How many moles are in 9.8 L of xenon gas?

Answers

Answer 1

Answer:

              0.4375 moles

Explanation:

At standard temperature and pressure one mole of ideal gas occupies 22.4 L of volume.

Hence we can write following relation,

                    22.4 L volume is occupied by = 1 mole of Gas

So,

              9.8 L of Volume will be occupied by = X mole of Gas

Solving for X,

X = 1 mole × 9.8 L / 22.4 L

X = 0.4375 moles


Related Questions

1 points
A bottle contains a mixture of two gases: Oxygen and Hellum. The partial pressure of O2 is 1.0 atm and the partial pressure of He is 100.0 mmHg. What is the total pressure in the tank? (Volume and temperature are
constant)
101 alm
011 atm
O 101 mmHg
O 1.1 mmHg

Answers

101 mmHg is the total pressure in the tank.

Thus, Dalton's Law of Partial Pressures states that while the volume and temperature of a gaseous mixture are held constant, the total pressure of the mixture is equal to the sum of the partial pressures of its gaseous components.

Nitrogen, oxygen, argon, carbon dioxide, water vapor, and a trace amount of other gases are all present in atmospheric air and pressure.

The increased oxygen content in the chamber can displace the CO bound to hemoglobin faster than air oxygen, hence the hyperbaric chambers are also used to treat carbon monoxide (CO) poisoning. The treatment of scuba divers with the bends is another application for hyperbaric chambers.

Thus, 101 mmHg is the total pressure in the tank.

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A student increases the temperature of a 300 cm³ balloon from 80°C to 140°C.

What will the new volume of the balloon be?

37.3


350 cm3


525 cm3


171.4 cm3

Answers

Assuming that the pressure and the amount of gas in the balloon are held constant, we can use the following formula to calculate the new volume of the balloon:

V2 = V1 x (T2 / T1)

where V1 and T1 are the initial volume and temperature of the balloon, and V2 and T2 are the final volume and temperature of the balloon.

Substituting the given values into the formula, we get:

V2 = 300 cm³ x (413 K / 353 K) = 350 cm³ (rounded to the nearest whole number)

Therefore, the new volume of the balloon will be approximately 350 cm³.

Chad drew a diagram to compare animal cells and bacterial cells.

Which label belongs in the area marked X?

Answers

Explanation:

Don't know wwwwmkbnkkkoo

HELP PLEASE!
Based on your Retention factor values for the 5 dye standards, order the dyes from most polar to least polar.


Red #3 - 0.000
Blue #1 - 0.58
Yellow #5- 0.286
Red #40- 0.046
Blue #2- 0.095

Answers

Answer:

Red #3 is the most polar, and Blue #1 is the least polar.

Explanation:

To order the dyes from most polar to least polar, we need to look at the retention factor values. The lower the retention factor value, the more polar the molecule. So, based on the given values, the order from most polar to least polar would be:

Red #3 - 0.000

Yellow #5 - 0.286

Blue #2 - 0.095

Red #40 - 0.046

Blue #1 - 0.58

How many mL are in 0.365 L?

Answers

Answer:

365 mL

Explanation:

There are 1,000 mL per every 1 L. As such, to convert between the two measurements, you need to multiply the given volume (0.365 L) by the conversion. To allow for the cancellation of units (liters), liters should be in the denominator of the conversion.

1,000 mL = 1 L

 0.365 L            1,000 mL
----------------  x  -----------------  = 365 mL
                               1 L

You pour some hot water into a metal cup. After a minute,
you notice that the handle of the cup has become hot.
Explain, using your knowledge of heat transfer, why the
handle of the cup heats up. How would you design the cup so
that the handle does not heat up?

Answers

Heat transfer is the movement of thermal energy from a temperature that is higher to one that is lower.

Thermoenergy: What is it?

The energy that exists in a system and controls its temperature is known as thermal energy. Heat is thermal energy in motion. Thermodynamics is a comprehensive field of physics that examines how heat and work are transferred between diverse systems.

Energy of what kind is thermal energy?

The energy that results from atoms and molecules moving around within a substance is known as thermal energy, often known as heat. When these particles move more quickly, heat is produced. Geothermal energy is the earth's heat energy. Energy held within motion is referred to as motion energy.

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To prepare 250mL of calcium chloride solution with a molar concentration of 1.20mol/L, what mass of calcium chloride would be required?

Answers

Answer:

33.30 grams of CaCl2 will be required

Explanation:

Given,

Volume of solution, V= 250 ml

Molarity of solution, M= 1.20 mol/L

Molecular mass of CaCL2, S= 40+(35.5 X 2)= 111

We know,

Required mass, W= SVM/1000

Now,

W = (111 X 250 X 1.20)/1000

    = 33300/1000

    = 33.30

Therefore, 33.30 grams of Calcium Chloride will be required.

Please help, I’ll mark your answer as brainliest.

Please help, Ill mark your answer as brainliest.

Answers

Answer:

Radon, Bismuth, Lead, and Thallium

Explanation:

Its from smallest to largest. Hope it helps!

300cm³ of hydrogen diffuses through a porous pot in 50 seconds how long will it take 500 cm cube of oxygen diffuses through the same pot(h=1,o=16)​

Answers

It takes 333.3 s for Oxygen to diffuses

Further explanation  

Graham's law: the rate of effusion of a gas is inversely proportional to the square root of its molar masses or  

the effusion rates of two gases = the square root of the inverse of their molar masses:  

\(\rm \dfrac{r_1}{r_2}=\sqrt{\dfrac{M_2}{M_1} }\)

or  

\(\rm M_1\times r_1^2=M_2\times r_2^2\)

r₁ H₂ = 300 cm³/50 s=6 cm³/s

M₁ H₂ = 2 g/mol

M₂ O₂ = 32 g/mol

\(\tt 2\times 6^2=32\times r_2^2\\\\r_2^2=\dfrac{2\times 6^2}{32}=2.25\rightarrow r_2=1.5\)

the diffusion time of Oxygen :

\(\tt r_2=\dfrac{V}{t}\\\\t=\dfrac{V}{r_2}=\dfrac{500~cm^3}{1.5~cm^3/s}=333.3~s\)

An electron in the first energy level of the electron cloud has
an electron in the third energy level.

Answers

Answer: A LOWER ENERGY

Explanation:

did the test

Answer:

A lower energy!

Explanation:

I know this is not much of an explanation but I took the test i hope you have an amazing day afternoon or night! Hope this helps :3

Plzzzzz help me to solve this question.​

Plzzzzz help me to solve this question.

Answers

Answer:

Explanation:

A1. Chemical indicator, any substance that gives a visible sign, usually by a colour change, of the presence or absence of a threshold concentration of a chemical species, such as an acid or an alkali in a solution. An example is the substance called methyl yellow, which imparts a yellow colour to an alkaline solution.

A2. The reaction of an acid with a base is called a neutralization reaction. The products of this reaction are a salt and water. ... For example, the reaction of hydrochloric acid, HCl, with sodium hydroxide, NaOH, solutions produces a solution of sodium chloride, NaCl, and some additional water molecules

A3. Methyl orange has the property to color alkaline and neutral water yellow. If the water becomes acidic, it turns red immediately.

please helpppppppppp

please helpppppppppp

Answers

Answer:

Environmental factors such as diet, temperature, oxygen levels, humidity, light cycles

And the presence of mutagens can all impact which of an animal's genes are expressed, which ultimately affects the animal's phenotype.

Environmental factors such as diet, temperature, oxygen levels, humidity, light cycles, and the presence of mutagens can all impact which of an animal's genes are expressed, which ultimately affects the animal's phenotype.

a tire will burst if the air inside it reaches a pressure greater than 1.4 x 10^3 kpa. at what temperature will the tire burst if it has a volume of 30L and contains 2.5 mol of air? assume that the air behaves as an ideal gas. assuming that these values are representative, do you need to worry about your car tire bursting from overheating of they are in good condition?

Answers

This extremely high temperature indicates that under normal conditions, you do not need to worry about your car tire bursting from overheating as it is unlikely to reach such extreme temperatures.

To determine the temperature at which the tire will burst, we can 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.

Rearranging the equation to solve for temperature, we have:

T = PV / (nR)

Given that the pressure threshold for bursting is 1.4 x 10^3 kPa, the volume is 30 L, and the number of moles of air is 2.5 mol, we can substitute these values along with the ideal gas constant R = 8.314 J/(mol K) into the equation.

T = (1.4 x 10^3 kPa) * (30 L) / (2.5 mol * 8.314 J/(mol K))

Converting kPa to Pa and L to m^3, and simplifying the equation, we find:

T ≈ 20,993 K

This extremely high temperature indicates that under normal conditions, you do not need to worry about your car tire bursting from overheating as it is unlikely to reach such extreme temperatures.

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How would you draw the ionic compound Beryllium Arsenide lewis structure?

Answers

Answer:

[Na]^+ [Cl]^-

Explanation:

Lets say its sodium, its number of electrons is 11, but when its stable (an ion), it is 10. and chloride, number of electrons is 17, but when its stable (an ion) it is 18. So the lewis structure for that is, remember with the straight brackets (not sure what it's called, but you know what I mean I guess) its this one: [ ]

Sodium will be + because it has more protons (11-10 = +1), and chloride will be - because it gained an electron, so has more electrons than protons (17-18 = -1)

So the lewis structure would be:

[Na]^+  for sodium

and

[Cl]^- for chlorine

Sodium chloride:

[Na]^+ [Cl]^-

Also just to add, only 1 of each atom (Na and Cl) was needed for the bonding, but if let's say example; 2 Cl was needed to bond with sodium, there would be 2 Cl (same) and 1 Na.

what are thetypes of luminous flame

Answers

Types of luminous flames:

1. Yellow Luminous Flame

2. Smoky Luminous Flame

3. Orange Luminous Flame

4. Blue Luminous Flame

Luminous flames are characterized by their visible glow, which is caused by the incomplete combustion of fuel. The presence of soot particles in the flame causes the emission of light. There are different types of luminous flames, which can be classified based on their fuel composition and burning conditions. Here are some common types of luminous flames:

1. Yellow Luminous Flame: This is the most common type of luminous flame, often seen in open fires, candles, and gas stoves. It appears yellow due to the presence of soot particles in the flame. Yellow flames indicate incomplete combustion of hydrocarbon fuels, such as methane, propane, or natural gas. The high carbon content in these fuels leads to the formation of soot, which emits visible light.

2. Smoky Luminous Flame: This type of flame is characterized by a significant amount of black smoke and soot production. It is commonly observed in poorly adjusted or malfunctioning burners or engines. The excessive presence of unburned fuel in the flame results in incomplete combustion and the emission of dark smoke particles.

3. Orange Luminous Flame: An orange flame indicates a higher combustion temperature compared to a yellow flame. It is often seen in more efficient burners or when burning fuels with a higher carbon content, such as oil or diesel. The higher temperature helps in burning more of the carbon particles, reducing the amount of soot and making the flame appear less yellow.

4. Blue Luminous Flame: A blue flame is typically associated with complete combustion. It indicates efficient burning of fuel, resulting in minimal soot formation. Blue flames are commonly observed in gas burners or Bunsen burners. The blue color is a result of the combustion of gases, such as methane, in the presence of sufficient oxygen.

It's important to note that the luminosity of a flame can vary depending on factors such as fuel-air mixture, combustion temperature, and the presence of impurities. Achieving complete combustion and minimizing the production of soot is desirable for efficient and cleaner burning processes.

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what is the PH scale of 0.02m of hydrochloric acid​

Answers

Answer:

Explanation:

The pH of 0.02 M hydrochloric acid is approximately 1.7.

THANKS

IF THE ANSWER IS CORRECT , THEN MARK ME AS BRAINLIST

The pH scale is a measure of the acidity or alkalinity of a solution. It ranges from 0 to 14, where pH 7 is considered neutral, values below 7 are acidic, and values above 7 are alkaline or basic.

To determine the pH of a hydrochloric acid solution, we need to know its concentration. You mentioned a concentration of 0.02 M (molar), which refers to 0.02 moles of hydrochloric acid dissolved in 1 liter of solution.

Hydrochloric acid (HCl) is a strong acid that dissociates completely in water, meaning all HCl molecules release their hydrogen ions (H+) into the solution. Since the concentration is given as 0.02 M, it means there are 0.02 moles of H+ ions in 1 liter of the solution.

To calculate the pH, we can use the formula:

pH = -log[H+]

In this case, [H+] represents the concentration of hydrogen ions in moles per liter. Since hydrochloric acid is a strong acid and it dissociates completely, the concentration of hydrogen ions is equal to the concentration of HCl, which is 0.02 M.

pH = -log(0.02) ≈ 1.70

Therefore, a hydrochloric acid solution with a concentration of 0.02 M would have a pH of approximately 1.70, indicating it is strongly acidic.

Which statement BEST explains why the Moon is visible from the Earth?


1) The Moon reflects light from the Sun.

2) The Moon is always lit up by the Sun for us to see.

3) The Moon reflects light from the Earth.

4) The Moon produces its own light through radiation.

Answers

Answer: The answer is the ''The moon is always lit up by the sun for us to see.''

Explanation: The moon is directly illuminated by the sun.

2 is the correct answer

At a certain temperature this reaction follows first-order kinetics with a rate constant of 0.086 s^-1:

2H3PO4(aq)=P2O5(aq)+3H2O(aq)

Suppose a vessel contains H3PO4 at a concentration of 1.27 M . Calculate how long it takes for the concentration of H3PO4 to decrease to 7.0% of its initial value. You may assume no other reaction is important.

Round your answer to 2 significant digits.

Please, need this ASAP

Answers

It takes 31 s for 1.27 M H₃PO₄ to decrease its concentration to 7.0% of its initial value following first-order kinetics.

What is first-order kinetics?

First-order kinetics occur when a constant proportion of a reactant disappears per unit time.

Let's consider the following first-order kinetics reaction with a rate constant k = 0.086 s⁻¹.

2 H₃PO₄(aq) = P₂O₅(aq) + 3 H₂O(aq)

Given the initial concentation is [H₃PO₄]₀ = 1.27 M, the concentration representing 7.0% of this value is:

[H₃PO₄] = 7.0% × 1.27 M = 0.089 M

We can calculate the time elapsed (t) using the following expression.

ln ([H₃PO₄]/[H₃PO₄]₀) = - k × t

ln (0.089 M/1.27 M) = - 0.086 s⁻¹ × t

t = 31 s

It takes 31 s for 1.27 M H₃PO₄ to decrease its concentration to 7.0% of its initial value following first-order kinetics.

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Hurry hurry plsplslslslslsl?!?!?!?!

Hurry hurry plsplslslslslsl?!?!?!?!

Answers

Answer:

The rest of the food chain will not have as much to eat and will decrease in population and the decomposers will grow in population because the rest of the creatures will die and give the decomposers more food

Explanation:

Answer:

it would increase.

Explanation:

if light is not provided to the producer,the animals rate of death would certainly increase,making the decomposing level faster than normal

Please help some one I’ve been trying this all day and it’s due in 5 min

Please help some one Ive been trying this all day and its due in 5 min

Answers

Answer:

1st box = compound

2nd box = pure compound

i really kinda need some hell right now :)

i really kinda need some hell right now :)

Answers

it’s c 1.59 x 10^4L i’m positive

Find the mass of 2 moles of carbon tetrachloride

Answers

Answer:

The mass of 2 moles of carbon tetrachloride is

307.646 grams

Explanation:

The chemical formula for Carbon tetrachloride is \(\ce{CCl_4}\).  It contains 1 carbon atom and 4 chlorine atoms.

Carbon tetrachloride is formed due to the covalent bond between one carbon atom with four chlorine atoms.

In order to find the mass of 2 moles of \(\ce{CCl_4}\) we need to determine the molar mass.

The molar mass of carbon is 12.011 g/mol.

The molar mass of chlorine is 35.453 g/mol.

As stated before we have 1 carbon atom and 4 chlorine atoms. So the molar mass can be evaluated by

\(\left(1*12.011\right)+\left(35.453*4\right)=153.823\)

The molar mass of \(\ce{CCl_4}\) is 153.823 g/mol.

You can multiply that by 2 to get the mass in grams of 2 moles of carbon tetrachloride.

\(2*153.823 =307.646\)

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Write an equation that shows CoCl2 dissolving in water.

Answers

Answer:

CoCl2 + H2O -> Ca 2+ (aq) + 2Cl - (aq)

Explanation:

aq means dissolved in water

Estimate 16.540 +9.32 by first rounding each number to the nearest tenth.plis i need it​

Answers

Answer:

Explanation:

16.540 + 9.32 by rounding each number to the nearest tenth

so 16.540 the number in the tenth place is 5, if its 5 then you have to round up because 1-4 you need to round down, and 5-9 you would have to round up. if you round 16.540 to the nearest tenth would be 17.

Next, if 9.32 the number in the tenth place is 3, since is 5 below you would have to round down which rounds down to 9

So its 17+9 which your answer would be 26.

A rectangular block weighs 121g. The dimensions of the block are 9.1cm by 5.4cm by 2.3cm. From this data, what us the density of the block in g/mL? Will tge block float or sink in water and how do you know? Show all your work on a piece of paper.​

Answers

The density of the rectangular block is 1.07 g/mL.

From the question, we have the mass of the rectangular block as 121g

The dimensions of the block are given as follows;9.1cm by 5.4cm by 2.3cm

So we have the volume of the block as; 9.1cm × 5.4cm ×  2.3cm = 113 cm^3

Let us recall that; 1 cm^3 = 1 mL, so 113 cm^3 = 113 mL

Having said that, we must also remember that;

Density = Mass/volume

Density = 121g/113 mL

Density = 1.07 g/mL

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How much volume (in L) will 8,326 dg of a substance having a density of 1.47 g/mL occupy?

Answers

Answer:

About 0.566 L.

Explanation:

Let the substance be represented by X.

We want to determine how much volume in L will 8,326 dg (decigrams) of the substance which has a density of 1.47 g/mL occupy.

To convert from 8,326 dg to L, we can first convert from dg to g, g to mL using the density, and mL to L.

Recall that 1 g = 10 dg and 1 L = 1000 mL. We are also given that the density of X is 1.47 g/mL. This yields three ratios:

\(\displaystyle \frac{1 \text{ g X}}{10\text{ dg X}}, \, \frac{1 \text{ mL X}}{1.47 \text{ g X}}, \text{ and } \frac{1 \text{ L X}}{1000\text{ mL X}}\)

Starting with the initial value, multiply:

\(\displaystyle 8326 \text{ dg X} \cdot \frac{1 \text{ g X}}{10 \text{ dg X}} \cdot \frac{1 \text{ mL X}}{1.47 \text{ g X}} \cdot \frac{1 \text{ L X}}{1000 \text{ mL X}} = 0.566 \text{ L X}\)

Hence, 8,326 dg of the substance occupies about 0.566 L.

what is the oxidation number of sulphur Cr2SO4

Answers

should be Chromium(III) sulfate:  Cr₂(SO₄)₃

the oxidation number:

Cr₂(SO₄)₃ = 0

Cr = +3

SO₄ = -2

S + 4.O = -2

S + 4.-2 = -2

S = +6

Where does the stored energy in these cabbage leaves come from ?

Answers

Answer:

The energy in cabbage leaves comes from the light from the sun.

Explanation:

The plant keeps the light (in the leaves) as energy to help make it grow.

How many moles of N2 will be produced if 3.5 moles of Oz react?

Answers

Answer:

2.3 mol of N2

Explanation:

mol N2 = 3.5 mol O2 x. 2 mol N2  

3 mol O2. = 2.3 mol N2.

Part B
? Question
Explain how men and women in general interpreted the
results of the study on gender bias.
Select the correct answer from each drop-down menu.
According to the article, male scientists tended to
regard the study 1)less favorable than 2) about the same as 3) more favorable than
female
scientists. Male scientists also considered the study
to be 1) more important 2) less important
than female scientists
did.

Answers

The male scientists did not so much regard the study due to gender bias.

What are the gender biases of men and women?

Gender biases refer to the systematic ways in which individuals and society tend to favor one gender over the other. These biases can manifest in many different ways, including in the workplace, education, healthcare, and politics.

It's important to note that these biases are not limited to men and women, and they can vary depending on the culture, community, and individual. Also, these biases are not limited to one gender, both men and women can hold biases towards the other gender. Gender biases can have a significant impact on individual's life, limiting their opportunities and opportunities for development.

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Answer:

Less favorably than .

Less important .

Explanation:

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