear half-life of a radioactive isotope expresses the time needed for a sample of that isotope to reach half of its initial value. In your case, regardless with how much phosphorus-32 you start with, you'll be left with half of that initial mass after 14.0 days.

Explanation:

Can someone explain the Glyceraldehyde structure for me in detail please. I read that the first carbon atom is the only asymmetric one out of all three carbons and that the other two carbons do have four attachments that just aren’t different. I can’t even see how the atoms have four attachments though.

Answers

Answer:

Glyceraldehyde is a simple sugar with three carbon atoms attached to hydroxyl and hydrogen or carbonyl groups. The first carbon atom has four different groups, including an aldehyde group, which makes it asymmetric. This results in two stereoisomers, D-glyceraldehyde and L-glyceraldehyde, that are mirror images of each other and have opposite optical activities.

Glyceraldehyde is a simple sugar that has a linear structure with three carbon atoms, each of which is attached to a hydroxy group (-OH) and a hydrogen atom (-H). The chemical formula for glyceraldehyde is C3H6O3.

The central carbon atom in glyceraldehyde is called the chiral or asymmetric carbon atom, because it has four different groups attached to it: a hydrogen atom (-H), a hydroxy group (-OH), a methyl group (-CH3) and a carbonyl group (-CHO). The presence of these four different groups attached to the chiral carbon atom means that there are two possible stereoisomers of glyceraldehyde, which are called D-glyceraldehyde and L-glyceraldehyde.

In D-glyceraldehyde, the hydroxy (-OH) group is located on the right side of the asymmetric carbon atom, while in L-glyceraldehyde, the hydroxy group is located on the left side of the asymmetric carbon atom. This property of having mirror-image isomers is known as chirality, and it is an important aspect of organic chemistry.

The other two carbon atoms in glyceraldehyde also have four attachments, but they are not chiral. This means that the four groups attached to each of these two carbon atoms are not different, and therefore, these two carbon atoms do not have stereoisomers like the chiral carbon atom.

To visualize the structure of glyceraldehyde, you can draw a straight line to represent the backbone of the molecule, with the three carbon atoms in a row. Then, you can draw the four different groups attached to the chiral carbon atom (hydrogen, hydroxy, methyl, and carbonyl) coming off of it in different directions. The other two carbon atoms will also have a hydroxy and a hydrogen group attached to them, but they will be in the same orientation as the hydroxy and hydrogen groups on the chiral carbon atom, since they are not chiral.

100 POINTS!!!

What is the average rate of the reaction over the entire course of the reaction?
1.6 × 10−3 (?)
1.9 × 10−3 (?)
2.0 × 10−3 (X)
2.2 × 10−3 (X)

100 POINTS!!!What is the average rate of the reaction over the entire course of the reaction? 1.6 103

Answers

Answer:

b.  1.9 × 10-3

Explanation:

Answer:1.9x10-3

Explanation:

average

The empirical formula of a compound is NO_2. Its molar mass is 92 g/mol. What is its molecular formula?

Answers

The molecular formula of the compound whose empirical formula is NO₂ is N₂O₄.

The relation between molecular formula and empirical formula is mentioned as follows:

molecular formula = empirical formula × n                        ......equation 1

where, n is number of building blocks needed to build the molecular formula.

Molar mass of NO₂ = Molar mass of molecular formula = 92 g/mol

Molar mass of one building block = the molar mass of the empirical formula = (1 × 14.0067 g/mol) + (2 × 15.9994 g/mol) = 46.0055 g/mol

Substitute value of  molar mass of molecular formula and  molar mass of the empirical formula in equation1,

92 = 46.0055 × n

n = 2

Using equation 1 , we get

Molecular Formula = NO₂ × 2

Molecular Formula = N₂O₄

The molecular formula is N₂O₄.

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A quantity must be divided by multiples of ten when converting from a larger unit to a smaller unit.

Answers

Answer:It is false

Explanation:

I took a quiz with this question in it and I chose true but I got it wrong

What happens to the pH when a a small amount of acid is added to a buffered solution?

A.the pH goes up to 14.

B.The pH goes down to 1.

C.The pH stays about the same.

D.The pH goes to 7.

Answers

C. The pH stays about the same.

A buffered solution resists changes in pH upon addition of small amounts of acid or base. The buffer system in the solution will react with the added acid, keeping the pH relatively constant

Answer:

C.The pH stays about the same.

Explanation:

Buffer reactions maintain stable pH of solutions.

Write the equilibrium expression for the following reaction. CaO(s) + CH₄(g) + 2H₂O(g) —> CaCO₃(s) + 4H₂(g)

Answers

The equilibrium expression can be written as follows:

K = [CaCO₃] × [H₂]⁴

------------------

[CaO] × [CH₄] × [H₂O]²

In this equilibrium expression, the square brackets represent the concentrations of the species involved in the reaction, and the coefficients of the balanced equation indicate the stoichiometric coefficients of the corresponding species.

The concentration of a pure solid (CaCO₃ in this case) is not included in the equilibrium expression, as it remains constant throughout the reaction.

The equilibrium constant (K) represents the ratio of the product concentrations to the reactant concentrations at equilibrium, each raised to the power of their respective stoichiometric coefficients. The specific values of these concentrations depend on the initial conditions, and K remains constant as long as the temperature is unchanged.

It is important to note that the equilibrium constant expression is written based on the balanced chemical equation. The stoichiometric coefficients determine the relationship between the concentrations of reactants and products, allowing us to express the equilibrium state quantitatively using the equilibrium expression.

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The distance from the Moon to Earth is 5.46 * 108 km. How long does it take a laser need to travel between the moon and earth?
a. 1.64 X 1020 s
b. 1.82 X 103 s
c. 1.82 s
d. 0.182 s
e. 1.64 X 1017 s

Answers

Answer:

B. 1.82(10³) seconds (1820 seconds)

Explanation:

Speed of Light: 3.00(10⁸) m/s or 3.00(10⁵) km/s

We know the distance from the Moon to Earth as 5.46(10⁸) km

We simply divide the distance by the speed of light:

\(\frac{5.46(10^8)}{3.00(10^5)}\)

We should get 1820 seconds or B. 1.82(10³) as our answer.

I need help I'm in a science quiz
All of the following are forms of energy that drive the rock cycle EXCEPT:
Solar Energy
Chemical Energy
Heat Energy
Air temperature
Pressure
Gravity

Answers

Gravity, it is not a form of energy but it creates potential energy

For the reaction

4PH3(g)↽−−⇀6H2(g)+P4(g)

the equilibrium concentrations were found to be [PH3]=0.250 M, [H2]=0.580 M, and [P4]=0.750 M.


What is the equilibrium constant for this reaction?

c=

Answers

The equilibrium constant (Kc) for the given reaction is approximately 16.448. The value of Kc indicates the relative concentrations of reactants and products at equilibrium. In this case, a Kc greater than 1 suggests that the products (H2 and P4) are favored at equilibrium, indicating that the forward reaction is more favorable.

To determine the equilibrium constant (Kc) for the given reaction:

4PH3(g) ↔ 6H2(g) + P4(g)

We can write the equilibrium constant expression based on the stoichiometric coefficients:

Kc = ([H2]^6 * [P4]) / ([PH3]^4)

Substituting the given equilibrium concentrations:

[PH3] = 0.250 M

[H2] = 0.580 M

[P4] = 0.750 M

We can plug in these values into the equilibrium constant expression:

Kc = ([0.580]^6 * [0.750]) / ([0.250]^4)

Kc = (0.0860128 * 0.750) / (0.00390625)

Kc = 16.448

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Which of the following would be the best thing to do to reverse the impact humans have had on the enviroment?

A. Change the way we approch science

B. Stop growing as a population

C. Change our resource use habits

D. Stop using technology

Which one is the right one? think 40 points for answer : )

Answers

Answer:

I think its C

Explanation:

but don't trust me 2 much

The environment provides a vast array of materials and services that people use to live. Often these resources have competing uses and values.  In order to conserve environment change our resource use habits. The correct option is C.

What are environmental resources?

An environmental resource is any material, service, or information from the environment that is valuable to society. This can refer to anything that people find useful in their environs, or surroundings. Food from plants and animals, wood for cooking, heating, and building, metals, coal , and oil are all environmental resources.

Clean land, air, and water are environmental resources, as are the abilities of land, air, and water to absorb society's waste products. Heat from the sun, transportation and recreation in lakes, rivers, and oceans, a beautiful view, or the discovery of a new species are all environmental resources.

Thus the correct option is C.

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What is the molarity of a solution containing 0.05 moles of solute in 0.25L of solution?

Answers

Answer:

  0.2 M

Explanation:

The molarity is the number of moles per liter:

  (0.05 moles)/(0.25 liter) = 0.2 moles/liter = 0.2 M

In which of the following, are all the elements non-metals?

A. Na, Mg, O, N
B. C, Si, Ge, As
C. Fe, Ni, Cr, O
D. He, Ne, Ar, Kr
E. Ca, Ba, Sr, S

Answers

Answer:

The answer is D

Explanation:

Non metals are:

Hydrogen (H)

Sulphur (S)

Phosphorus (P)

Carbon (C)

Fluorine (F)

Oxygen (O)

Nitrogen (N)

Chlorine (Cl)

Bromine (Br)

Helium (He)

Argon (Ar)

Iodine (I)

Neon (Ne)

Krypton (Kr)

Radon (Rn)

Selenium (Se)

Xenon (Xe)

______ + _______ --> H2O + FrF Complete and balance the equation representing neutralization reaction.

Answers

The general form of a neutralization reaction is HF + FrOH → FrF + H₂O

Which of the following is the formula for a neutralisation reaction?

We refer to this as a neutralisation reaction. Only this reaction, which produces NaCl and water as products, is a neutralisation reaction since it involves HCl and NaOH. The resulting response is listed below: NaCl(aq) + H₂O = HCl(aq) + NaOH(aq) (l)

Which of these reactions neutralises an effect?

The interaction of H⁺ ions and OH⁻ ions produces water in a neutralisation reaction, which occurs when an acid and a base combine to make water and a salt. The neutralisation of a strong acid and strong base yields a pH of 7.

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7) How many molecules of CO2 are in 2.5 L at STP?

Answers

By using the ideal gas law and Avogadro's number, we find that there are approximately 6.72 × 10^22 molecules of CO2 in 2.5 L at STP.

To determine the number of molecules of CO2 in 2.5 L at STP (Standard Temperature and Pressure), we can use the ideal gas law and Avogadro's number.

Avogadro's number (N_A) is a fundamental constant representing the number of particles (atoms, molecules, ions) in one mole of substance. Its value is approximately 6.022 × 10^23 particles/mol.

STP conditions are defined as a temperature of 273.15 K (0 °C) and a pressure of 1 atmosphere (1 atm).

First, we need to convert the volume from liters to moles of CO2. To do this, we use the ideal gas law equation:

PV = nRT,

where P is the pressure, V is the volume, n is the number of moles, R is the ideal gas constant, and T is the temperature in Kelvin.

Since we have STP conditions, we can substitute the values:

(1 atm) × (2.5 L) = n × (0.0821 L·atm/(mol·K)) × (273.15 K).

Simplifying the equation:

2.5 = n × 22.4149.

Solving for n (the number of moles):

n = 2.5 / 22.4149 ≈ 0.1116 moles.

Next, we can calculate the number of molecules using Avogadro's number:

Number of molecules = n × N_A.

Number of molecules = 0.1116 moles × (6.022 × 10^23 particles/mol).

Number of molecules ≈ 6.72 × 10^22 molecules.

Therefore, there are approximately 6.72 × 10^22 molecules of CO2 in 2.5 L at STP.

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5.
The reaction 2AB 2A + B is first order with respect to AB.
The half-life of the reaction is 2 minutes.
0.100 mol of AB is dissolved in a solvent to form 100 cm of a reaction mixture.
What is the concentration of AB, in mol dm, after 6 minutes?
A. 0.0125
B. 0.0250
CU 0.125
D. 0.250
[1]
Your answer

Answers

The concentration of AB, in mol/dm³, after 6 minutes : 0.125

Further explanation

For first-order reaction :

\(\tt [A]=[A]oe^{-kt}\rightarrow t1/2=\dfrac{ln~2}{k}\)

The half-life of the reaction is 2 minutes⇒t1/2=2 minutes

The concentration of AB, in mol dm, after 6 minutes ⇒ t=6 minutes

The rate constant (k) :

\(\tt k=\dfrac{ln~2}{t1/2}=\dfrac{0.693}{2}=0.3465\)

The concentration after 6 minutes :

\(\tt [A]o=0.1~mol/100~cm^3=1~~mol/dm^3\\\\(A]=1\times e^{-0.3465\times 6}\\\\(A]=0.125\)

When preparing a pure and dry sample of ammonium chloride, we cannot dry the sample of ammonium chloride by evaporating it to dryness.

Answers

we cant

Explanation:

you need to leave some water to stop dehydration of substance

When preparing a pure and dry sample of ammonium chloride, we cannot dry the sample by evaporating it to dryness because ammonium chloride is a salt that decomposes upon heating.

When heated, ammonium chloride undergoes sublimation, which means it directly changes from a solid to a gas without passing through a liquid phase. This process would lead to the loss of the compound, and we would not be able to obtain a pure and dry sample.

Instead, other methods such as vacuum drying or desiccation are used to remove moisture from ammonium chloride without causing decomposition.

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I need help with solving this problem

Answers

what problem, theres nothing here?

3. Give two reasons why there are different values for the weighted average atomic mass of Candium
in the class.

Answers

The majority of elements are found in mixtures of two or more isotopes in nature. Every element's isotope has a set mass and a natural percent abundance. These isotopes' masses in their respective abundances must be reflected in the element's mass.

Every isotope contributes to the average atomic mass of an element, which is displayed in the element's box on most periodic tables (at least, the isotopes that exist naturally). However, the average is a weighted average.A weighted average mass is an average that considers the frequency of each mass in the sample.Atoms with the same atomic number that have varied masses because of differing neutron counts are known as isotopes. The weighted average of an element's isotopes' masses determines its atomic mass. Each isotope's mass and relative abundance as they exist in nature are considered in the weighted average.

These are the reasons for different values of weighted average atomic mass.

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How many liters of oxygen are needed to exactly react with 17.5 g of methane, CH4, at
STP? (Hint: you must calculate the number of moles of CH4 and look at the reaction
stoichiometry first)
CH4(g) + 2 O₂(g) → CO₂(g) + 2 H₂O(l)

Answers

it would take optoxomatly 4

A 10.0 cm3 sample of copper has a mass of 90 g. What is the density of copper?

Answers

Answer:

9 g/cm³

Explanation:

The density of a substance can be found by using the formula

\(density = \frac{mass}{volume} \\\)

From the question we have

\(density = \frac{90}{10} = 9 \\ \)

We have the final answer as

9 g/cm³

Hope this helps you

What process is represented by this redox equation?
C6H12O6 + 602 -> 6H20 + 6CO2

A. Rusting
B. Photosynthesis
C. Cellular respiration
D. Combustion

Answers

The redox equation C6H12O6 + 6O2 -> 6H2O + 6CO2 represents the process of cellular respiration. Option C

Cellular respiration is a biochemical process that occurs in living organisms, including plants and animals, to convert organic compounds, such as glucose (C6H12O6), into usable energy in the form of adenosine triphosphate (ATP). It is the primary process by which cells derive energy to carry out their functions.

In the given equation, glucose (C6H12O6) is being oxidized, losing electrons, and releasing carbon dioxide (CO2) as a byproduct. This oxidation process results in the production of energy-rich molecules, such as ATP.

Additionally, oxygen (O2) is being reduced, accepting the electrons from glucose and combining with hydrogen (H) to form water (H2O). This reduction process allows for the transfer of electrons and the generation of energy.

The process of cellular respiration is essential for the survival and functioning of organisms, as it provides the necessary energy for various metabolic activities, growth, and maintenance of cellular processes.

It is a fundamental metabolic pathway found in both plants and animals, enabling them to extract energy from organic molecules through the oxidation of glucose or other fuel sources.

Therefore, option C, cellular respiration, is the correct answer that represents the process described by the given redox equation.

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Can someone plz help-

Can someone plz help-

Answers

Answer:

The answer is 3 :)

Answer: 3. a bottle that was broken into many small pieces

How many moles of Al are necessary to form 45.0 g of AlBr, from this
reaction:
2 Al(s) + 3 Br_(1) ► 2 AlBr_(s)?

Answers

Answer:

0.169 mole of Al

Explanation:

We'll begin by by calculating the number of mole in 45 gof AlBr₃. This can be obtained as follow:

Mass of AlBr₃ = 45 g

Molar mass of AlBr₃ = 27 + (3×80)

= 27 + 240

= 267 g/mol

Mole of AlBr₃ =?

Mole = mass /molar mass

Mole of AlBr₃ = 45 / 267

Mole of AlBr₃ = 0.169 mole

Finally, we shall determine the number of mole of Al needed to produce 45 g (i.e 0.169 mole) of AlBr₃. This can be obtained as illustrated below:

2Al + 3Br₂ —> 2AlBr₃

From the balanced equation above,

2 moles of Al reacted to produce 2 moles of AlBr₃.

Therefore, 0.169 mole of Al will also react to produce 0.169 mole of AlBr₃.

Thus, 0.169 mole of Al is needed for the reaction.

A solution is made by dissolving 38.81 grams of nickel (II) sulfate, NiSO4, in enough water to make 0.467
liters of solution. Calculate the molarity of this solution.

Answers

The molarity of the NiSO₄ solution made by dissolving 38.81 grams of nickel (ii) sulfate, NiSO₄, in enough water to make 0.467 liters of solution is 0.535 M

How do i determine the molarity of the solution?

First, we shall obtain the mole of 38.81 grams of nickel (ii) sulfate, NiSO₄. Details below:

Mass of NiSO₄ = 38.81 grams Molar mass of NiSO₄ = 154.75 g/molMole of NiSO₄ = ?

Mole of NiSO₄ = mass / molar mass

= 38.81 / 154.75

= 0.25 mole

Now, we shall determine the molarity of the solution. Details below:

Mole of NiSO₄ = 0.25 moleVolume of solution = 10.467 LMolarity of solution = ?

Molarity of solution = mole / volume

= 0.25 / 0.467

= 0.535 M

Thus, the molarity of the solution is 0.535 M

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If g(x) is the inverse of f(x) and f(x)=4x+12, what is g(x)?​

Answers

Answer: \(y = \frac{1}{4}x-3\)

Explanation:

To find the inverse of an equation, follow these steps:

Replace every f(x) or y with x, and every x with y. Solve the equation for y

We are given the equation \(f(x) = 4x + 12\) , so replace f(x) with x.

Then, replace x with y.

Your new equation:

\(x = 4y + 12\)

Now, solve for y:

\(x = 4y + 12\\\\4y = x - 12\\\\y = \frac{1}{4}x-3\)

This equation is the inverse of f(x), or g(x).

How many atoms are in 21.2grams of magnesium

Answers

The answer is 5.25 x 10²³ atoms

Sorry for not showing the work.

You can do the steps and check your answer. I hope this was helpful

Using the venn diagram, determine the similarities and differences between analytical chemistry and chemical analysis

Answers

Answer:

Explanation:

Modern analytical chemistry can be defined as a science concerned with the development of general approaches, methods, and tools for the study of chemical compositions of substances and analysis of objects; chemical analysis is restricted to the acquisition of information about chemical compositions of substances.

Using the venn diagram, determine the similarities and differences between analytical chemistry and chemical

what element does this Bohr show ?

what element does this Bohr show ?

Answers

This has four neutrons and three protons. Additionally, it has three electrons in the electron cloud. A elements number of neutrons will also be an elements atomic number on the periodic table. So, this means that the Bohr model is representing the element Lithium.


Hope this helps :)

Some properties of substance X are listed. ●It conducts electricity when molten. ●It has a high melting point. ●It burns in oxygen and the product dissolves in water to give a solution with pH 11. what is X? A a covalent compound B a macromolecule C a metal D an ionic compound​

Answers

An ionic compound is one that dissolves in water to produce a solution with a pH of 11, has a high melting point, conducts electricity when molten, and burns in oxygen.

What are ionic compounds, exactly?

Positively charged ions, which are sometimes called as cations, and negatively charged ions, also called as anions together constitute an ionic compound, which are neutral substances. The name of the cation is written first, followed by the name of the anion, in case of binary ionic compounds (ionic compounds that only contain two types of elements).

What is the difference between covalent and ionic compounds?

An atom can establish bonds with other atoms in two main ways: covalent and ionic. Sharing of electrons between two or more atoms is involved in case of covalent bonding. When two or more ions come together, they can form ionic bonds that are held together by charge differences.

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