A 2.5-liter sample of a gas has 0.30 mole of the gas. If 0.15 mole of the gas is added, what is the final volume of the gas? Temperature and pressure remain constant.

Answers

Answer 1

Answer:

1.125

Explanation:

I think it is his because if you add 0.30 and 0.15 it adds up to 0.45 so you just multiply 0.45 and 2.5 and then it gives you 1.125. HOPE IT HELPS.


Related Questions

draw Fischer projection for L-ketononose​

Answers

Answer: acttachec pic

The last carbon have the H on there, forgot to put it in :)

The Fischer projection of L-ketononose is:

  H

  |

CH₂OH-C=O-H

  |

  C

  |

  CH₂OH

Fischer projection is a two-dimensional representation of a three-dimensional molecule. In Fischer projection, the carbon atoms are drawn as vertical lines, and the hydrogen atoms and hydroxyl groups are drawn on the right-hand side or left-hand side of the carbon atoms. The carbonyl group is always drawn at the top of the Fischer projection.

The L-configuration is a type of configuration that is assigned to organic molecules based on the orientation of the hydroxyl group on the penultimate carbon atom. If the hydroxyl group is on the left-hand side of the Fischer projection, the molecule is assigned the L-configuration. If the hydroxyl group is on the right-hand side of the Fischer projection, the molecule is assigned the D-configuration.

In the Fischer projection of L-ketononose, the hydroxyl group on the penultimate carbon atom is on the left-hand side, so the molecule is assigned the L-configuration.

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Hydrogen and oxygen react under a specific set of conditions to produce water according to the following equation.
2 H2(g) + O2(g) 2 H2O(g)
(a) How many moles of hydrogen would be required to produce 2.8 mol of water?
(b) How many moles of oxygen would be required?

Answers

Answer:

fccdsetyujvreettyukknop

(c) Write the balanced neutralization reaction and calculate the volume in mL of a 1.420 M NaOH solution required to titrate 25.00 mL of a 5.400 M H2SO4 solution

Answers

Answer:

2NaOH + H₂SO₄ → Na₂SO₄ + 2H₂O

190.14 mL of the NaOH solution would be required.

Explanation:

The balanced reaction is:

2NaOH + H₂SO₄ → Na₂SO₄ + 2H₂O

Now we calculate how many H₂SO₄ moles are there in 25.00 mL of a 5.400 M solution, using the definition of molarity:

Molarity = moles / litersMoles = Molarity * liters25.00 mL * 5.400 M = 135 mmol H₂SO₄

Now we convert H₂SO₄ moles into NaOH moles, using the stoichiometric coefficients of the balanced reaction:

135 mmol H₂SO₄ * [tex]\frac{2mmolNaOH}{1mmolH_2SO_4}[/tex] = 270 mmol NaOH

Finally we calculate the volume of a 1.420 M solution that would contain 270 mmoles:

Molarity = moles / litersliters = moles / molarity270 mmol / 1.420 M = 190.14 mL

what is a null hypothesis

Answers

Answer:

In inferential statistics, the null hypothesis is a default hypothesis that a quantity to be measured is zero.

a null hypothesis means there is no difference between certain characteristics of a population

How many individual atoms are represented in the reactants of the equation shown below?

Answers

There are 3 individual atoms are represented in the reactants of the equation.

What is an atom?

An atom is a particle of matter that uniquely defines a chemical element. An atom consists of a central nucleus that is surrounded by one or more negatively charged electrons. The nucleus is positively charged and contains one or more relatively heavy particles known as protons and neutrons.

In the reactants given, we have methane which has 2 individual atoms (Carbon and hydrogen) and oxygen has 1 individual atom.

Therefore, There are 3 individual atoms are represented in the reactants of the equation.

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What happens when you mix lead nitrate and hydrogen peroxide?

Answers

Answer:

Sorry I dont know I just need points

Explanation:

Have a good day :)

Answer: Lead Nitrate combines with HYDROGEN PEROXIDE, REDUCING AGENTS, POWDERED CARBON, LEAD HYPOPHOSPHITE, AMMONIUM THIOCYANATE, POTASSIUM ACETATE, and POWDERED METALS. Lead Nitrate is a Powerful OXIDIZER that can ignite ORGANIC and COMBUSTIBLE MATERIALS.

Explanation:

pls help!!!!

Predict the missing component
in the nuclear equation.
1331 → X + -e
A
B
с
131 Cs
131Xe
1311
55
54
53

Answers

Answer: b

Explanation:

its b

The missing component in the nuclear equation.1331 → X + -e will be 131Xe54. option B is correct.

What is nuclear reaction?

The particles in the nucleus are changed, and one element is transformed into another element when particles in the nucleus are gained or lost.

Nuclear reactions are processes in which one or more nuclides are produced from the collisions between two atomic nuclei or one atomic nucleus and a subatomic particle.

This was the first observation of an induced nuclear reaction, that is, a reaction in which particles from one decay are used to transform another atomic nucleus.

The most notable man-controlled nuclear reaction is the fission reaction which occurs in nuclear reactors. A target nucleus are within the range of nuclear forces for the time allowing for a large number of interactions between nucleons.

therefore , option B is correct.

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How is an element's most likely oxidation state related to its valence electrons? A. It indicates how many valence electrons the element has. B. It indicates what energy level the valence electrons of that element are in C. It indicates how many electrons are required to complete a full valence shell D. It indicates how many valence electrons have been lost by that element.

Answers

Answer:

I would pick C

The element's most likely oxidation state related to its valence electrons "It indicates how many electrons are required to complete a full valence shell."

What is oxidation?

An atom's oxidation count would be the charge an atom would have been in the compound were made up of ions.

What is valence electrons?

The amount of electrons given atom needs to lose or gain to achieve the electrical configuration of the next noble gas as well as inert gas is known as valence.

Its only electrons that an element loses were usually its valence electrons. The largest positive oxidation state of a substance is usually determined by the count of valence electrons.

The element's most likely oxidation state related to its valence electrons "It indicates how many electrons are required to complete a full valence shell."

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What is the total pressure inside a flask that contains 2.15 atm helium, 4.62 atm xenon, and 0.65 atm argon?

Answers

Answer:

7.42 atm

Explanation:

The total pressure is just the sum of partial pressures:

2.15 + 4.62 + 0.65 = 7.42 atm

PLEASE ANSWER ILL GIVE BRAINLY ASAP!!! A student stands in exactly the same location facing north at different times throughout the day. She also observes the suns position in the sky. She draws the following diagram to show what she observed. PLEASE SHOW A DRAWING ON THE RESULTS​

Answers

Answer:i do not get it

Explanation:

BRAINLIESTTTT
If a solution has pOH of 5.2 the pH of the solution is?
A. 0.17
B. 5.2
C. 6x10-6
D. 8.8

Answers

Answer:

D 8.8

Explanation:

To solve this question you must know that, using the kw equation:

Kw = 1x10⁻¹⁴ = [H⁺] [OH⁻]

-log 1x10⁻¹⁴ = -log ([H⁺] [OH⁻])

14= -log [H⁺] + -log [OH⁻]

As pH = -log[H⁺] and pOH = -log [OH⁻]

we can obtain the equation:

pH = 14 - pOH

As the pOH of the solution is 5.2:

pH = 14 - 5.2

pH = 8.8

Right option is:

D 8.8

Need Help!!

Explain the relationship between volume and temperature (Charles’ Law)

Answers

Answer:

the volume of a give gas simple is directly propotional assolute temperature at constant pressure .the volume of a gavi. amount of gass is inversely propotional ot Its pressure when temperature is help constant

Climate change is ONLY caused by human activities
OTrue
O False

Answers

Answer:

That is False

Explanation:

That is false because climate change happen due to Wind, rainfall etc

Write a balanced equation for the following:

1. P4 + O2 → P2O5





2. C3H8 + O2 → CO2 + H2O




3. Ca2Si + Cl2 → CaCl2 + SiCl4

Answers

(ANS1)— P4 + 5O2 ---> 2P2O5

(ANS2)— C3H8 + 5O2---> 3CO2 + 4H20

(ANS3)— Ca2Si + 4Cl2 ---> 2CaCl2 + SiCl4

Answer:

(ANS1)— P4 + 5O2 ---> 2P2O5

(ANS2)— C3H8 + 5O2---> 3CO2 + 4H20

(ANS3)— Ca2Si + 4Cl2 ---> 2CaCl2 + SiCl4

Explanation:

What is the molality of a solution made with 5.6kg of water and 2.11moles of solute?

Answers

Answer:

THE MOLARITY IS 2.22 MOL/DM3

Explanation:

The solution formed was as a result of dissolving 37.5 g of Na2S in 217 g of water

Relative molecular mass of Na2S = ( 23* 2 + 32) = 78 g/mol

Molarity in g/dm3 is the amount of the substance dissolved in 1000 g or 1 L of the solvent. So we have;

37.5 g of Na2S = 217 g of water

( 37.5 * 1000 / 217 ) g = 1000 g of water

So, 172.81 g/dm3 of the solution

So therefore, molarity in mol/dm3 = mol in g/dm3 / molar mass

Molarity = 172.81 g/dm3 / 78 g/mol

Molarity = 2.22 mol/dm3

The molarity of the solution is 2.22 mol/dm3

Explanation:

4.What type of energy is used to fuel the process of photosynthesis and what type is produced in
respiration?
A Light energy is used in photosynthesis and created by respiration.
B ATP is used in photosynthesis, which allows the plant to undergo respiration.
C Light energy is used in photosynthesis, whereas respiration creates the energetic product, ATP.
D Food energy is used in photosynthesis and ATP is produced in respiration.

Answers

Answer:

A. light energy is used in photosynthesis and created by respiration

How many molecules are there in 10 grams of N2I6?

Answers

10g/ 763g/mol= 0.013moles

What is the change in electrons for sulfur in the following
reaction?
SO2 (aq) + Cr2O7^2-(aq) -> SO4^2- (aq) + Cr^3+ (aq)

A. Gain 3 electrons
B. Gain 5 electrons
C. Lose 2 electrons
D. Lose 1 electron

Answers

Answer:

Sulfate loses 2 electrons to sulphur dioxide.

5. A gas has a pressure of 310 kPa at 237 degrees C.
What will its pressure be at 23 degrees C?)​

Answers

Answer:

The pressure of the gas at 23 C is 179.92 kPa.

Explanation:

Gay-Lussac's law indicates that, as long as the volume of the container containing the gas is constant, as the temperature increases, the gas molecules move faster. Then the number of collisions with the walls increases, that is, the pressure increases. That is, the pressure of the gas is directly proportional to its temperature.

In short, when there is a constant volume, as the temperature increases, the pressure of the gas increases. And when the temperature is decreased, the pressure of the gas decreases.

Gay-Lussac's law can be expressed mathematically as follows:

[tex]\frac{P}{T} =k[/tex]

Studying two states, one initial 1 and the other final 2, it is satisfied:

[tex]\frac{P1}{T1} =\frac{P2}{T2}[/tex]

In this case:

P1= 310 kPaT1= 237 C= 510 K (being 0 C= 273 K)P2= ?T2= 23 C= 296 K

Replacing:

[tex]\frac{310 kPa}{510 K} =\frac{P2}{296 K}[/tex]

Solving:

[tex]P2=296 K*\frac{310 kPa}{510 K}[/tex]

P2= 179.92 kPa

The pressure of the gas at 23 C is 179.92 kPa.

Which is not a critical part of collision theory?
orientation
energy
amplification
collisions

Answers

Answer:

Amplification

Explanation:

What is the molarity of NaCl in which AgCl has a molar solubility of 2.38 x 10-9 mol /L? The Ksp for Silver Chloride is: 1.83 x 10-10.

Answers

Answer:

The concentration of this NaCl solution is 0.0769M

Explanation:

Hello there!

In this case, since we are dealing with a solubility equilibrium in which it is desired to compute the concentration of a common-ion effect to chloride solution in the form of NaCl, we can set up the equilibrium reaction and expression:

[tex]AgCl(s)\rightleftharpoons Ag^+(aq)+Cl^-(aq)\\\\Ksp=[Ag^+][Cl^-]\\[/tex]

It is possible to insert the concentration of starting chloride ions provided by the ionization of NaCl and in terms of the molar solubility, s, equal to 2.38x10^{-9}M:

[tex]Ksp=(s)(C+s)\\\\1.83x10^{-10}=(2.38x10^{-9})(M+2.38x10^{-9})[/tex]

Thus, solving for M, we obtain:

[tex]\frac{1.83x10^{-10}}{2.38x10^{-9}} =M+2.38x10^{-9}\\\\M=\frac{1.83x10^{-10}}{2.38x10^{-9}} -2.38x10^{-9}\\\\M=0.0769M[/tex]

Thus, the concentration of this NaCl solution is 0.0769M.

Best regards!


A sample of neon gas at 52°C and a volume of 2.5 liters is cooled to 25°C. Calculate the new volume of the neon.

Answers

2.29 Liters

Use (V1 / T1) = (V2 / T2)

The new volume of the neon gas as its temperature is reduced is 2.29L.

Charles's law

Charles's law states that "the volume occupied by a definite quantity of gas is directly proportional to its absolute temperature.

It is expressed as;

V₁/T₁ = V₂/T₂

Given the data in the question;

Initial temperature of gas T₁ = 52°C = 325.15KInitial volume of gas V₁ = 2.5LFinal temperature T₂ = 25°C = 298.15KFinal volume V₂ = ?

To determine the new volume of the neon gas, we substitute our given values into the expression above.

V₁/T₁ = V₂/T₂

V₂ = V₁T₂ / T₁

V₂ = ( 2.5L × 298.15K ) / 325.15K

V₂ = 745.375LK / 325.15K

V₂ = 2.29L

Therefore, the new volume of the neon gas as itstemperature is reduced is 2.29L.

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The horse achieved its highest status during the___________dynasty (618-906 CE), a time of unparalleled political, artist, and cultural greatness.


A. Qin


B. Han


C. Tang


D. Shang

Answers

The answer is c i hopenit helps:)

A sample of Xe gas is observed to effuse through a pourous barrier in 4.83 minutes. Under the same conditions, the same number of moles of an unknown gas requires 2.29 minutes to effuse through the same barrier.
The molar mass of the unknown gas is
_____ g/mol.​

Answers

Answer:

28.93 g/mol

Explanation:

This is an extension of Graham's Law of Effusion where [tex]\frac{R1}{R2} = \sqrt{\frac{M2}{M1} } = \frac{t2}{t1}[/tex]

We're only talking about molar mass and time (t) here so we'll just concentrate on [tex]\sqrt{\frac{M2}{M1} } = \frac{t2}{t1}[/tex]. Notice how the molar mass and time are on the same position, recall effusion is when gas escapes from a container through a small hole. The time it takes it to leave depends on the molar mass. If the gas is heavy, like Xe, it would take a longer time (4.83 minutes). If it was light it would leave in less time, that gives us somewhat an idea what our element could be, we know that it's atleast an element before Xenon.

Let's plug everything in and solve for M2. I chose M2 to be the unknown here because it's easier to have it basically as a whole number already.

[tex]\sqrt{\frac{M2}{131} } = \frac{2.29}{4.83}[/tex]

The square root is easier to deal with if you take it out in the first step, so let's remove it by squaring each side by 2, the opposite of square root essentially.

[tex](\sqrt{\frac{M2}{131} } )^2= (\frac{2.29}{4.83})^2[/tex]

[tex]{\frac{M2}{131} } = (0.47)^2[/tex]

[tex]{\frac{M2}{131} } = 0.22[/tex]

M2= 0.22 x 131

M2= 28.93 g/mol

A sample of Xe gas is observed to effuse through a pourous barrier in 4.83 minutes. Under the same conditions, the same number of moles of an unknown gas requires 2.29 minutes to effuse through the same barrier. The molar mass of the unknown gas is _____ g/mol.​

Answers

Answer:

28.93 g/mol

Explanation:

This is an extension of Graham's Law of Effusion where [tex]\frac{R1}{R2} = \sqrt{\frac{M2}{M1} } = \frac{t2}{t1}[/tex]

We're only talking about molar mass and time (t) here so we'll just concentrate on [tex]\sqrt{\frac{M2}{M1} } = \frac{t2}{t1}[/tex]. Notice how the molar mass and time are on the same position, recall effusion is when gas escapes from a container through a small hole. The time it takes it to leave depends on the molar mass. If the gas is heavy, like Xe, it would take a longer time (4.83 minutes). If it was light it would leave in less time, that gives us somewhat an idea what our element could be, we know that it's atleast an element before Xenon.

Let's plug everything in and solve for M2. I chose M2 to be the unknown here because it's easier to have it basically as a whole number already.

[tex]\sqrt{\frac{M2}{131} } = \frac{2.29}{4.83}[/tex]

The square root is easier to deal with if you take it out in the first step, so let's remove it by squaring each side by 2, the opposite of square root essentially.

[tex](\sqrt{\frac{M2}{131} } )^2= (\frac{2.29}{4.83})^2[/tex]

[tex]{\frac{M2}{131} } = (0.47)^2[/tex]

[tex]{\frac{M2}{131} } = 0.22[/tex]

M2= 0.22 x 131

M2= 28.93 g/mol


Select all the correct answers.
The dumping of garbage caused the population of crabs in an area to drop from 2,000 to 500. Crabs eat algae and are preyed on by larger fish.
How will the crab's population change affect these two specles?
O
Food and space will be equally distributed among the three species.
. The population of predatory fishes will change.
O The biodiversity of the ecosystem will decrease.
. The algal population will Increase.
O The algal population will decrease.

Answers

Answer:

The population of predatory fishes will change.

The biodiversity of the ecosystem will decrease.

Explanation:

Answer:

The population of predatory fishes will change.

The biodiversity of the ecosystem will decrease.

Explanation:

Im on the edmentum mastery test.

What are the steps to balance a chemical equation?

Answers

Answer:

Step 1: The Unbalanced Chemical Equation. The unbalanced chemical equation is given to you. ...

Step 2: Make a List. ...

Step 3: Identifying the Atoms in Each Element. ...

Step 4: Multiplying the Number of Atoms. ...

Step 5: Placing Coefficients in Front of Molecules. ...

Step 6: Check Equation. ...

Step 7: Balanced Chemical Equation.

Explanation:

Question 5 of 10
Transmutation occurs during which types of radioactive decay?
O A Beta gamma and alpha
OB. Gamma and beta
ОООО
O Gamma and alpha
D. Beta and alpha
SUBMIT

Answers

Answer:

D. Beta and Alpha

Explanation:

Just took it on Ap3x

Transmutation occurs during Beta and alpha radioactive decay, Hence option D is correct.

What is nuclear reaction ?

There are two types of nuclear reactions. Nuclear fission and nuclear fusion.

Nuclear reactions are classified into two types: fission and fusion. Nuclear fusion is the collision of two or more light nuclei to produce a heavier nucleus. Nuclear fusion happens in low-atomic-number elements such as hydrogen. Nuclear fusion is the inverse of nuclear fission, in which heavy atoms scatter and lighter elements are produced. Nuclear fusion and fission both provide massive quantities of energy.

A nuclear process in which low-atomic-number atomic nuclei fuse to form a heavier nucleus, releasing energy.

Every star in the universe, including the sun, is alive because of nuclear fusion. As a result of this activity, they create enormous amounts of heat.

Fission is a nuclear phenomenon in which a heavy nucleus spontaneously fractures or collides with another particle, releasing energy. Nuclear fission happens when an atom's nucleus splits into lighter nuclei as a result of a nuclear process. This decay can occur naturally due to radioactive decay, or it can be mimicked in a laboratory by creating the necessary conditions (bombarding with neutrinos). The overall mass of the resulting fragments is less than that of the original. The missing mass is converted into nuclear energy in the preceding step.

Hence option D is correct.

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calcium + nitrous acid → calcium nitrite
+
nitrogen monoxide
+ water

Answers

Answer:

It is double displacement reaction

How many carbon atoms are in 1.25 mol of silver acetate?

Answers

Im not sure but I did this a long time ago I think its 5.00 mols

The number of carbon atoms present in 1.25 mol of silver acetate is 1.875 × 10²³.

What is Avogadro's number?

Avogadro's number is define as the number of atoms of any substance present in one mole of that substance, and it is equal to 6.022 × 10²³, i.e.
1 mole = 6.022 × 10²³ atoms/mol

Given moles of silver acetate = 1.25 moles

Number of atoms of silver acetate in 1.25 moles = 1.25 × 6.022 × 10²³ = 7.5×10²³

Molecular formula of silver acetate is CH₃CO₂Ag, means in this molecule total 8 atoms are present so number of carbon atom will be calculated as:

Carbon atoms = (2× 7.5 × 10²³) / 8 = 1.875 × 10²³ atoms [here we multiply by 2 because 2 atoms of carbon is present in olecule]

Hence required atoms of carbon is 1.875 × 10²³.

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