Charles’s law states that _____.

Answers

Answer 1
The volume of a given mass of gas is directly proportional to its temperature provided the pressure remains constant
Answer 2

Charles's law states that the volume of a gas is directly proportional to its Kelvin temperature when the pressure is constant.

Charles's law states that the volume of a given amount of gas is directly proportional to its temperature in the Kelvin scale, as long as the pressure remains constant.

This means that if you increase the temperature of a gas, its volume will also increase proportionally, and vice versa, provided that the pressure does not change.

We can express this relationship mathematically as V/T = constant, where V is the volume and T is the temperature in Kelvin.

For example, if you have a balloon filled with air, and you heat it, the balloon will expand because the volume of the gas inside the balloon increases with temperature.

In summary, Charles's Law helps us understand how gases behave under different temperatures, making it an important principle in the study of gases and their properties.


Related Questions

how many moles of gas are present if p=11 atm, V=12L, T=185k?​

Answers

Answer:

8.69 mol.

Explanation:

We can use the general law of ideal gas: PV = nRT.

where, P is the pressure of the gas in atm (P = 11.0 atm).

V is the volume of the gas in L (V = 12.0 L).

n is the no. of moles of the gas in mol (n = ??? mol).

is the general gas constant (R = 0.0821 L.atm/mol.K),

T is the temperature of the gas in K (T = 185.0 K).

∴ n = PV/RT = (11.0 atm)(12.0 L)/(0.0821 L.atm/mol.K)(185.0 K) = 8.69 mol.

HELP PLEASE NEED URGENT HELP!!!!!!!

Answers

C) It goes up by one

A 6.10 M NaCl can be made by adding [x]g of NaCl to a container and making the volume of water up to the 1.00 L line

Answers

Answer:

356.484 g.

Explanation:

Molarity (M) is defined as the no. of moles of solute (NaCl) dissolved in a 1.0 L of the solvent.

M = (no. of moles of NaCl)/(volume of the solution (L))

M = 6.10 M, volume of the solution = 1.0 L.

∴ No. of moles of NaCl = (M)(volume of the solution (L)) = (6.10 M)(1.0 L) = 6.10 mol.

∵ no. of moles of NaCl = (mass of NaCl)/(molar mass of NaCl)

∴ Mass of NaCl = (no. of moles of NaCl)(molar mass of NaCl) = (6.10 mol)(58.44 g/mol) = 356.484 g.

NaCl mass : 356.85 grams

Further explanation

Stoichiometry in Chemistry learn about chemicals mainly emphasizes quantitative, such as the calculation of volume, mass, number, which is related to numbers, molecules, elements, etc

Mole

The mole itself is the number of particles contained in a substance amounting to 6.02.10²³

Mole can also be sought if the amount of substance mass and its molar mass is known

[tex] \large {\boxed {\boxed {\bold {mol = \frac {mass} {molar \: mass}}}} [/tex]

known

M NaCl = 6.10 M

Volume = 1.00 L

asked

NaCl mass

solution

molar mass of NaCl: 23 + 35.5 = 58.5 g / mol

mole NaCl = gram / mass

mole NaCl = molarity x volume

mol of NaCl = 6.1 x 1

mole of NaCl = 6.1

NaCl mass = molar mass x mol

mass of NaCl = 58.5 x 6.1

mass of NaCl = 356.85 grams

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Keywords: mole, NaCl, volume, molarity

Which is the most important factor in determining the state of a substance?
the size of the atoms in a substance
the number of molecules in a substance
the position of the electrons on the outer valence shells
the balance between intermolecular forces and kinetic energy

Answers

Answer:

The balance between intermolecular forces and kinetic energy

Explanation:

If the kinetic energies of the particles are not strong enough to overcome the intermolecular forces, the particles will be locked in place in a crystal lattice. The substance will be a solid.

If the kinetic energies of the particles are slightly stronger than the intermolecular forces, the particles will be able to slide past each other. The substance will be a liquid.

If the kinetic energies of the particles are much stronger than the intermolecular forces, the particles will be escape completely from the attractions of their neighbours. The substance will be a gas.

The balance between intermolecular forces and kinetic energy. thus option D is correct.

What is kinetic energy?

Kinetic energy, form of energy that an object or a particle has by reason of its motion.

If the kinetic energies of the particles are not strong enough to overcome the intermolecular forces, the particles will be locked in place in a crystal lattice. The substance will be a solid.

If the kinetic energies of the particles are slightly stronger than the intermolecular forces, the particles will be able to slide past each other. The substance will be a liquid.

If the kinetic energies of the particles are much stronger than the intermolecular forces, the particles will be escape completely from the attractions of their neighbours. The substance will be a gas.

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At what temperature does the solid start melting?
–20°C
0°C
20°C
80°C

Answers

Answer:

0 °C

Explanation:

The melting point of a substance is the temperature at which it changes state from solid to liquid.

Different substance have different melting point.

The melting point of ice at 1 atmosphere of pressure is very  to 0 °C  this is also known as the ice point.

Answer:

0°C

Explanation:

i am a chemistry nerd and that question any chemistry person can answer without questioning there answer.

What kind of chemical reaction does the chemical equation sodium + chlorine → sodium chloride represent? A. combustion B. decomposition C. single replacement D. synthesis

Answers

Answer:

d. synthesis

Explanation:

it uses the formula a+b=ab.

Answer:

synthesis

Explanation:

A + B → AB

A simple example of a synthesis reaction is the formation of water from its elements, hydrogen, and oxygen:

2 H2(g) + O2(g) → 2 H2O(g)

What is the formula of titanium(IV) bromide?

Answers

Answer:

[tex]\boxed{\text{SnBr}_{4}}[/tex]

Explanation:

The name tells you that this is a binary compound (contains two elements).

It contains a metal and a nonmetal, so it is a binary ionic compound. The general rule is:

Name of compound = name of metal  name of ion (two words)

Name of metal = tin(IV), so the tin ion has a charge of 4+

Name of ion = bromide. Br is in Group 17, so bromide ion has charge of 1-.

[tex]\rm Sn$^{4+}$ + 4Br$^{-} \longrightarrow \,$ SnBr$_{4}$\\\\\text{The formula is} \boxed{\textbf{SnBr}_{4}}[/tex]

Which of the following represents a compound?

Answers

Answer:

B) H2O

Explanation:

Compound is a pure substance composed of two or more different atoms chemically bonded to one another. Among all choices only H₂O is composed of two atoms, and other choices are composed of only one atom.  H₂O is the pure substance composed of chemically bonded two atoms (hydrogen atoms and oxygen atom).

Answer:

H₂O

Explanation:

Compound consists of combinations of elements. H (Hydrogen) is an element. O-16 and H-3 are stable isotopes of O (Oxygen) and H (Hydrogen), which are elements. H₂O is compound formed by two elements: Hydrogen and Oxygen.

Which is not part of John Dalton’s atomic theory?


Atoms of different elements have different masses.

All atoms of the same element have the same mass.

Atoms are made up of smaller particles.

All elements are composed of atoms.

Answers

C- Atoms are made up of smaller particles ~ I hope it’s correct

The correct answer is C. Atoms are made up of smaller particles.

Explanation:

John Dalton was an English chemist and physicist mainly known for proposing one of the first formal theories related to atoms by the end of the 19th century. In this theory, Dalton explained atoms were the basic unit for all elements and cannot be divided into smaller participles, also he proposed atoms of the same elements are identical including their masses and those of different elements are different. This means the statement that is not part of Dalton's atomic theory is "Atoms are made up of smaller particles" because for Dalton atoms are the smallest unit and cannot be divided into smaller parts, this was proved as false later as they can be divided into sub-particles.

Compare the strength of the intermolecular forces in solids liquids and gases

Answers

Intermolecular forces in solids are strongest than in liquids and gases. Gases have the least strong intermolecular forces. Intermolecular forces are weak and are significant over short distances between molecules (determined by Coulomb’s law). The farther away from the molecules the weaker the intermolecular forces. Since molecules in solids are the closest, the intermolecular force between them as the strongest. Conversely, since gas molecules are farthest apart, the intermolecular forces between them are the weakest.

Final answer:

The strength of intermolecular forces varies in solids, liquids, and gases. They are strongest in solids, due to which molecules or atoms are tightly packed. In gases, they are the weakest, allowing for a greater separation of atoms or molecules. Certain factors like the size and identity of the molecules also influence these forces.

Explanation:

Intermolecular forces refer to the attractions between molecules, which determine many of the physical properties of a substance. In solids, liquids, and gases, the strength of these forces varies significantly. In gases, the atoms and molecules are more separated, and intermolecular forces can be almost ignored. On the other hand, in liquids, these forces are strong enough to keep the molecules in contact, but not to prevent them from moving past each other. However, in solids, the intermolecular forces are so strong that the molecules or atoms are tightly packed, making them resistant to changing their shape or volume.

It's important to note that larger and heavier atoms and molecules exhibit stronger dispersion forces (a type of intermolecular force) than smaller and lighter ones. Hence, molecules like F2 and Cl2 are gases at room temperature indicating weaker intermolecular forces, while Br2 is a liquid, and I2 is a solid, representing stronger intermolecular forces. The identity of the molecules also determines the type and strength of the intermolecular attractions possible. Thus, strong intermolecular forces impede vaporization and favor the 'recapture' of gas-phase molecules, resulting in a lower vapor pressure, and vice versa.

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Which of the following correctly describes the general process of coal mining and refining? Select one: a. Coal is mined, washed, dried, and then separated from rock particles. b. Coal is mined, dryed, and crushed. c. Coal is mined, moved along a conveyor belt, mixed with water, then dried.

Answers

The general process for coal mining and refining is option C.

Coal mining is carried out by two main processes based on the depth, quality, thickness, and structure of coal seam. Based on the depth, coal seam of less than 180ft to the surface is surface mined while coal seems between 180ft.-300ft. are deep mined. The coal mined is transported to a nearby processing plant using a conveyor, train, ship, etc. where it is washed to remove other component like dirt, sulphur, rocks, etc. and afterwards dried.

Consider the nuclear equation below.

239 pu------------>x + 4 He
94 2

What is X?
1.235 Cm
96

2.243 U
92

3.235 U
92

4.243 Cm
96

Answers

Answer:

²³⁵₉₂U

Explanation:

Properly writing the equation we have:

       ²³⁹₉₄Pu → ᵃₙX + ⁴₂He

The unknown atom here is X with mass number "a'' and atomic number ''n''

In balancing chemical equations, the mass number and atomic number must be conserved. This implies that the sum of atomic numbers i.e subscript on the left hand side must be equal to that on the right hand side. Also, the sum of the mass numbers i.e superscript on the left hand side must be equal to that on the right hand side.

For the mass numbers:

       239 = a + 4

      a = 239 - 4 = 235

For atomic numbers:

     94 = n + 2

      n = 94 -2 = 92

The atom X, has a mass number of 235 and an atomic number of 92.

This is can be written as ²³⁵₉₂X

This is option 3

Which of these will change if the air in a
closed bottle is heated?
A
B
C
D
the mass of the air
the composition of the air
the air pressure in the bottle
the number of air molecules in the bottle​

Answers

Answer:

The air pressure in the bottle will change.

Explanation:

According to Gay-Lussac's Law, one of the main gas laws, the pressure of gas is directly proportional to the temperature of the gas. This means that as the temperature of the gas increases, the pressure of the gas will increase as well. Therefore, if you heat a closed bottle, the air pressure inside the bottle will change (increase).

The compound Fe3CI is made of what?

Answers

Answer:

nglos324 - fe3c. Iron carbide is an interstitial compound of iron and carbon with the composition Fe- 6.68 wt % Carbon. It is a brittle ceramic material and is produced in carbon steels or cast irons during pseudo-equilibrium cooling from above the eutectoid temperature (723 C).

Explanation:

Determine how many atoms of pure silver will be created when 19.83 x 1023 atoms of copper are used in the following reaction:
Cu + 2AgNO3 -> Cu(NO3)2 + 2Ag

Answers

Answer:

[tex]\boxed{3.966 \times 10^{24}\text{ atoms of Ag}}[/tex]

Explanation:

(a) Balanced equation

Cu + 2AgNO₃ ⟶ Cu(NO₃)₂+ 2Ag

(b) Calculation

You want to convert atoms of Cu to atoms of Ag.

The atomic ratio is ratio is 2 atoms Ag:1 atom Cu

[tex]\text{Atoms of Ag} = 19.83 \times 10^{23}\text{atoms Cu} \times \dfrac{\text{2 atoms Ag}}{\text{1 atom Cu}}\\\\= 3.966 \times 10^{24}\text{ atoms of Ag}\\\\\text{The reaction will produce }\boxed{\mathbf{3.966 \times 10^{24}}\textbf{ atoms of Ag}}[/tex]

Answer:

[tex]3.966\times 10^{24} [/tex] pure silver atoms are produced.

Explanation:

[tex]1 mol = N_A=6.022\times 10^{23} mol^{-1}[/tex]

Atoms of copper = [tex]19.83\times 10^{23} [/tex]

Moles of copper = [tex]\frac{19.83\times 10^{23} }{N_A}[/tex]

[tex]=\frac{19.83\times 10^{23} }{6.022\times 10^{23} mol^{-1}}=3.293 mol[/tex]

[tex]Cu + 2AgNO_3\rightarrow Cu(NO_3)_2 + 2Ag[/tex]

According to reaction, 1 mol of copper atoms gives 2 moles of silver atoms.

Then 3.293 moles of moles of copper will give:

[tex]\frac{2}{1}\times 3.293 mol=6.586 mol[/tex]

Number of silver atoms in 6.586 moles of silver:

=[tex]6.586 mol\times 6.022\times 10^{23} mol^{-1}=3.966\times 10^{24} atoms [/tex]

Can someone help me with 1 to 4 plz. Fast

Answers

Answer: 1A: F, 2A: T, 3A: F

Explanation: 1A: Science impacts our everyday life in many ways, from the technology we use to text and call, to the medicine we take for headaches and allergies! There are many brances of science that you can specialize in, whether it be studies space or animals!

2A: Scientists are problem solvers, which means they have to be creative.

3A: Everyone is capable of thinking scientifically!

Some scientists hypothesize that Earth's ozone layer is being damaged by


a.
ultraviolet radiation
c.
plant life on Earth
b.
chlorofluorocarbons
d.
global warming

Answers

Answer:

Some scientists hypothesize that Earth's ozone layer is being damaged by chlorofluorocarbons .

Explanation:

Please mark brainliest and have a great day!

Answer:

chlorofluorocarbons

The compound FeCl3 is made of

Answers

Answer:

iron n chlorine

Explanation:

Answer:

The compound FeCl3 is made of IRON AND AND CHLORINE

Which order shows the levels of organization from largest to smallest?

organism, organ system, cell, organ, tissue

organism, tissue, organ system, organ, cell

organism, organ, organ system, cell, tissue

organism, organ system, organ, tissue, cell

Answers

The Option D is correct.

Reason

It's because Cell of similar shape and function organize to form a tissue.

Many similar Functioning Tissues organize to form a Organ.

Many Organs organize to perform a particular function and Are Called Organ Systems.

Many such Organ Systems Organize to form an Organism.

Hence in Descending order it is Organism, Organ Systems, Organ, Tissues, Cells.

Answer:

organism, organ system, organ, tissue, cell

Explanation:

D

I got ir right:)

Why would an atom become an ion?

Answers

An atom becomes an Ion (a) if it gains one or more electron(s) or (b) if it loses one or more electron(s). When it gains electrons it becomes negatively charged and is called an anion. When it loses electron(s) it becomes positively charged and is called a cation.
Final answer:

An atom becomes an ion to achieve electrical stability. This can occur either by the atom losing electrons and becoming a cation (positive ion), or gaining electrons and becoming an anion (negative ion). This process, known as ionization, typically happens during chemical reactions.

Explanation:

An atom may become an ion in pursuit of electrical stability. Atoms are originally neutral, containing equal numbers of protons (positive charge) and electrons (negative charge). Certain atoms become more stable by gaining or losing electrons, altering the balance between protons and electrons and creating a net charge, thereby becoming ions.

There are two types of ions: cations and anions. Cations are positive ions that form when an atom loses electrons. For instance, a sodium atom (Na) could lose one electron to become a cation (Na+). On the other hand, anions are negative ions formed when an atom gains electrons. For example, an oxygen atom could gain two electrons to become an anion (O2-).

The process where an atom gains or loses electrons to form ions is known as ionization. This atomic transformation usually occurs during chemical reactions, especially in the formation of ionic bonds.

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How many joules of heat are absorbed to raise the temperature of 435 grams of water at 1 atm from 25°C to its boiling point, 100.°C?

Answers

136568.25 J


Let me know if you have any questions
Final answer:

To calculate the heat absorbed by the water, we use the formula Q = mcΔT, where Q represents the heat energy absorbed, m is the mass, c is the specific heat capacity, and ΔT is the change in temperature. Substituting the given values, we find that approximately 136,872 joules of heat are absorbed to raise the water's temperature from 25°C to 100°C.

Explanation:

This question is asking how much heat energy, in joules, is required to heat 435 grams of water from 25°C to 100°C at atmospheric pressure. The formula used to calculate this is Q = mcΔT, where Q represents the heat energy absorbed, m is the mass of the substance (water), c is the specific heat capacity, and ΔT is the change in temperature.

For water, the specific heat capacity (c) is 4.184 J/g°C. The mass (m) of the water is given as 435 g. The change in temperature (ΔT) is the final temperature minus the initial temperature, which is 100°C - 25°C = 75°C.

Substituting these values into the equation gives us, Q = (435 g) × (4.184 J/g°C) × (75°C), which equals approximately 136,872 joules. This is amount of heat absorbed by the water to raise its temperature from 25°C to 100°C at 1 atm.

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Calculate the mass of 0.750 mol of the following substance. Na3PO4.

****Please help, I'm not quite sure on how to set up a problem to solve! : (

Answers

Na:23,O:16,P:31

The molar mass of Na3PO4 is 164.(3*23+4*16+31)

0.75*164=123 grams of Na3PO4

Final answer:

To find the mass of 0.750 mol of Na3PO4, calculate the molar mass by summing the atomic masses of Na, P, and O, and then multiply the molar mass by the number of moles. The mass is found to be 122.955 g.

Explanation:

To calculate the mass of 0.750 mol of Na3PO4, we first need to determine its molar mass. We sum the atomic masses of all the atoms in the compound:

Na (Sodium) has an atomic mass of 22.99 g/mol, and there are 3 Na atoms.

P (Phosphorus) has an atomic mass of 30.97 g/mol, and there is 1 P atom.

O (Oxygen) has an atomic mass of 16.00 g/mol, and there are 4 O atoms.

The molar mass of Na3PO4 is thus calculated as:

(3 × 22.99 g/mol) + (1 × 30.97 g/mol) + (4 × 16.00 g/mol) = 163.94 g/mol

Now, to find the mass of 0.750 mol of Na3PO4, we use the formula:

Mass = moles × molar mass

Mass = 0.750 mol × 163.94 g/mol = 122.955 g of Na3PO4

Hamad stated that Nitrogen gas is noncombustible so is water vapour. If Both nitrogen and water are in gaseous state then why the term gas and vapour were used by Hamad?

Answers

Answer:

Unlike clouds, fog, or mist which are simply suspended particles of liquid water in the air, water vapour itself cannot be seen because it is in gaseous form. Water vapour in the atmosphere is often below its boiling point. When water is boiled the water evaporates much faster and makes steam.

Both vapor and gas contains the gaseous molecules. But vapor state contains a second phase too along with gas whereas, gaseous state only contain one component.

What is vapor?

Vapor is a state of matter consists of two component. Solid and gas  or liquid and gas. Thus vapor is formed when a gas comes in contact with liquid or solid.

There forms an equilibrium between gaseous state and liquid or solid state. For example water forms water vapor when the liquid water boils to form gases, similarly other liquids such as acids forms their vapor.

Gases such as oxygen, hydrogen, nitrogen etc.  forms only gases and thus have only one component. Thus we used to say nitrogen gas, hydrogen gas etc.

Therefore, vapor is a combination of two states and gas in a single state. Water forms vapor and can be called water vapor but nitrogen is called gas only.

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What type of reaction is Zn + CuCl2 → Cu + ZnCl2?​

Answers

Answer:

Single-replacement

Explanation:

The reaction is [tex]Zn + CuCl_{2}[/tex] → [tex]Cu + ZnCl_{2}[/tex] is a kind of single displacement reaction.

What is single displacement reaction?

In a single-displacement reaction, sometimes referred to as a single replacement reaction but rather an exchange reaction, one element in a compound would be swapped out for another.

What is reaction?

When  one reacts with another kind of element the  it will form different kind of atom or compound is referred as reaction.

The reaction is [tex]Zn + CuCl_{2}[/tex] → [tex]Cu + ZnCl_{2}[/tex] is a kind of single displacement reaction.

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Which of the following is NOT a characteristic of liquids?
A. no significant attraction between particles
B. less fluid than gases
C. more dense than gases
D. exhibits viscosity

Answers

Answer:

a.

Explanation:

What is the chemical formula for iron(II) hydroxide?
Fe, OH
Fe(OH)
FeOH
0 FeOH

Answers

None of the above, it is Fe(OH)2

Answer:  None of the given options .

Explanation:  The chemical formula of Iron (II) hydroxide can be written as

Fe (OH)2

As iron is present in its +2 state and hyrdoxide ion has charge of one negative unit .

Thus iron hydroxide can be written as the above and none of the given options is correct.

What is the Bronsted-Lowry definition of an acid?
(A) a compound that donates protons
(B) a compound that accepts protons
(C) a substance that increases hydroxide ion concentration
(D)a substance that increases hydronium ion concentration

Answers

Answer:

(A) a compound that donates protons .

Explanation:

According to Bronsted-Lowry Model :

Acids are proton donors. Bases are proton acceptors.

So, the right choice is:

(A) a compound that donates protons .

Answer:

Bronsted-Lowry defines the compound which (A) donates protons as acid.

Explanation:

According to this concept, an acid is a substance that donates hydrogen ion in a chemical reaction. Hydrogen ion is same as a proton as it has only one proton in its atom. According to him, a base is that substance that accepts hydrogen in a chemical reaction.

In a general sense, all proton donors are acids and all proton acceptors are bases. The higher the number of hydrogen ion donated, the more acidic the substance.

. 8750 J of heat are applied to a piece of aluminum, causing a 66.0 oC increase in its temperature. The specific heat of aluminum is 0.9025 J/g oC. What is the mass of the aluminum?

Answers

146.8983 grams


EXPLANATION:


You can use the heat formula to find the mass

q=mc ΔT


The q stands for heat, which is given; 8750 Joules

The m stands for mass, which is our UNKNOWN

The c stands for specific heat, which is given; 0.9025 J/gC

The ΔT stabs for temperature change, which is
given; 66 C


So plug in all of your information into the formula.


8750= (m) (0.9025) (66)

8750= (m) (59.565)

146.8983= mass


Let me know if you have any questions.



The mass of aluminum supplied to given quantity of heat in order to increase its temperature is 146.9 g.

The given parameters;

heat applied to the aluminum, Q = 8750 Jincrease in temperature of the aluminum Δt = 66 ⁰Cspecific heat of aluminum, c = 0.9025 J/g⁰C

The mass of aluminum is calculated as follows;

Q = mcΔt

where;

m is the mass of the aluminum

[tex]m = \frac{Q}{c \Delta t} \\\\m = \frac{8750}{0.9025 \times 66} \\\\m = 146.9 \ g[/tex]

Thus, the mass of aluminum supplied to given quantity of heat in order to increase its temperature is 146.9 g.

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Which of the following isotopes has the same number of neutrons as phosphorus-31?

Answers

Answer: 32/16S which is sulfur

The isotopes that carry the exact same number of neutrons as they are in phosphorous-31 would be:

32/16S

The isotopes are described as the formations of element(two or more) that contains exact same proton numbers yet a distinction in the number of neutrons inside the nuclei.This leads the atomic isotopes to possess similar atomic numbers yet a varied mass number.The isotopes that carry the exact same number of neutrons as they are in phosphorous-31(16 neutrons) would be Sulphur(16 electrons).

Thus, 32/16S is the correct answer.

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A nonaqueous solution has a solvent that is not water. Which is an example of a nonaqueous solution?

Answers

Answer:

Tincture o iodine.

Explanation:

If a solute is dissolved in a solution that is not water for example, alcohol, ether, carbon disulphide, Carbon tetrachloride and many other carbon based liquids, the resulting solution is classified as a non aqueous solution.

An example of such a solution is tincture of iodine made by dissolving in 1 liter alcohol.

The molarity of iodine is approximately 0.53M

The solution is largely used as a sore disinfectant.

Answer: B

Explanation: on Edg

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