A balloon filled with helium has a volume of 30.0 L at a pressure of 100 kPa and a temperature of 15.0°C. What will the volume of the balloon be if the temperature is decreased to -80.0°C and the pressure remains constant?

Answers

Answer 1

Answer:

[tex]V_2=20.1L[/tex]

Explanation:

Hello there!

In this case, since this is a problem in which the pressure of the gas remains constant, we can use the Charles' law as a directly proportional relationship between temperature (in Kelvins) and volume given by:

[tex]\frac{V_2}{T_2} =\frac{V_1}{T_1}[/tex]

Thus, solving for the final volume as the temperature is decreased to -80.00 °C, we obtain:

[tex]V_2=\frac{V_1T_2}{T_1}[/tex]

[tex]V_2=\frac{30.0L*(-80+273)K}{(15+273)K} \\\\V_2=20.1L[/tex]

Best regards!


Related Questions

Consider this chemical equation:
2AgNO3(aq) + Cu(s) → Cu(NO3)2(aq) + 2Ag(s)
Which substances dissolve in solution? Select all
that apply.
AgNO3
Cu
Cu(NO3)2
Ag
Answer is:AgNO3 and Cu(NO3)2

Answers

Answer:

the answer is very correct as AgNO3 and Cu(NO3)2

Answer:

A,C

Explanation:

the person above me is correct

plz someone help me i dont get this and i need to finish this

Answers

Answer:

The height of A is 900

Explanation: Beside A, there is a number which explains what the height is so the answer is A.

Please Answer Giving Brainleist
What gas in the air is used by plants to make their own food?

A) Nitrogen

B) Water vapor

C) Carbon dioxide

D) Oxygen

Answers

Answer:

C) Carbon dioxide is the answer.

Answer:

C. Carbon Dioxide

Carbon is absorbed by plants and chemically converted to oxygen via photosynthsis.

Hope this helps!

How many grams of NaOH (MW = 40.0) are there in 500.0 mL
of a 0.175 M NaOH solution?
A) 3.50
B) 114
C) 14.0
D) 2.19x10

Answers

Answer:

3.5

Explanation:

500*0.175= 8.75 *40/1000=3500/1000=3.5

Answer:

3.50 grams

Explanation:

Mastering chem

What is the pressure (in atm) in a 5.00 L tank with 9.00 grams of oxygen gas at 350 K?

Answers

Answer:

1.61 atm

Explanation:

Using general 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)

From the information provided in this question,

V = 5.00L

T = 350K

mass of O2 = 9.00g

Using mole = mass/molar mass

Molar mass of O2 = 16(2) = 32g/mol

mole = 9/32

mole = 0.28mol

Using PV = nRT

P = nRT/V

P = 0.28 × 0.0821 × 350/5

P = 8.0458/5

P = 1.609

Pressure = 1.61 atm

The pressure of the oxygen gas at the given temperature and volume is 1.61 atm.

The given parameters;

volume of the gas, V = 5 Lmass of the oxygen gas, m = 9 gtemperature of the gas, T = 350 K

The number of the moles of the given gas is calculated as follows;

[tex]moles = \frac{m}{M} \\\\moles = \frac{9}{32} \\\\moles = 0.28 \ mol[/tex]

The pressure of the gas is calculated as follows;

[tex]PV = nRT\\\\P = \frac{nRT}{V} \\\\P = \frac{0.28 \times 0.0821 \times 350}{5} \\\\P = 1.61 \ atm[/tex]

Thus, the pressure of the oxygen gas at the given temperature and volume is 1.61 atm.

Learn more here:https://brainly.com/question/21912477

Part A
Choose the paramagnetic species from below.
O He
O Te
O T14+
O All of the above are paramagnetic.
None of the above is paramagnetic.

Answers

Answer:

o He

Explanation:

basyshsiz0qnshshhsjzz

how many moles are in 83 particles of sodium chloride?

Answers

Answer:

there are 1.4201927800478769 moles in 83 particles of sodium chloride. or 1.42 for short.

Explanation:

If you are given 64.0 grams of CH4, how many grams of H2O are made

Answers

Answer:

144 g of H₂O.

Explanation:

We'll begin by writing the balanced equation for the reaction. This is given below:

CH₄ + 2O₂ —> CO₂ + 2H₂O

Next, we shall determine the mass of CH₄ that reacted and the mass of H₂O produced from the balanced equation. This can be obtained as follow:

Molar mass of CH₄ = 12 + (4×1)

= 12 + 4 = 16 g/mol

Mass of CH₄ from the balanced equation = 1 × 16 = 16 g

Molar mass of H₂O = (2×1) + 16

= 2 + 16 = 18 g/mol

Mass of H₂O from the balanced equation = 2 × 18 = 36 g

SUMMARY:

From the balanced equation above,

16 g of CH₄ reacted to produce 36 g of H₂O.

Finally, we shall determine the mass of H₂O produced by the reaction of 64 g of CH₄. This can be obtained as follow:

From the balanced equation above,

16 g of CH₄ reacted to produce 36 g of H₂O.

Therefore, 64 g of CH₄ will react to produce = (64 × 36)/16 = 144 g of H₂O.

Thus, 144 g of H₂O were obtained from the reaction.

How many moles are there in 8.0 grams of CaCO3

Answers

Answer: moles = 0.0799305403604264

Explanation:

Hard water contains relatively large concentrations of

A. Magnesium ions
B. Calcium ions
C. Iron ions
D. All of these ions

Answers

Answer:

I think the answer is All of these ions

Choose the larger atom from each of the following pairs.

a. Between Se and Te, the larger atom is __________
b. Between I and Kr, the larger atom is ________
c. Between P and Pb, the larger atom is _______
d. Between Ge and Br, the larger atom is___________
e. Between G e and B r, the larger atom is _________

1. Se
2. Kr
3. S
4. C

Answers

Answer:

C, between P and Pb, largest atom is Pb

The larger atom from each of the following pairs is as,

a. Between Se and Te, the larger atom is Te .

b. Between I and Kr, the larger atom is I .

c. Between P and Pb, the larger atom is Pb .

d. Between Ge and Br, the larger atom is Ge .

e. Between G e and B r, the larger atom is Ge .

How atomic size of elements vary in periodic table?

In periodic table, on moving from top to bottom  in a group the atomic size of elements increases while on moving left to right in a period the atomic size of elements decreases.

To learn more about periodic table here.

https://brainly.com/question/11155928

#SPJ3

A student pours 800.0 mL of a 3.000 molar solution of sodium hydroxide into a 2.00 liter volumetric flask and fills the flask up with water. What is the new molarity of the solution?
5 points
12.00 M
1.20 M
14.00 M
0.0750 M

Answers

M1V1 = M2V2
M1 = 3.000 M
V1 = 0.8000 L
M2 = ?
V2 = 2.00 L

3.000 M • 0.8000 L = M2 • 2.00 L

Solve for M2 —> 1.20 M NaOH

what is elimination reaction​

Answers

It’s in the link below to help u

Helpppp me pleaseeee now I’ve been struggling so bad w this

Answers

Answer:

I don't know what the passage says, but I feel like the most logical conclusion is D or the last one.

Explanation:

Answer:

D! Hope this helps! Figured id help with all of ur questions!

Explanation:

Im a wiz at science! ;)

the exact position of the electrons of an atom cannot be determined because they are in constant ___

Answers

movement
i’m pretty sure-

When aqueous ammonia is added to a solution containing Bi3+ and Cu2+ cations, ____________ occurs. A. Reduction to black bismuth metal.B. Precipitation of a black bismuth hydroxide.C. Precipitation of white bismuth hydroxide. D. Formation of a red-brown precipitate of Cu2[Fe(CN)6].

Answers

Answer:

C. Precipitation of white bismuth hydroxide.

Explanation:

When aqueous ammonia is added to a solution that has Bi3+ and CU2+ cations, what we would have as a chemical result is the precipitation of white Bismuth hydroxide.

The chemical reaction for this can be written as,

Bi3+ + 2NH3 + 3H2O ⇌ Bi(OH)3(s) + 3NH4

Thank you!

What molecules can cells break down for energy?
The options
A. Very small gas molecules, like carbon dioxide.
B. Large molecules made from glucose, like starch.
C. Small sugars, like glucose.
D. Very small liquid molecules, like water.

Answers

Answer: I think the answer is C)

Explanation:

A gas has a volume of 590 mL at a temperature of –55.0°C. What The temperature be if the volume expands to 15L at constant pressure?

Answers

Answer:

5542.37 K

Explanation:

Given that,

Initial volume, V₁ = 590 mL

Initial temperature, T₁ = -55°C = -55 + 273 = 218 K

Final volume, V₂ = 15 L

We need to find the final temperature of the gas. The relation between the volume and the temperature is given by :

[tex]\dfrac{V_1}{T_1}=\dfrac{V_2}{T_2}[/tex]

Where

T₂ is final volume of the gas

Put all the values in above relation,

[tex]T_2=\dfrac{V_2T_1}{V_1}\\\\T_2=\dfrac{15\ L\times 218\ K}{590\times 10^{-3}\ L}\\\\T_2=5542.37\ K[/tex]

So, the required temperature is equal to 5542.37 K.

For the reaction shown, drsw the major(s) expected product.​

Answers

Answer:

2

Explanation:

why does a mole of silicon weigh a different amount than a mole of carbon?

Answers

Answer:

[tex]\boxed {\boxed {\sf Different \ amount \ of \ protons, neutrons, \ and \ electrons}}[/tex]

Explanation:

Remember that a mole is equal to Avogadro's number: 6.022*10²³ atoms. Also, remember that an atom is made up of protons, neutrons, and electrons. Each element has a different amount of each.

If an element has more of these particles in 1 atom, then the atomic mass will be greater, ultimately making the molar mass (mass of 1 mole) greater.

Silicon has 14 protons, electrons, and neutrons, making its atomic mass 28.085 amu and its molar mass 28.085 grams. However, carbon only has 6 of each particle, so its atomic mass is smaller at 12.011 amu and molar mass is 12.011 grams.

2 moles KCl + 3 moles O2 → 2moles KCIO3

Calculate the number of particles of each substance based on the number of moles from the balanced equation

Answers

Answer:

KCl ⇒ 1.205x10²⁴ molecules

O₂ ⇒ 1.807x10²⁴ molecules

KClO₃ ⇒ 1.205x10²⁴ molecules

Explanation:

In order to calculate the number of particles from the number of moles, we have to use Avogadro's number, which states the number of particles in one mol:

In 1 mol there are 6.023x10²³ particles (ions, molecules or atoms).

So now we multiply the number of moles of each substance by Avogadro's number:

KCl ⇒ 2 mol * 6.023x10²³ molecules/mol = 1.205x10²⁴ moleculesO₂ ⇒ 3 mol * 6.023x10²³ molecules/mol = 1.807x10²⁴ moleculesKClO₃ ⇒ 2 mol * 6.023x10²³ molecules/mol = 1.205x10²⁴ molecules

What did Dalton compare atoms to?
A. Wood
B. Jacks
C. Marbles
D. Leaves

Answers

Explanation:

the answer is C marbles hope you find it helpful

why pie bond are not perticipate in hybridaization​

Answers

The first bond between two atoms is always a sigma bond and the other bonds are always pi bonds and a hybridized orbital cannot be involved in a pi bond. Thus we need to leave one electron (in case of Carbon double bond) to let the Carbon have the second bond as a pi bond.

How many moles of Ag can be obtained from 2.77 moles Cu using the following
balanced reaction?
2AgNO3
+ Cu
Cu(NO3)2
+ 2Ag

Answers

Answer:

2.77×2= 5.4 mol Ag can be obtained

help me please i beg u

Answers

C because that’s renewable

Answer:

none of the above

Explanation:

Please please help me

Answers

Answer:

I agree with Omar because it depends on what the charge of the object and magnet is. If the magnet is negative and the object is positive, they will pull together. If the magnet is negative and the object is negative then they will pull apart.

Explanation:

Mark the first guy Brainliest he got it right

How is this effect of dissolved
substances important in nature?​

Answers

Explanation:

Water is called the "universal solvent" because it is capable of dissolving more substances than any other liquid. This is important to every living thing on earth. It means that wherever water goes, either through the air, the ground, or through our bodies, it takes along valuable chemicals, minerals, and nutrients.

I need this like NOW
An area on the map where we might see strong winds is:

Question 5 options:

near Maine


near California


near Washington D.C.


near Kansas City

Answers

No clue soryhuyyccvggghjj

Photosynthesis in a plant is an example of which characteristic of living things?

1. Reproduction
2. Response to the environment
3. Growth and development
4. Ability to obtain and use energy

Answers

Answer:

4. Ability to obtain and use energy

What is the percent yield of LiCl if I produced 30.85g LiCl and my theoretical yield was calculated to be 35.40g LiCl?

Answers

Answer:

87.15%

Explanation:

To find percent yield, we can use this simple equation

[tex]\frac{Actual}{Theoretical} *100[/tex]

Where "Actual" is the amount in grams actually collected from the reaction, and "Theoretical" is, well, the theoretical amount that should have been produced.

They give us these values, so to find the percent yield, just plug the numbers in.

[tex]\frac{30.85}{35.40} *100\\\\ =87.15[/tex]

So, the percent yield is 87.15%

An easy trick to remember how to do this is just to divide the smaller number by the bigger number and move the decimal back two places. If you have a percent yield greater than 100%, something is wrong in the reaction.

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