Beginning with commercial grade hydrochloric acid, 1.00 • 10^2 mL of a 12.4 M HCl is added to water to bring the total volume if the solution to 0.820L. What is the concentration of this new solution?

Answers

Answer 1
Concentration=mass/volume.

This should help.

Related Questions

Three metal spheres are placed next to each other as shown in the picture. A has two times the mass of B. C has one-third the mass of A. The distance between A and C is half that between A and B. Given these conditions, which statement is true?

Answers

You didn’t list the statements.

Answer:

The answer is C. I just had this question.

Explanation:

Nitrogen and oxygen are _____ gases in the atmoshere.

Trace
Variable
Primary
Rare

Answers

Nitrogen and oxygen are primary gases in the atmosphere.  

Trace  

Variable  

Primary  

Rare

They are he Primary gasses in the atmosphere with the percentages being 78% nitrogen, 21% oxygen

hope this has helped

Explain why the temperature of ocean water will vary with latitude and depth.

Answers

The latitude changes the climate, so if the ocean water is in the Antarctic Ocean, it will most likely be cold. The depth of the ocean water matters because it determines the amount of sunlight that the water receives therefore heating it.

Calculate the molarity of a solution in which 212.5g of NaNO3 are contained in 3.0 liters of solution.

Answers

Molarity's formula is: moles solute/liters solution.

In this question, we are given grams of solute so we have to convert that to moles.

NaNO3 has a molar mass of 84.9947g/mol. Here we begin with the given 212.5g and multiplying it by 1mol/84.9947g because the grams have to cancel out to give moles.

[tex](212.5 grams NaNO3)/(\frac{1 mole NaNO3}{84.9947 grams NaNO3} ) =2.5 moles NaNO3[/tex]

Now that we have moles of solute, we just plug it into the formula.

2.5 mols NaNO3/3L solution=0.8333 M of solution

The molarity of the solution containing 212.5 g of NaNO₃ in 3 L of solution is 0.83 M

What is molarity?

This is defined as the mole of solute per unit litre of solution. Mathematically, it can be expressed as:

Molarity = mole / Volume

How to determine the mole of NaNO₃ Mass of NaNO₃ = 212.5 g Molar mass of NaNO₃ = 23 + 14 + (3×16) = 85 g/mol Mole of NaNO₃ =?

Mole = mass / molar mass

Mole of NaNO₃ = 212.5 / 85

Mole of NaNO₃ = 2.5 mole

How to determine the molarity Mole of NaNO₃ = 2.5 mole Volume = 3 L Molarity =?

Molarity = mole / Volume

Molarity = 2.5 / 3

Molarity = 0.83 M

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hat is the % of each element in the compound Mg3(PO4)2?

Answers

1. First calculate the total molar mass of the entire compound.

Mg = 3 x 24.31 = 72.93 g/mol

P = 2 x 30.97 = 61.94 g/mol

O = 8 x 16.00 = 128.00 g/mol

* Add them up;

72.93 + 61.94 + 128.00 = 262.87 g/mol

2. Take the individual masses of each element that you calculated, divide them by the total mass (262.87 g/mol) and then multiply by 100.

Mg = 72.93/262.87 = 0.2774 x 100 = 27.74%

P = 61.94/262.87 = 0.2356 x 100 = 23.56%

O = 128.00/262.87 = .4870 x 100 = 48.70%

3. All of the percentages should add up to equal 100%.

* Hope this helps

1. Firstly we have to calculate the total molar mass of the entire compound.

Then Mg = 3 x 24.31 = 72.93 g/molThen P = 2 x 30.97 = 61.94 g/molAfter that O = 8 x 16.00 = 128.00 g/molThen Add them up;Also that when 72.93 + 61.94 + 128.00 = 262.87 g/mol

2. Now we have to Take the individual masses of each element that you calculated, then divide them by the total mass (262.87 g/mol), and also then multiply by 100.

After that Mg = 72.93/262.87 = 0.2774 x 100 = 27.74%Then P = 61.94/262.87 = 0.2356 x 100 = 23.56%Then O = 128.00/262.87 = .4870 x 100 = 48.70%

3. Thus All of the percentages should add up to equal 100%.

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Calculate the number of grams of 4.0 % (m/m) NaCl so Luton that contains 7.00 g of NaCl?

Answers

Answer:

0.00479099293329 g

Explanation:

Elements in the same group have _____.

a. the same number of electron shells
b. the same number of protons
c. similar chemical properties
d. the same number of isotopes

Answers

Similar chemical properties

(OPTION C)

Answer:

similar chemical properties

Explanation:

i can confirm his answer

What is the Bronsted-Lowry definition of an acid?

Answers

What I found on google made it seem like the third one would be the correct answe
The Bronsted-Lowry definition of an acid is a compound that donates an acid.

Use the conservation of mass to explain why a rusty nail weighs more than the original nail.

Answers

Answer and Explanation;Rust is iron oxide, a molecule consisting of iron and oxygen. The mass of the iron in the rust molecules comes from the original nail, but the mass of the oxygen has come from the air. When rust forms on iron, the mass of the iron object is increased by the mass of the oxygen that has combined with some of the iron.Rusty iron weighs more because the iron reacts with oxygen in the air to form oxides which are solids which appear to grow on the iron as more oxygen comes along.

what is burning in chemistry. ​

Answers

Fire is burning, which is combustion, and combustion is a type of oxidation reaction. Oxidation means combined chemically with oxygen . Oxidation is an exothermic reaction, meaning it gives releases heat energy.

for a is burning. which is combustion and that is a type of oxidation means to combine chemically with oxygen.

I don’t know it A is correct please tell me the right answer

Answers

I do believe the answer is A. Hope this helps.

I think A would be the correct answer

how human activity can affect the carbon cycle

Answers

Answer:

Human activities have a tremendous impact on the carbon cycle. Burning fossil fuels, changing land use, and using limestone to make concrete all transfer significant quantities of carbon into the atmosphere. This extra carbon dioxide is lowering the ocean's pH, through a process called ocean acidification.

Significant amounts of carbon are released into the atmosphere as a result of the burning of fossil fuels, changing how land is used, and the production of concrete with limestone.

What is carbon cycle?

The flow of carbon on earth in its elemental and mixed phases is represented by the carbon cycle. The elemental kinds of carbon are diamond and graphite, and when they are mixed, they are found as carbonates throughout minerals as well as carbon dioxide gases throughout the atmosphere. Carbon is returned to the atmosphere as plants and animals perish and are degraded.

Plants use carbon from the atmosphere to produce photosynthesis. Animals eat these plants, which causes carbon to bioaccumulate in their bodies. Significant amounts of carbon are released into the atmosphere as a result of the burning of fossil fuels, changing how land is used, and the production of concrete with limestone. The carbon cycle is greatly impacted by human activity.

Therefore, significant amounts of carbon are released into the atmosphere as a result of the burning of fossil fuels, changing how land is used, and the production of concrete with limestone.

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Which of the following is a subsurface event that takes place during the rock cycle? (6 points)


Cementing

Erosion

Melting

Weathering

Answers

Answer: the answer is letter c. melting

Answer:

C melting

Explanation: we can eliminate 2 right off the bat eroison and weathering you can eliminate them because their above ground and subsurface means below the surface. You eliminate cementing because it wants in the deeper section of the earth.

Which is an example of a pure substance? A. coffee B. helium C. vinegar D. trail mix

Answers

B. Helium

It has only He atoms

What is the sum of protons and neutrons in an atomic nucleus?

A: Mass Number
B: Charge Number
C: Balance Number
D: Atomic Number

Answers

It is the atomic number. So it is D.

What is the percent concentration of a sodium fluoride solution made by dissolving 65.4 grams of sodium fluoride in 125.1 grams of water?

Answers

Answer:

34.33 %.

Explanation:

To calculate the mass percent or weight percent of a solution, you must divide the mass of the solute by the mass of the solution (both the solute and the solvent together) and then multiply by 100 to change it into percent.

W% = [(W of solute NaF)/(W of solution)] x 100.

W of solute NaF = 65.4 g.

W of solution = W of solute NaF + W of water = 65.4 g + 125.1 g = 190.5 g.

∴ W% = [(W of solute NaF)/(W of solution)] x 100 = [(65.4 g)/(190.5 g)] x 100 = 34.33 %.

How many grams of N2 are required to make 75 grams of NH3?

Answers

Answer:

2.138 I think

Explanation:

N2 + 3H2 -> 2NH3

This means that 3 moles of H2 gives 2 moles of NH3

Lets convert 12.12 g of NH3 into moles.

The molecular weight of NH3 is 17 g/mol

So 12.12 g is 0.713 moles

If 2 NH3 comes from 3 moles of H2

1 mole comes from 1.5 moles of H2

So 0.713 moles of NH3 comes from 1.5 x 0.713 moles of H2 =1.069 moles of H2

1 mole of H2 weights 2g

So 1.069 moles of H2 weighs 2.138 g

A 200 g sample of water with a temperature of 32◦C is added to 50 g water at 55◦C in an insulated container. What is the final temperature after thermal equilibrium is reached? The specific heat of water in the liquid state is 4.18 J/g◦C, in the solid state is 2.09 J/g◦C, and in the gaseous state is 2.03 J/g◦C. The heat of fusion is 334 J/g and the heat of vaporization is 2260 J/g. 1. 49.2◦C 2. 36.6◦C 3. 52.6◦C 4. 38.4◦C 5. 50.4◦C 6. 43.5◦C 7. 34.1◦C

Answers

Final answer:

The final temperature after thermal equilibrium is reached is approximately 46.6°C.

Explanation:

To find the final temperature after thermal equilibrium is reached, we can use the principle of conservation of energy. The heat gained by the cool water is equal to the heat lost by the hot water.

Let's denote the final temperature as T. The heat gained by the cool water can be calculated using the equation q = m * c * ΔT, where q is the heat gained, m is the mass of the cool water, c is the specific heat of water, and ΔT is the change in temperature. The heat lost by the hot water can be calculated using the same equation. Setting the two equations equal to each other and solving for T will give us the final temperature.

Using the given values, we can calculate:

qcool = (200 g) * (4.18 J/g°C) * (T - 32°C)

qhot = (50 g) * (4.18 J/g°C) * (55°C - T)

Setting qcool equal to qhot:

(200 g) * (4.18 J/g°C) * (T - 32°C) = (50 g) * (4.18 J/g°C) * (55°C - T)

Simplifying and solving for T:

800(T - 32°C) = 50(55°C - T)

T = 46.6°C

Therefore, the final temperature after thermal equilibrium is reached is approximately 46.6°C.

An SCl2 molecule has ______(polar or nonpolar) bonds and a _________(bent, linear, tetrahedral, trigonal planar, trigonal pyramidal) molecular shape. As a result, an SCl2 molecule is ______.(polar or nonpolar)

Answers

Answer:

Polar , bent , polar

An SCl2 molecule has polar bonds and a bent molecular shape. As a result, an SCl2 molecule is polar.

Explanation:

The S-Cl bond in SCl2  is polar because the difference in electronegativity between the two atoms is  greater than 0.5. SCl2 has a ‘bent’ molecular geometry, this may be explained by the presence of  lone pairs of electrons. Polarity of a molecule depends on the polarity of the bonds and the shape of  the molecule. Therefore since the molecule of SCl2 has polar bonds and its structure is bent, then it is a polar molecule.

The correct blanks for 1, 2 and 3 are polar bonds, bent molecular shape and polar respectively.

An [tex]SCl_2[/tex] molecule has 1. polar bonds and a 2. bent molecular shape. As a result, an SCl2 molecule is 3. polar. In [tex]SCl_2[/tex], the sulfur (S) and chlorine (Cl) atoms form double bonds. Because chlorine is more electronegative than sulfur, resulting in an unequal distribution of electron density, the S–Cl bonds in[tex]SCl_2[/tex]  are polar. [tex]SCl_2[/tex] has a bent or V-shaped molecular shape. On sulfur, which has a lone pair of electrons and two bond pairs, the repulsion between these electron pairs leads the molecule to a bent shape.

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Carbon atoms form ____ (2,3,4) bonds with other atoms by _____ (gaining, losing, sharing) valence electrons in order to attain a stable configuration

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Answer : Carbon atoms form 4 bonds with other atoms by sharing valence electrons in order to attain a stable configuration.

Explanation :

The given element is, Carbon

The element carbon with symbol (C) having the atomic number 6 and the atomic mass 12.

The number of electrons in carbon atom is, 6

The electronic configuration of carbon will be, [tex]1s^22s^22p^2[/tex]

The number of valence electrons in carbon atom = 2 + 2 = 4

That means carbon atom have the ability to form four bonds with the other atoms by the sharing of four valence electrons in order to achieve a stable electronic configuration.

For example : Carbon atom share their four valence electrons with four hydrogen atoms that has one valence electron to form a methane molecule, [tex]CH_4[/tex] and carbon and hydrogen are bonded by the covalent bond.

Carbon atoms form 4 bonds with other atoms by sharing valence electrons in order to attain a stable configuration.

Each element has a given "electronic configuration", in its ground state, and elements with similar external electronic configurations behave similarly in many respects.

The main characteristic of the carbon atom is concatenation, that is, the ability to bond or unite with itself, forming large chains or very stable rings.

The carbon atom forms four covalent bonds, sharing its four valence bonds, they can be single, double or triple.

Carbon when tetrahedrally linked by four simple bonds to four other carbons or hydrogens, does not have unshared pairs of electrons and therefore is not susceptible to attack by electron deficient atoms.

Therefore, we can conclude that carbon atoms form 4 bonds with other atoms by sharing valence electrons in order to attain a stable configuration.

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HELP When 400 J of heat is added to 5.6 g of olive oil at 23*C, the temperature increases to 87*C. What is the specific heat of the olive oil? (Show all work including the equation you use to solve). (3 points).

Answers

Q=mc*temperature change

400=5.6/1000*c*(87-23)

c=1160.07J/kg/k

Using enthalpies of formation, calculate H.

Answers

ΔH° = -851.5 kJ/mol given that

[tex]\begin{array}{cc}\textbf{Species}&{\bf {\Delta H_f\textdegree{}}}\\ \text{Fe}_2\text{O}_3\;(s) & -824.2\;\text{kJ}\cdot\text{mol}^{-1}\\\text{Al}_2\text{O}_3\;(s) & -1675.7\;\text{kJ}\cdot\text{mol}^{-1}\end{array}[/tex]

(Source: Chemistry Libretexts.)

Explanation

Refer to a thermodynamic data table for the standard enthalpy of formation for each species.

Don't be alerted if the data for Al (s) and Fe (s) are missing. Why?

The standard enthalpy of formation of a substance measures the ΔH required to form each mole of it from the most stable allotrope of its elements under STP. Both Al (s) and Fe (s) are already the most stable form of their element under STP (note that the state symbol matters.) There's no need to form them again.

As a result, [tex]\Delta H_f\textdegree{} = 0[/tex] for both Al (s) and Fe (s).

[tex]\displaystyle \Delta H_{\text{rxn}}\textdegree{} = \text{Sum of }\Delta H\text{ for all }\textbf{Product} - \text{Sum of }\Delta H\text{ for all }\textbf{Reactant}}\\\phantom{\Delta H_{\text{rxn}}\textdegree{}} = (1\times \Delta H_f\textdegree{}(\text{Al}_2\text{O}_3\;(s)) + 1\times \Delta H_f\textdegree{}(\text{Al}\;(s)) \\ \phantom{\Delta H_{\text{rxn}}\textdegree{}=}-(1\times \Delta H_f\textdegree{}(\text{Fe}_2\text{O}_3\;(s)) + 1\times\Delta H_f\textdegree{}(\text{Fe}\;(s))[/tex]

[tex]\Delta H_{\text{rxn}}\textdegree{}} = (1 \times (-1675.7)) - (1\times(-824.2)) = -851.5\;\text{kJ}\cdot\text{mol}^{-1}[/tex].

The number "1" here emphasizes that in case there are more than one mole of any species in one mole of the reaction, it will be necessary to multiply the [tex]\Delta H_f\textdegree{}[/tex] of that species with its coefficient in the equation.

Consider the following equilibrium reaction having gaseous reactants and products. 4HCl + O2 ⇌ 2H2O + Cl2 Which of the following would result from increasing the volume of oxygen?

Answers

Answer;

B.The rate of forward reaction increases.

Explanation;Le Chatelier's principle states that changing a factor such as concentration, temperature, or pressure of a reaction at equilibrium will cause the reaction to shift in the direction that counteracts the effect of that change.Therefore, when reactants are added to a reaction at equilibrium shift when more reactants are added then the reaction shifts to the right to make more products.

Answer: B) The rate of forward reaction increases.

what effect does a decrease in temperature have on the overall rate of a chemical reaction??


A decreased in temperature decreases ( BLANK A). The reaction rate will ( BLANK B).


choices for Blank A:
A. the activation energy of the reaction.
B. the number of collisions between molecules.
C. the number of products in the mixture.

CHOICES FOR BLANK B:
A. decrease
B. increase
C. remain constant

Answers

Change in temperature affects the rate of reaction since it causes a change in the number of collisions per unit time.  These collisions cause the breaking of bonds and formation of new ones  giving out new products. An increase in temperature increases the rate of collisions hence increasing the rate of reaction while a decrease in temperature leads to a decrease in the rate of reaction due to the decreased number of collisions per unit time. thus the correct choice for blank A is: B. the number of collisions between molecules and for blank B: decrease.

Answer:

A decrease in temperature changes "the number of collisions between molecules. The reaction rate will decrease.

Blank A: "the number of collisions between molecules.

Blank B: decrease.

An increase in temperature causes a rise in the energy levels of the molecules involved in the reaction, so the rate of the reaction increases. Similarly, the rate of reaction will decrease with a decrease in temperature.

Which of the following is a possible set of quantum numbers for an electron?

(1, 1, 0, +½)
(2, 1, 2, +½)
(3, 2, 0, -½)
(3, -2, 1, -½)

Answers

answer is one first one for one electron.

A salt is best described as a compound that is formed from the reaction between

Answers

A salt is best described as a compound that is formed from the reaction between an acid and a base.

Answer:

Reaction between acid and base is called as neutralization and forms salt and water.

Example, Sodium hydroxide reacts with HCl gives salt NaCl and water as below

NaOH + HCl------.> NaCl + H2O

you are holding a bowling ball with a mass of 6 kg at a height of 1 meter. How much gravitational potential energy does the bowling ball have?

Answers

The formula for GPE is PE=mgh, where “m” is the mass of the object, “g” is the acceleration due to gravity (~9.8 m/s^2 on Earth’s surface), and “h” is the height of the object from the ground. Therefore,

PE=mgh

PE=(6 kg)(9.8 m/s^2)(1 m)

PE=58.8 kg•m^2/s^2 or 58.8 Newtons

The GPE of the bowling ball under these conditions would be about 59 Newtons.

Hope this helps!

Which of the following statements is correct in regards to density?
A-Pressure is directly proportional to density.
B-Pressure is inversely proportional to density.
C-Temperature is directly proportional to density.
D-Temperature and pressure do not affect density.

Answers

A is the answer i dont really know but i think is right

Answer : The correct option is, (A) Pressure is directly proportional to density.

Explanation :

Density : It is defined as the mass contained per unit volume.

Formula used for density :

[tex]Density=\frac{Mass}{Volume}[/tex]

From this we conclude that, the density depends on mass and volume of substance.

The density is directly proportional to the mass of substance and inversely proportional to the volume of substance.

[tex]Density\propto \frac{1}{Volume}[/tex]

And as we know that, the volume is also depends on pressure and temperature. That means,

Volume is directly proportional to the temperature and inversely proportional to the pressure.

[tex]Volume\propto Temperature\\\\Volume\propto \frac{1}{Pressure}[/tex]

From this we conclude that,

The relation between the density, volume and pressure is:

[tex]Density\propto \frac{1}{Volume}\propto Pressure[/tex]

The relation between the density, volume and temperature is:

[tex]Density\propto \frac{1}{Volume}\propto \frac{1}{Temperature}[/tex]

From the given option, only option A is correct option. While the other options are incorrect.

Hence, the correct option is A.

what is the molarity of a solution that contains 0.400 mol HCI in 9.79 L solutions ​

Answers

Molarity's formula is known as: Molarity(M)=moles of solute/liters solution.

In this case we are already given moles and liters so you just have to plug the numbers into the equation.

0.400 mol HCL/9.79L solution=0.040858M

If you were to use scientific notation, the answer will be: 4.1*10^-2, but otherwise, you can just use the decimals above and round appropriately as you see fit.

Final answer:

To calculate the molarity of a solution with 0.400 mol of HCl in 9.79 L, divide the moles by the volume, resulting in a molarity of 0.0409 M.

Explanation:

The question asks how to calculate the molarity of a hydrochloric acid (HCl) solution. Given that the solution contains 0.400 mol of HCl and has a total volume of 9.79 liters, we can use the definition of molarity. Molarity is defined as the number of moles of solute (in this case, HCl) divided by the volume of the solution in liters.

To find the molarity, we perform the following calculation:

Molarity = moles of solute / liters of solution
Molarity = 0.400 mol / 9.79 L

This gives us a molarity of:

0.0409 M

Therefore, the molarity of the HCl solution is 0.0409 M.

A radioactive isotope has a half-life of 10 years. What fraction of the original mass will remain unchanged after 50 years

Answers

The fraction is calculated like this:

[tex] \frac{1}{ {2}^{50 \div 10} } = \frac{1}{32} [/tex]

If you want an universal equation for all problems like this:

[tex] \frac{1}{ {2}^{time \div halflife} } [/tex]

The fraction of the original mass of the radioactive isotope with a half-life of 10 years that will remain after 50 years is 1/32.

We can find the fraction of the original mass with the exponential decay equation:

[tex] N(t) = N_{0}e^{-\lambda t} [/tex]  (1)

Where:

N(t): is the amount of radioactive isotope at time t

N₀: is the initial amount of radioactive isotope

λ: is the decay constant

t: is the time = 50 y

We can find the decay constant as follows:

[tex] \lambda = \frac{ln(2)}{t_{1/2}} [/tex]   (2)

Where:

[tex]t_{1/2}[/tex]: is the half-life of the isotope = 10 y

The decay constant is (eq 2):

[tex] \lambda = \frac{ln(2)}{t_{1/2}} = \frac{ln(2)}{10 y} = 0.069 y^{-1} [/tex]

Now, the fraction of the original amount is (eq 1):

[tex] \frac{N(t)}{N_{0}} = e^{-\lambda t} = e^{-0.069 y^{-1}*50 y} = 0.0317 [/tex]

Since we need to calculate the fraction of the original mass, after some algebraic operations we have:

[tex] \frac{N_{0}}{N(t)} = 32 [/tex]  

[tex] N(t) = \frac{1}{32}N_{0} [/tex]                          

Therefore, the fraction of the original mass that will remain is 1/32.

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