A sample of ideal gas at room temperature occupies a volume of 27.0 L at a pressure of 242 torr . If the pressure changes to 1210 torr , with no change in the temperature or moles of gas, what is the new volume, V2 ? Express your answer with the appropriate units.

Answers

Answer 1

The New Volume is 5.4L

Boyle's law, also known as the Boyle-Mariotte law or Mariotte's law (particularly in France), is an experimental gas law that explains how a gas's pressure tends to drop as the capacity of the container increases.

A current formulation of Boyle's law is:

If the temperature and amount of gas remain constant in a closed system, the absolute pressure exerted by a given mass of an ideal gas is inversely proportional to the volume it occupies.

Boyle's law can be expressed mathematically as either PV = k or P 1/V (Pressure is inversely proportional to volume) (Pressure multiplied by volume equals some constant k)

P1V1 = P2V2

P1 = 242

V1 = 27

P2 = 1210

V2 = (242*27)/1210

V2 = 5.4L

Hence the New Volume V2 is 4.5L

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Related Questions

What mass of PCl5 will be produced from the given masses of both reactants? Express your answer to three significant figures and include the appropriate units.

Answers

69 gram PCl₅ will be produced from the given masses of both reactants that is 28.0 g of P₄ and 59.0 g of Cl₂.

What is Balanced Chemical Equation ?

The balanced chemical equation is the equation in which the number of atoms on the reactant side is equal to the number of atoms on the product side in an equation.

Now we have to write the balanced equation

P₄ + 10Cl₂ → 4PCl₅

How to calculate the number of moles ?

To calculate the number of moles used the formula

Number of moles = [tex]\frac{\text{Given Mass}}{\text{Molar mass}}[/tex]

Number of moles of P₄ = [tex]\frac{\text{Mass of}\ P_4}{\text{Molar mass of}\ P_4}[/tex]

                                       = [tex]\frac{28\ g}{124\ g/mol}[/tex]

                                       = 0.225 mol

Number of moles of Cl₂ = [tex]\frac{\text{Mass of}\ Cl_2}{\text{Molar mass of}\ Cl_2}[/tex]

                                        = [tex]\frac{51\ g}{71\ g/mol}[/tex]

                                        = 0.831 mol

From the balanced chemical equation we can say that the ratio of P₄ and Cl₂ is 1 : 10.

Ratio of P₄: 0.2260: 1  = 0.2260

Ratio of Cl₂:  0.8310: 10 =  0.08310

Because ratio of Cl₂ ratio smaller than P₄ becomes the limiting reactants

So mole of PCl₅ is based on mole of Cl₂

From the coefficient of reaction:

mol PCl₅: mol Cl₂ = 4: 10

Mole of PCl₅ = [tex]\frac{4}{10} \times 0.8310[/tex]

                     = 0.3324

Molar mass of PCl₅= 208.5

Mass of PCl₅ = mole × molar mass

Mass of PCl₅ = 0.3324 × 208.5

Mass of PCl₅ = 69 gram

Thus from the above conclusion we can say that 69 gram PCl₅ will be produced from the given masses of both reactants that is 28.0 g of P₄ and 59.0 g of Cl₂.

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Disclaimer: The question was given incomplete on the portal. Here is the complete question.

Question: What mass of PCl₅ will be produced from the given masses of both reactants that is 28.0 g of P₄ and 59.0 g of Cl₂ ?

69.3 gram PCl₅ will be produced from the given masses of both the reactants.

Balanced chemical equation is

P₄ + 10Cl₂ → 4PCl₅

Four moles of PCl₅ are produced by combining one mole of P₄ with ten moles of chlorine.

Given mass of P₄ = 28gm

Molecular mass of P₄ = 123.89 g/mole

No. of moles(P₄) = Given mass / Molar mass

                            =28/123.89 =0.226 moles …. (1)

Given mass of Cl₂ = 59gm

Molecular mass of Cl₂ = 70.906 g/mole

No. of moles of Cl₂ = 59/70.906 = 0.832 mole.... (2)

From the chemical equation

Ratio of moles of P₄ and Cl₂ is 1 : 10

Also, from equation (1) & (2)

Ratio of moles of P₄ and Cl₂ is 0.226 : 0.832

If we make the ratio 1 : 1 then,

Ratio of moles of P₄ and Cl₂ becomes 0.226 : 0.0832

As the ratio of moles of Cl₂  is less than moles of P₄ , So Cl₂ becomes the limiting reactant.

Hence,  mole of PCl₅ can be estimated on the basis of moles of Cl₂

From the coefficient of reaction:

mole of  PCl₅ : mole of Cl₂ = 4: 10

10 moles of Cl₂ produce 4 moles of PCl₅

O.832 moles of Cl₂ produce 0.3328 moles of PCl₅

Molecular mass of PCl₅= 208.5 g/mole

Mass of PCl₅ = No. of moles × molar mass

Mass of PCl₅ = 0.3328 × 208.5

Mass of PCl₅ = 69.3 gram

Thus from the above conclusion we can say that 69.3 gram PCl₅ will be produced from the given masses of both reactants that is 28.0 g of P₄ and 59.0 g of Cl₂.

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1. What is the pH of a solution with a [H3O+] concentration of 4.32 x 10-2 M?
Is the solution acidic, basic or neutral?

Answers

Considering the definition of pH, the pH is 1.36 and since it is lower than 7, the solution is acidic.

Definition of pH

pH is the Hydrogen Potential. It is a measure of acidity or alkalinity that indicates the amount of hydrogen ions present in a solution or substance.

Mathematically, pH is calculated as the negative base 10 logarithm of the activity of hydrogen ions:

pH= - log [H⁺]= - log [H₃O⁺]

Numerical scale of pH

The numerical scale that measures the pH of substances includes the numbers from 0 to 14. The pH value 7 corresponds to neutral substances. Acidic substances are those with a pH lower than 7, while basic substances have a pH higher than 7.

pH in this case

In this case, a solution has a [H₃O⁺] concentration of 4.32×10⁻² M. You can replace this value in the definition of pH:

pH= -log (4.32×10⁻² M)

Solving:

pH= 1.36

Finally, the pH is 1.36 and since it is lower than 7, the solution is acidic.

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Which of the following are examples of elements?
a. CO
b. Li
c. KBr
d. Ca

Answers

[tex]\huge\boxed{\textsf{Li and Ca}}[/tex]

An element is a substance that can't be broken down further. Lithium (Li) and calcium (Ca) are examples of elements.

Carbon monoxide (CO) and potassium bromide (KBr) are examples of compounds, which are made up of more than one element put together.

You can check the Periodic Table of Elements to see that Li and Ca are elements and cannot be broken down. The correct answers are B and D.
Have a good day.

Using a chemical equation to find moles of product from moles of reactant

Answers

Answer:

0.86 moles H₂O

Explanation:

To solve this problem, it is important to first determine the balanced chemical equation. The balanced equation is necessary as it will provide the mole-to-mole ratio needed to convert between moles O₂ and moles H₂O.

The unbalanced equation:

C₈H₁₈ (l) + O₂ (g) ---> CO₂ (g) + H₂O (g)

Reactants: 8 carbon, 18 hydrogen, 2 oxygen

Products: 1 carbon, 2 hydrogen, 3 oxygen

As you can see, the equation is not balanced because there are unequal amounts of each element on both sides. Balancing the equation is a matter of guessing-and-checking to see which combination of coefficients work.

The balanced equation:

2 C₈H₁₈ (l) + 25 O₂ (g) ---> 16 CO₂ (g) + 18 H₂O (g)

Reactants: 16 carbon, 36 hydrogen, 50 oxygen

Products: 16 carbon, 36 hydrogen, 50 oxygen

Now that the equation is balanced, we can use the coefficients of O₂ and H₂O to construct our mole-to-mole ratio and perform our conversion. The final answer should have 2 sig figs to match the given value (1.2 moles). The state of matter is most likely not necessary to include in your final answer.

1.2 moles O₂          18 moles H₂O
---------------------  x  -----------------------  =  0.86 moles H₂O
                                25 moles O₂

help!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!1

Answers

The compound that does not conform to the law of constant proportion law is is CO2 whose ratio by mass ought to be 8:3 and not 3:4.

What is the law of constant proportions?

The law of constant proportions portrays the ideas that the composition of a pure sample of a substances has a fixed composition by mass.

Following the law of constant proportion, the compound that does not conform to this law is is CO2 whose ratio by mass ought to be 8:3 and not 3:4.

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Answer:

your cool

Explanation:

4. How many grams of hydrogen is produced from 12.5 g of Mg reacting with hydrochloric acid in this
balanced equation?
Mg + 2HCl → MgCl₂ + H₂

5. How many grams of aluminum phosphate is produced from 7.5 g of lithium phosphate in this balanced
equation?
2Li3PO4 + Al2(SO4)3 → 3Li2SO4 + 2AIPO4

Answers

From the reactions, 1.04 g of H2 and 7.995 g of aluminum phosphate is produced.

What is stoichiometry?

The term stoichiometry has to do with the amount of substances that participates in a reaction.

For reaction 1;

Mg + 2HCl → MgCl₂ + H₂

Number of moles of Mg reacted =  12.5 g/24g/mol = 0.52 moles

If 1 mole of Mg produced 1 mole of H2

0.52 moles produces 0.52 moles of H2

Mass of H2 =  0.52 moles * 2 g/mol = 1.04 g

For reaction 2;

2Li3PO4 + Al2(SO4)3 → 3Li2SO4 + 2AIPO4

Number of moles of lithium phosphate =  7.5 g/116 g/mol = 0.065 moles

2 moles of Li3PO4 produced 2 moles of AIPO4

0.065 moles of  Li3PO4 produced 0.065 moles of AIPO4

Mass of AIPO4  = 0.065 moles  * 123 g/mol = 7.995 g

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Hypothesis:

Before you begin, predict how many compounds you can make from the elements below. Pick one element from the metal list and two from the nonmetal list.

For example, "If I use sodium, hydrogen, and oxygen, then I can make ten new compounds in five minutes."

Now, you try! Make a prediction. Be sure to record your prediction on your lab report.

Metal Nonmetal
• Sodium (Na)

• Calcium (Ca)

• Hydrogen (H)

• Oxygen (O)

• Carbon (C)

• Chlorine (Cl)

Answers

I can form two compounds if I combine calcium, hydrogen and oxygen in five minutes.

What is a compound?

A compound is formed by the combination of atoms. It is important to note that the same atoms can be combined in different ways to produce new compounds.

I can form two compounds if I combine calcium, hydrogen and oxygen in five minutes.

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What is the average of atomic mass of carbon if 98.90% of the atoms are c-12 and 1.100% are c-13 atoms?

Answers

Answer:

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what happens as a result of photoelectric effect

Answers

Electrons are emitted from the surface of a metal in photoelectric effect.

What is the photoelectric effect?

The photoelectric effect is the emission of electron from the surface of a metal when light is shone on the surface..

For electrons to be emitted, the light must have a certain frequency known as threshhold frequency.

Therefore, electrons are emitted from the surface of a metal in photoelectric effect.

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help for number 3 pls

Answers

Answer:

a. name of element is copper it's proton is 29 neutron is 34 and electron is 29

b.name of element is sodium it's proton is 11 neutron is 12 and electron is 11

c.name of element is chlorine it's proton is 17 neutron is 18 and electron is 17

d.name of element is iron it's proton is 26 neutron is 30 and electron is 26

Which ideas held by the ancient Greeks have been at least partially supported by scientific experiments, calculations, and observations made throughout history?

Answers

The ideas held by the ancient Greeks have been at least partially supported by scientific experiments include:

Light is a wave or disturbance that travels through spaces in the air.Light is a substance carrying particles that flow from a light source.

What is Wave-particle duality?

This is a phenomenon in which a quantum entity can be referred to as a wave or a particle.

An example is light which has this feature and has been severally proven through series of experiments such as photoelectric effects etc.

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the texture of ash left behind when cotton and rayon fibre burned

Answers

Natural, Organic & Manmade Fibers. after flame is out there is a soft gray ash!

A buffer solution buffer containing 0.32 M HC2H2O2 and 0.14 M KC2H2O2 has a pH of 4.41. What is the pKa of the acid

Answers

The pKa of the acid is 4.05

Calculation of pKa:

pKa tells about the strength of acidic molecule.

[tex]pK_{a}= -log[K_a][/tex]

Where Ka is the dissociation constant of an acid.

According to Henderson-Hasselbalch equation:

[tex]pH= pK_{a} + log\frac{[salt]}{[acid]} \\[/tex]

pH= 4.41

Concentration of acid= 0.32M

Concentration of salt= 0.14M

Putting the values in the equation,

[tex]4.41= pK_{a} + log\frac{0.32}{0.14}\\\\4.41= pK_{a} + 0.36\\\\pK_{a}= 4.41 - 0.36\\pK_{a}= 4.05[/tex]

The pKa of the acid is 4.05.

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comparison study on kerala and himachal pradesh on water and soil pls write water and soil separately, pls answer fast 20 points u will get

Answers

The main difference between the waters of Kerala and Himachal Pradesh is the presence of water lakes, and ponds in Kerala and the Himalayan Ranges and Rivers in Himachal Pradesh

The main difference between the soil of Kerala and Himachal Pradesh is that there is the presence of mountain soils in Himachal Pradesh, while Kerala has coastal allu-vium, mixed allu-vium, and acid saline, Kari, laterite, red, hill, black cotton, and forest soils.

What is a Comparision?

This refers to the side-by-side view of two or more entities in order to find their differences and similarities.

Hence, we can see that Kerala and Himachal Pradesh are both in India and they are in different regions, which accounts for their differences in water and soil as listed above.

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Traveling at the speed of light - how long would it take, in years, to reach the top of the pile of balls given that the height of the pile is 1.10 *10^14 km. show all calculations. c= 3.00 x 108 m/s , speed of light

Answers

It will take 0.012 year to reach the top of the pile of balls.

Given:

height of the pile = 1.10 x 10¹⁴km = 1.10 x 10¹⁷m

speed of light = 3.00 x 10⁸ m/s

Time = distance / speed

=  1.10 x 10¹⁴m /  3.00 x 10⁸ m/s

= 3.67 x 10⁸ s

= 0.012 year

Therefore, the time taken for the object to reach to top of pile is 0.012 year.

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If you have 6.0-g of lithium and you add it to excess manganese (IV) oxide, how many grams of the product Li2O do you form theoretically.
4Li + MnO2 ----> 2Li2O + Mn

Answers

Taking into account the reaction stoichiometry, 12.857 grams of Li₂O are formed when 6 grams of Li reacts.

Reaction stoichiometry

In first place, the balanced reaction is:

4 Li + MnO₂  → 2 Li₂O + Mn

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

Li: 4 molesMnO₂: 1 mole Li₂O: 2 moles Mn: 1 mole

The molar mass of the compounds is:

Li: 7 g/moleMnO₂: 87 g/moleLi₂O: 30 g/moleMn: 55 g/mole

Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

Li: 4 moles ×7 g/mole= 28 gramsMnO₂: 1 mole ×87 g/mole= 87 gramsLi₂O: 2 moles ×30 g/mole= 60 gramsMn: 1 mole ×55 g/mole= 55 grams

Mass of Li₂O formed

The following rule of three can be applied: if by reaction stoichiometry 28 grams of Li form 60 grams of Li₂O, 6 grams of Li form how much mass of Li₂O?

[tex]mass of Li_{2} O=\frac{6 grams of Lix60 grams of Li_{2} O}{28 grams of Li}[/tex]

mass of Li₂O= 12.857 grams

Finally, 12.857 grams of Li₂O are formed when 6 grams of Li reacts.

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Calculate the energy for the transition of an electron from the n = 2 level to the n = 5 level of a hydrogen atom.

Answers

The energy for the transition:

The energy for the transfer of an electron from the n=2 level to the n=5 level of a hydrogen atom is 4.57 x [tex]10^{-19}[/tex] J

Calculation:

We are aware of the energy levels as n=2 and n=5. So, we may determine the wavelength of the photon released by the electron during this transition using Rydberg's equation:

1/λ = R x (1/[tex]n^{2}[/tex][tex]_{final}[/tex] - 1/[tex]n^{2} _{initial}[/tex])

where,

1/λ = the wavelength of the emitted photon,

R = Rydberg's constant, 1.0974 x [tex]10^{7} m^{-1}[/tex]

[tex]n_{final}[/tex] = the final energy level = 5

[tex]n_{initial}[/tex] = the initial energy level = 2

Now, put the value in the above equation, we get,

1/λ = 1.0974 x [tex]10^{7} m^{-1}[/tex] x ( 1/[tex]5^{2}[/tex] - 1/[tex]2^{2}[/tex] )

1/λ = 1.0974 x [tex]10^{7}[/tex][tex]m^{-1}[/tex] x (-0.21)

1/λ = -0.23 x [tex]10^{7}[/tex][tex]m^{-1}[/tex]

λ = 4.347 x [tex]10^{-7}[/tex]m

Since, E = hc/λ

where,

h = Plank's constant = 6.626 x [tex]10^{-34}[/tex] Js

c = speed of light = 3 x [tex]10^{8}[/tex] m/s

So, the transition energy for your particular transition is,

E = 6.626 x [tex]10^{-34}[/tex] x 3 x [tex]10^{8}[/tex] / (4.347 x [tex]10^{-7}[/tex])

E = 4.57 x [tex]10^{-19}[/tex] J

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how to balance this equation NH4OH+H3PO4=(NH4)3PO4+H2O with explainatio please ​

Answers

Answer:

3 NH4OH (l) + H3PO4 (aq) → (NH4)3PO4 (aq) + 3 H2O (l)

Explanation:

This is an acid-base reaction (neutralization): NH4OH is a base, H3PO4 is an acid

Answer:

To balance the equation place a coefficient 3 in front of NH4OH in the reactants and another 3 in front of H2O.

3 NH4OH (l) + H3PO4 (aq) → (NH4)3PO4 (aq) + 3 H2O (l)

Explanation:

To balance equations you are only allowed to change coefficients and not subscripts. You need to make sure you have the same amount of each element on both sides of the equation, sketching a table may help.

If metals are deposited in streambeds ________ would probably be used. spoil bank mining open-pit mining placer mining strip mining underground mining

Answers

If metals are deposited in streambeds placer mining would probably be used. spoil bank mining open-pit mining placer mining strip mining underground mining

Placer miningA group of mining techniques known as placer mining make use of water to remove valuable minerals from the surrounding dirt. The first placer deposits were literally just flecks of gold in a slurry of sediment that could be retrieved by expert miners using only a dinner plate-sized pan and river water.In comparison to lode mining ore, small placers are also more simple to mine, and the ore often requires less processing.Gold's high density leads it to descend from running water more quickly than the lighter siliceous elements with which it is found, and placer mining takes use of this fact. Although the fundamentals of placer mining have not changed since its inception, techniques have significantly advanced.

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H2so4+na oh= naso4+h20, if 30.0g of h2so4 reacts with sodium hydroxide what mass of water is produced

Answers

The mass of water produced is 5.58g.

The given reaction is a neutralization reaction. Since both acid and base are strong, so, they dissociate completely to form salt and water. Therefore the number of moles of acid, base, salt, and water are equivalent.

Step-1: Calculate the number of moles of [tex]H_{2}SO_{4}[/tex].

Given the mass of [tex]H_2SO_4[/tex] is 30g.

Molar mass of [tex]H_2SO_4[/tex] is 98g/mole.

Using the formula,

Number of moles= Mass/Molarmass

=30/98

=0.31 mole

Step-2: Mass of water

The molar mass of [tex]H_2O[/tex] is 18g.

The number of moles of [tex]H_2O[/tex] formed is 0.31 mole.

Using the formula,

Mass = Number of moles x Molar mass

Mass of [tex]H_2O[/tex] = 0.31 mole x 18g/ mole

=5.58g

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What is the half-life of a radioisotope if it decays to 25% of its original activity in 7 yr?

Answers

Answer:

3.5 yrs

Explanation:

If a sample has decayed to 25%, this means 2 half-lives have passed. We are given this is equal to 7 yrs, and it follows that one half life is 3.5 yrs.

What is the [H+] if the pH of a
solution is 7.60?
[H+] = [? ] × 10¹2]

Answers

Answer:

0.000000025

Explanation:

[H+]=10^-pH

Answer:

2.5 10^-8

Explanation:

what is the reaction for C + H₂ → CH4

Answers

Answer:

synthesis/combination

Explanation:

There are 5 main types of reactions.

combination/synthesis, decomposition, single-replacement, double-replacement, and combustion

synthesis/combination -  A+B → AB

Decomposition - AB A+B

single- replacement - A + BC AC + B

double replacement - AB + CD → AD + CB

combustion - example - C3H8(g) + 5O2(g) → 3CO2(g) + 4H2O(g)

If you wanted to balance this

the answer would be [tex]C + 2H_{2}[/tex] → [tex]CH_{4}[/tex]

What is the half-life of a compound if 42% of a given sample of the compound decomposes in 60 minutes

Answers

The half-life of a compound is 76 years for 42% of a given sample of the compound decomposes in 60 minutes.

What is the expression for rate law for first order kinetics?

The rate law for first order kinetics is

k = [tex]\frac{2.303}{t}log\frac{a}{a-x}[/tex]

Where

k - rate constant

t - time passed by the sample

a - initial amount of the reactant

a-x - amount left after the decay process

What is expression for half-life of the compound?

The expression for the half-life of the compound is

[tex]t_{\frac{1}{2} }=\frac{0.693}{k}[/tex]

Where k is the rate constant

Calculation for the given compound:

It is given that

t = 60 minutes

a = 100 g

a-x = 100 g - 42 g = 58 g

(Since it is given that 42% of the given compound decomposes)

Then,

k = [tex]\frac{2.303}{60}log\frac{100}{58}[/tex]

  = 9.08 × [tex]10^{-3}[/tex] [tex]years^{-1}[/tex]

Then, the half-life of the compound is

[tex]t_{\frac{1}{2} }=\frac{0.693}{k}[/tex]

    = [tex]\frac{0.693}{9.08*10^{-3} }[/tex]

    = 76.3 years ≅ 76 years

Therefore, the half-life of the given compound is 76 years.

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PLEASE HELP ME ANSWER THESE QUESTIONS!


1.) Calculate the number of moles (n) in 14.0 g of sodium hydroxide
(NaOH)

2.) Calculate the number of moles (n) in 0.05 g of sulfuric acid
(H2SO4)

3.) What is the mass of 4.75 moles of lead atoms

4.) What is the mass 0.04 mol of hydrochloric acid (HCl)

5.) How many atoms are there in 5.00 mol of silver

6.) How many atoms are there in 3 X 10 - 10 mol of copper



Answers

Answer:

1. 0.35 moles NaOH

2. [tex]5.10x10^{-4}[/tex] moles [tex]H_2SO_4[/tex]

3. 505.4 g Pb

4. 1.46 g HCl (if that is wrong it's 1.5 g HCl due to sig figs)

5. [tex]3.01x10^{23}[/tex] atoms of Ag

6. [tex]2x10^{-10}[/tex] atoms of Cu

Explanation:

1. The mass of NaOH is 40g. 22.99(Na)+16(O)+1.01(H)=40 g

14 g NaOH *[tex]\frac{1 mol NaOH}{40 g NaOH}[/tex] = 0.35 moles of NaOH

2. Mass of [tex]H_{2} SO_{4} = 2(1.01)+32.06+4(16) = 98.08[/tex]

0.05 g [tex]H_2SO_4[/tex] ×[tex]\frac{1 mol H_2SO_4}{98.08g H_2SO_4} = 5.10 x10^{-4}[/tex]

3. mass of Pb = 106.4 g

4.75 moles Pb×[tex]\frac{106.4 g Pb}{1 mol Pb} =505.4 g Pb[/tex]

4. mass of HCl = 1.01 +35.45 = 36.36 g

0.04 mol HCl x [tex]\frac{36.46 g HCl}{1 mol HCl} = 1.456 = 1.5[/tex]

5. 5.00 mol Ag x[tex]\frac{6.022x10^{23} atoms }{1mol Ag} = 3.01x10^{24} atoms[/tex]

6. [tex]3x10^{-10} moles[/tex] Cu x[tex]\frac{6.022x10^{23} atoms}{1 mol Cu} = 1.8668x10^{14}= 2x10^{14}[/tex] atoms of Cu

A scientist is measuring the pressure that is exerted by each of the following gases in the atmosphere: carbon
dioxide, oxygen, and nitrogen. Which term most likely describes what she is measuring?

-final pressure
-atmospheric pressure
-combined pressure
-partial pressure

Answers

The term that describes what she is measuring is called partial pressure.

What is the Dalton law of partial pressure ?

From the Dalton's law of partial pressure, the total pressure of a gas is regarded as the sum of the partial pressures of all the gases in the mixture.

As such, each of the gases; carbon dioxide, oxygen, and nitrogen all possess partial pressures thus the term that describes what she is measuring is called partial pressure.

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The group of atoms that is responsible for the characteristic properties of a family of organic compounds is called a/an ________ group. Multiple Choice hydrocarbon functional ether enzyme polyatomic ion

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The group of atoms that is responsible for the characteristic properties of a family of organic compounds is called a functional group.

Functional groups are groups of one or extra atoms with exclusive chemical homes regardless of what's connected to them. The atoms of practical agencies are certain via covalent bonds with one another and with the relaxation of the molecule.

Functional groups include:

hydroxyl, methyl, carbonyl, carboxyl, amino, phosphate, sulfhydryl.

An atom or institution of atoms that replaces hydrogen in a natural compound that defines the shape of a family of compounds and determines the properties of the family.

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The pressure of a monatomic gas is 233 kPa. The gas is compressed from an initial volume of 0.76 m3 to a final volume of 0.48 m3 while maintaining constant pressure. How much heat flows into or out of the gas

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163.1 KJ of heat flows into the gas.

As the pressure is constant, then it is a isobaric process.

In this process , Heat flows is [tex]Q=nC_{p}[/tex]ΔT

Work done is represented by W = PΔV= nRΔT

γ for monoatomic gas is [tex]\frac{5}{3}[/tex]

So, their ratio is

[tex]\frac{W}{Q}[/tex] = [tex]\frac{R}{C_{P} }[/tex] =  R/γR/γ-1 = [tex]\frac{2}{5}[/tex] ….. (1)

Hence, Ratio of W and Q is 2/5

Now given,

Pressure = 233 kPa = 233000 Pa

ΔV= 0.76-0.48 = 0.28[tex]m^{3}[/tex]

So, W = PΔV = 233000 × 0.28 = 65240J

From equation (1)

[tex]\frac{65240}{Q} =\frac{2}{5}[/tex]

Q = 163100J or 163.1 KJ

As the value of Q is positive so, 163.1 KJ of heat flows into the gas.

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In the laboratory, a student adds 55.7 mL of water to 17.6 mL of a 0.718 M hydrobromic acid solution. What is the concentration of the diluted solution

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Answer: The concentration of the diluted solution is 0.17M.

Explanation:

The equation for diluted solutions is shown as: [tex]M_{s} V_{s} =M_{d} V_{d}[/tex].

~M= Molarity (labeled as M)

~V=Volume (in L)

~s= stock solution (what you started with)

~d= diluted solution (what you finish with)

Now that we have that down, let's plug in our data!

[tex]0.718M*17.6mL=M_{d} *73.3mL[/tex]

(I put [tex]V_{d}[/tex] as 73.3 because you are adding 55.7mL to 17.6mL, meaning that you have to add that to get [tex]V_{d}[/tex]. In other words, [tex]17.6mL+55.7mL=73.3mL[/tex])

There is a little problem here though. The volume is not in liters. But no worries, we can just convert it by dividing it by 1000.

[tex]17.6mL/1000=0.0176L[/tex]     [tex]73.3mL/1000=0.0733L[/tex]

Now that we have both volumes in liters, we can plug them in correctly.

[tex]0.178M*0.0176L=M_{d} *0.0733L[/tex]

[tex]M_{d} =\frac{0.718M*0.0176L}{0.0733L}[/tex]     [tex]M_{d} =0.17M[/tex]

With all of this shown, we now know that the concentration of the diluted solution is 0.17M.

I hope this helps! Pls mark brainliest!! :)

What is the frequency of electromagnetic radiation needed to excite an electron in a hydrogen atom from the n = 3 orbit to the n = 6 orbit? How much energy does 800. millimoles of these photons have?

Answers

The energy of 800 milimoles of photons is 1.38 * 10^-19 J.

What is excitation of electrons?

We know that an electron can move from a lower to higher energy level according to the formula;

1/λ = RH(1/ni^2 - 1/nf^2)

RH = 1.097 * 10^7m-1

ni = 3

nf = 6

Thus;

1/λ = 1.097 * 10^7(1/3^2 - 1/6^2)

1/λ = 1.097 * 10^7(1/9 - 1/36)

1/λ = 1.097 * 10^7(0.11 - 0.03)

λ =1.14 * 10^-6 m

v = λf

f = v/λ

f = 3 * 10^8 m/s/1.14 * 10^-6 m

f = 2.6 * 10^14 Hz

Now

E = hf

E= 6.63 * 10^-34 * 2.6 * 10^14 Hz

E = 1.72 * 10^-19 J

Now;

1 mole of photons has 1.72 * 10^-19 J of energy

800 * 10^-3 moles of photons has 800 * 10^-3 moles * 1.72 * 10^-19 J/ 1 mole

= 1.38 * 10^-19 J

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