Two 250 mL samples of water are drawn from a deep well bored into a large underground salt (NaCI) deposit Sample #1 is from the top of the well, and is initially at 42 °C. Sample #2 is from a depth of 150 m, and is initially at 8 °C. Both samples are allowed to come to room temperature (20 °C) and 1 atm pressure. An NaCI precipitate is seen to form in Sample # 1.
A. A bigger mass of NaCl precipitate will form in Sample #2.
B. A smaller mass of NaCl precipitate will form in Sample #2.
C. The same mass of NaCl precipitate will form in Sample #2.
D. No precipitate will form in Sample #2.
E. I need more information to predict whether and how much precipitate will form in Sample #2.

Answers

Answer 1

Two 250 mL samples of water are drawn from a deep well bored into a large underground salt (NaCI) deposit. Sample #1 is from the top of the well, and is initially at 42 °C. Sample #2 is from a depth of 150 m, and is initially at 8 °C.

The correct option is B

Both samples are allowed to come to room temperature (20 °C) and 1 atm pressure. An NaCI precipitate is seen to form in Sample # 1.The smaller mass of NaCl precipitate will form in Sample #2.EXPLANATION:One of the solubility rules states that the solubility of most solids increases as the temperature increases. NaCl is a compound that is highly soluble in water, and its solubility is influenced by the temperature of the water.

As a result, when the temperature of the water increases, the solubility of NaCl in it also increases.Based on this, it can be stated that, since Sample #1 had a higher temperature than Sample #2, more NaCl precipitate will form in it. Since Sample #2 was initially colder, less NaCl would precipitate out, implying that a smaller mass of NaCl precipitate will form in Sample #2.

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Related Questions

the next questions are related to the titration of 30.00 ml of a 0.0700 m acetic acid solution with 0.0900 m koh. what is the initial ph of the analyte solution?

Answers

The initial pH of the analyte solution can be determined using the Henderson-Hasselbalch equation, which relates the pH of a solution to the pKa and the ratio of the concentrations of the acid and its conjugate base.

The pKa of acetic acid is 4.76. The initial concentration of acetic acid is 0.0700 M, and the concentration of its conjugate base (acetate ion) can be calculated from the stoichiometry of the reaction (1:1) and the volume and concentration of the KOH solution used in the titration. Once the concentrations of the acid and its conjugate base are known, the pH can be calculated using the Henderson-Hasselbalch equation. The initial pH of the analyte solution is 4.74. To determine the initial pH of the 30.00 mL, 0.0700 M acetic acid solution (analyte solution) before titration with 0.0900 M KOH, we can use the Ka expression for weak acids. Acetic acid (CH₃COOH) is a weak acid with a Ka value of 1.8 x 10⁻⁵. By setting up an ICE table (Initial, Change, Equilibrium) and solving for the hydrogen ion concentration [H⁺], we can find the initial pH.

In this case, initial [CH₃COOH] = 0.0700 M, [H⁺] = 0, and [CH₃COO⁻] = 0. After calculating the equilibrium concentrations and substituting them into the Ka expression, we can find the [H⁺]. Finally, use the pH formula, pH = -log[H⁺], to calculate the initial pH of the analyte solution.

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A 15-kg child is tossed up into the air by her parent. The child is 2.5 meters off the ground traveling 3 m/s.

Circle one: KE / GPE / both

Show your work for finding the values of each type of energy the object has:

Answers

The values of each type of energy the object has the child has both KE and GPE.

What is energy?

Energy is the capacity to do work or cause change. It is the ability to cause motion, create light and heat, and cause chemical reactions. Energy exists in many forms, such as mechanical, electrical, thermal, chemical, kinetic, and potential, and can be converted from one form to another. It is a fundamental part of physical and chemical processes, as well as biological processes.

Kinetic Energy (KE):
KE = 0.5•m•v2
KE = 0.5•15kg•(3m/s)2
KE = 22.5 J
Gravitational Potential Energy (GPE):
GPE = m•g•h
GPE = 15kg•9.8m/s2•2.5m
GPE = 367.5 J
Therefore, the child has both KE and GPE.

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At pH 3, how many charged groups are present in the pentapeptide Ala-Asp-His-Ser-Lys?
a) 1
b) 2
c) 3
d) 4
e) 5

Answers

There are 4 charged groups present in the pentapeptide at pH 3. Therefore, the correct answer is (d) 4.

At pH 3, the carboxyl group of Ala, Asp, and Lys will be protonated, making them positively charged. The amino group of the N-terminal Ala will also be protonated, making it positively charged. The imidazole group of His, however, will be fully protonated, making it neutral. Therefore, there are a total of four charged groups present in the pentapeptide Ala-Asp-His-Ser-Lys at pH 3. The answer is d) 4.

At pH 3, the charged groups present in the pentapeptide Ala-Asp-His-Ser-Lys are:

1. Asp (aspartic acid) with a carboxyl group (COOH), which is negatively charged at pH 3.
2. Lys (lysine) with an amino group (NH3+), which is positively charged at pH 3.
3. The N-terminal amino group (NH3+) of Ala, which is positively charged at pH 3.
4. The C-terminal carboxyl group (COOH) of Lys, which is negatively charged at pH 3.

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how many eggs are produced at a time in human body?​

Answers

Answer: Well, at birth, there are approximately 1 million eggs. And at the time of puberty, only 300,000 remain.

Explanation:

Answer:

only one egg will be produced by a single ovary in a month. the ovaries function in an alternate manner., ie., one ovary will release an egg in one month and the other ovary will release the ovum next month.

If the pressure of a gas is 1.01 atm and the temperature is 25°C, then if the pressure is increased to 1.10, what is the new temperature?

Answers

Answer:

T2 = 51.6°C

Explanation:

Given:

P1 = 1.01 atm

T1 = 25°C + 273 = 298K

P2 = 1.10 atm

T2 = ?

P1/T1 = P2/T2

Solving for T2,

T2 = (P2/P1)T1

= (1.10 atm/1.01 atm)(298K)

= 324.6 K

= 51.6°C

where Tc = Tk - 273

calculate the percent yield if the theoretical yield is 50.0g of a product and the actual yield is 42.0g

Answers

Answer:

sorry

Explanation:.

Answer:

84%

Explanation:

Joshua uses his thermometer (experimental value) and finds the boiling point of ethyl alcohol to be 75°C 75 ° C . The accepted value of ethyl alcohol is 80°C 80 ° C . What is his percent error?

Answers

75-80 = 5 = .0625 X 100 = 6.25%

80 80

2. which atoms (or groups of atoms) can have expanded octets?
a. F

b. Cl

c. N

d. B

e. O

Answers

The atoms (or groups of atoms) that can have expanded octets are option c. N and option e. O.

An octet is a set of 8 electrons in an atom's outer shell. The octet rule is a chemical rule that explains how atoms combine and behave chemically by requiring them to have complete outer electron shells consisting of eight electrons. When considering covalent bonding in a compound, the octet rule states that atoms will donate, accept, or share electrons to achieve a full valence shell of eight electrons.

Expanded octets occur when an atom in a compound has more than eight electrons in its outer shell. Expanded octets are only observed for elements in period three and above because of the d orbitals in the valence shell, which allows for more electrons to be held.

Expanded octets can exist due to the existence of d-orbitals in elements. The most popular expanded octets are found in phosphorus, sulfur, and chlorine.

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Acids containing polyatomic ions are named according to the name of the anion.​ true or false

Answers

Answer:

true

Explanation:

Names for such acids consist of the prefix “hydro-“, the first syllable of the anion, and the suffix “-ic”. Complex acid compounds have oxygen in them. For an acid with a polyatomic ion, the suffix “-ate” from the ion is replaced with “-ic.”

Describe what the whole number is called that comes before a compound and what its purpose is.

Answers

The whole number that comes before a compound is called a coefficient and it is used to balance the compound in a chemical equation.

What is a chemical compound?

Chemical compounds is defined as those substances which are made up of two or more elements that are chemically combined together.

The combination of two compounds that reacts are called the reactants while the compounds that are formed are called the products.

The reaction that leads to the formation of products needs to be balanced using whole numbers in front of the chemical compounds.

For example,

\(H_{2}\) +\(O_{2}\) --->\(H_{2} O\)

To balance the above equation, the whole number 2 is inserted infront of  hydrogen and the water molecule that is formed. That is,

\(2H_{2} +O_{2} --- > 2H_{2} O\)

Therefore, the whole number that comes before a compound is called a coefficient and it is used to balance the compound in a chemical equation.

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Since gasses weigh nothing when they are produced in a reaction they do not have to be accounted for.

Answers

Answer:

No

Explanation:

You can not have a reaction that produces "no mass". This breaks the law of conservation of mass. When gasses are produced, they will have a specific amount of mass associated with them which means they will have a weight. They will have to be accounted for

What unit is mass generally measured in

Answers

Answer:

kilograms

Explanation:

hope this helps, pls mark brainliest :D

Answer:kilogram

Explanation:

I got the smarts

sulfur, s8, combines with oxygen at elevated temperatures to form sulfur dioxide. if 240 oxygen molecules are used up in this reaction, how many sulfur molecules reacted?

Answers

The equation must have the following form to be balanced: 4CO2 + 2H2O = 2C2H2 + 5O2

S8: O2 = 1/8; S8 utilized = 240/8 = 30SO2 generated is equal to the number of sulphur molecules used, which is 240. Stoichiometry is the name given to the study of chemical processes in mathematics. Numerous calculations can be done, such as stoichiometry, which is most usually performed with moles but can also be done with masses and even percentages. Stoichiometric ratio A stoichiometric ratio is important when considering the interactions between specific elements or molecules. This exact ratio of reactant to product coefficients is necessary for a reaction to occur properly. Let's discuss some problems you can run across when you learn about stoichiometry. Chemical Equations in Balance Equations needing to be balanced is a fairly common stoichiometric issue type. This is an essential chemistry skill since a reaction can only occur if the ratio of reactants to products is correct.possess. Additionally, it provides an essential framework for organic chemistry. Balance the ensuing reply: _ CO2 + _ H2O C2H2 + _ O2 To be balanced, equations must have an equal number of each element on both sides of the reaction. Before balancing the oxygen, you can start by balancing the carbons and hydrogens. The equation must have the following form to be balanced: 4CO2 + 2H2O = 2C2H2 + 5O2

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3) 2500 pounds to Kilograms

Would this be 1,250?

Answers

Answer:

1134

Explanation:

(the ones place was rounded up). 1133.981 is the unrounded answer.

De la siguiente reacción química Fe2O3 + 3 H2O → __Fe(OH)3 para que se cumpla el balanceo en ella, en el espacio qué coeficiente estequiométrico se debe asignar

Answers

Answer:

Para que se cumpla el balanceo en la reacción química, en el espacio se debe asignar 2 como coeficiente estequiométrico.

Explanation:

La ley de conservación de la materia establece que, dado que no se puede crear ni destruir ningún átomo en una reacción química, el número de átomos que están presentes en los reactivos debe ser igual al número de átomos presentes en los productos.

Luego, debes equilibrar la ecuación química. Para eso, primero debe mirar los subíndices al lado de cada átomo para encontrar el número de átomos en la ecuación. Si el mismo átomo aparece en más de una molécula, debes sumar sus cantidades.

Los coeficientes ubicados frente a cada molécula indican la cantidad de cada molécula para la reacción. Este coeficiente puede modificarse para equilibrar la ecuación, del mismo modo que nunca debe alterar los subíndices.

Al multiplicar el coeficiente mencionado por el subíndice, obtienes la cantidad de cada elemento presente en la reacción.

En este caso la reacción química es:

Fe₂O₃ + 3 H₂O ⇒ ____ Fe(OH)₃

Entonces, teniendo en cuenta todo lo anterior, se puede determinar la cantidad de elementos en cada lado de la ecuación:

Lado izquierdo: 2 hierro Fe, 6 oxígeno O y 6 hidrógenos H Lado derecho: 1 hierro Fe, 3 oxígeno O y 3 hidrógenos H

Se puede observar que la reacción química no esta balanceada porque se tiene diferentes cantidades de cada elemento a cada lado de la reacción. Para equilibrarla, se comienza balanceando el hierro. Para eso, el coeficiente estequiométrico debe ser dos:

Fe₂O₃ + 3 H₂O ⇒ 2 Fe(OH)₃

Entonces:

Lado izquierdo: 2 hierro Fe, 6 oxígeno O y 6 hidrógenos H Lado derecho: 2 hierro Fe, 6 oxígeno O y 6 hidrógenos H

Ahora, a cada lado de la reacción se tiene la misma cantidad de cada elemento, por lo que la reacción esta balanceada.

Para que se cumpla el balanceo en la reacción química, en el espacio se debe asignar 2 como coeficiente estequiométrico.

Before viewing prepared slides under a microscope, students should review the safety rules for
wearing safety goggles and lab aprons.
• preventing and cleaning up chemical spills,
• cleaning up and disposing of broken glass.
putting out fires and cleaning up after them.

Answers

Hello,

Answer: the second one

Explanation:

Preventing and cleaning up chemical pills and one one gets hurt :)

cleaning up and disposing of broken glass.


If sufficient acid is used to react completely
with 21.0 grams of Mg

Mg(s) + 2 HCl(aq) + MgCl2(aq) + H2(g)

what volume of hydrogen at STP would be
produced?

1. 9.68 liters
2. 10.60 liters
3. 4.84 liters
4. 19.37 liters
5. 22.40 liters

Answers

Solution,

Mass of Mg - 21gm

molar mass of Mg - 24gm

moles = Given mass/ Molar mass

moles = 21/24 = 0.875

1 mole of Mg produce 1 mole of H2 gas

so 0.875 mole of Mg will produce 0.875 moles of H2 gas

One mole of H2 gas = 22.4 litre

0.875 mole of H2 gas = 0.875×22.4

0.875 mole of H2 gas = 19.60 litre

So the nearest ANSWER is Option four 19.37 litre.

STP is the standard temperature and the pressure of the gases of the system. The volume of the hydrogen that will be produced as STP is 19.37 litres.

What is volume?

Volume is the amount of the substance or the solution occupied in an area or object and is estimated in L or mL. It is a scalar quantity.

Given,

Mass of magnesium = 21 gm

Molar mass of magnesium = 24 gm/mol

Moles of magnesium can be calculated as,

\(\begin{aligned}\rm moles &= \rm \dfrac{mass}{molar\;mass}\\\\&= \dfrac{21}{24}\\\\&= 0.875 \;\rm mol\end{aligned}\)

If 1-mole magnesium = 1-mole hydrogen gas

Then 0.875-mole magnesium = 0.875 moles of hydrogen gas

If 1 mole of hydrogen gas = 22.4 L

Then, 0.875 moles of hydrogen gas = x L

Solving for x:

\(\begin{aligned}\rm x &= 0.875 \times 22.4\\\\&= 19.60 \;\rm litre\end {aligned}\)

Therefore, the volume of hydrogen at STP would be option 4. 19.37 litres.

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Molarity of Kool Aid solutions can be calculated by comparing the concentrations of Kool Aid powder and sugar added to a given volume of water. The molar mass of Kool Aid will be the same as that of sugar for our purpose. The molecular formula for sugar is C12H22O11- Your objective for this lab will be to calculate the molarity of Kool Aid desired based on package directions. You will then be provided two concentrated Kool Aid solutions. You will use dilution calculations to determine the amount of water and concentrated solution you will need in order to prepare 65 mL of the desired molarity.

Calculate the molarity of Kool Aid desired based on the following information from the package directions.

1 package Kool Aid powder = 4. 25 grams 1 cup sugar = 192. 00 grams
2. 00 quarts of water (1. 06 quarts = 1 liter) ​

Answers

The amount of concentrated solution needed is (0.286 M)(65 mL) / C M, and the amount of water needed is 65 mL minus the volume of the concentrated solution.

To calculate the molarity of Kool Aid desired, we need to determine the number of moles of Kool Aid powder and sugar in the package. Since the molecular formula for sugar is C12H22O11, we can calculate its molar mass as follows:

Molar mass of C12H22O11 = (12 * 12.01) + (22 * 1.01) + (11 * 16.00)

= 144.12 + 22.22 + 176.00

= 342.34 g/mol

Given that the package contains 4.25 grams of Kool Aid powder, we can calculate the number of moles of Kool Aid powder using its molar mass:

Number of moles of Kool Aid powder = Mass / Molar mass

= 4.25 g / 342.34 g/mol

≈ 0.0124 mol

Similarly, for the sugar, which has a molar mass of 342.34 g/mol, we can calculate the number of moles of sugar using its mass:

Number of moles of sugar = Mass / Molar mass

= 192.00 g / 342.34 g/mol

≈ 0.5612 mol

Now, to calculate the molarity of the desired Kool Aid solution, we need to determine the volume of water. Given that 1.06 quarts is equal to 1 liter, and we have 2.00 quarts of water, we can convert it to liters as follows:

Volume of water = 2.00 quarts * (1.06 liters / 1 quart)

= 2.12 liters

To find the molarity, we use the formula:

Molarity (M) = Number of moles / Volume (in liters)

Molarity of Kool Aid desired = (0.0124 mol + 0.5612 mol) / 2.12 L

≈ 0.286 M

To prepare 65 mL of the desired molarity, we can use dilution calculations. We need to determine the volume of concentrated solution and the volume of water needed.

Let's assume the concentration of the concentrated Kool Aid solution is C M. Using the dilution formula:

(C1)(V1) = (C2)(V2)where C1 is the initial concentration, V1 is the initial volume, C2 is the final concentration, and V2 is the final volume.

Given that C1 = C M and V1 = V mL, and we want to prepare a final volume of 65 mL (V2 = 65 mL) with a final concentration of 0.286 M (C2 = 0.286 M), we can rearrange the formula to solve for the volume of the concentrated solution:

(C M)(V mL) = (0.286 M)(65 mL)

V mL = (0.286 M)(65 mL) / C M

So, the amount of concentrated solution needed is (0.286 M)(65 mL) / C M, and the amount of water needed is 65 mL minus the volume of the concentrated solution.

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the structure below is a potent analgesic agent (pain reliever) (j. med. chem., 2009, 5685). how many secondary carbons are in this structure?

Answers

Secondary carbon atoms are those carbon atoms that are bound to two other carbon atoms and two hydrogen atoms. There are two secondary carbon atoms present in the given molecule.

Which carbon is a secondary carbon?Depending on how many additional carbon atoms are directly linked to a given carbon atom, hydrocarbon structures are categorized. The reactivity of functional groups connected to the various carbon atoms in a structure will be discussed in more detail using this classification in subsequent chapters.The primary carbon atom, denoted by the symbol 1°, is one that is only joined to one other carbon atom. Primary carbon atoms are those located at both ends of a carbon chain. In butane, there are two main carbon atoms. A secondary carbon atom, denoted by the symbol 2°, is one that is bound to two additional carbon atoms. The secondary carbon atoms in butane, for instance, are those in the center.The tertiary state of a carbon atom is shown by the angle 3° and is bonded to three additional carbon atoms. For instance, when we look at the structure of isobutane, we can see that there are four carbon atoms: only one of them is tertiary, while the other three are primary. The bonds between the four carbon atoms in a quaternary carbon (4°) are four.

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the structure below is a potent analgesic agent (pain reliever) (j. med. chem., 2009, 5685). how many

A neon sign contains 2.01 x 10^25 atoms of gas. How many moles of neon are in the sign?

Answers

A neon sign contains 2.01 x 10^25 atoms of gas. 3.34 x 10^-3 moles of neon are in the sign.

What do you mean by mole ?

The term mole is defined as the amount of substance of a system which contains as many elementary entities.

1 mole is equal to 6.023 × 10 ²³ molecules.

According to Avogadro's constant, in one mole, there are 6.02 x 10^23 atoms.

To calculate how many moles are in 2.01 x 10^21 atoms, you would divide it by the amount of atoms that fit in a mole.

2.01 x 10^21 atoms / 6.02 x 10^23

= 0.00334 moles,

= 3.34 x 10^-3 moles

Thus, A neon sign contains 2.01 x 10^25 atoms of gas. 3.34 x 10^-3 moles of neon are in the sign.

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Your question is incomplete, most probably your question was

A neon sign contains 2.01 X 1021 atoms of the gas. How many moles of neon are in the sign?

a1.21 X 1045 mole Ne

b3.34 X 10-3 mole Ne

c2.00 X 102 mole Ne

d12.10 X 102 mole Ne

suggest two gases in the air that will react with zinc to make zinc carbonate

Answers

Answer:

See explanation

Explanation:

Zinc is a metal and as such can undergo corrosion when exposed to moisture.

Two gases in the atmosphere that can react with Zinc metal and covert it to Zinc carbonate are carbon dioxide and water vapour.

Zinc is oxidized to ZnO in the atmosphere by water vapour. This ZnO subsequently reacts with CO2 to yield ZnCO3.

Which hypothesis regarding the origin of life on Earth suggests that oxidation-reduction (redox) reactions may be responsible for the formation of complex organic molecules from simple organic molecules

Answers

The hypothesis that suggests that redox reaction is responsible for the formation of complex organic molecules is :

Reducing Atmosphere Hypothesis

Reducing atmosphere

Reducing atmosphere hypothesis states that a reducing atmosphere is a condition whereby the atmosphere has an abundance of negative charges which leads to reducing reaction by the additon of electrons to compounds.

The addition of electrons to the compounds leads to the formation of complex organic molecules. some examples of reducing gases are :

Hydrogen and Carbon monoxide

Hence we can conclude that The hypothesis that suggests that redox reaction is responsible for the formation of complex organic molecules is : Reducing Atmosphere Hypothesis.

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45 g of CAC L2 are dissolved in enough water for the molarity of a solution is 1. 5 a.m. what is the volume of milliliters of the solution

Answers

The concentration terms are molality, normality and mole fraction. Molarity can be used to find out the ionic strength of any solution. Therefore, the volume in milliliters of solution is 260ml.

What is molarity?

Molarity can be calculated by dividing number of moles of solute by volume of solution in liter. Molarity is affected by temperature. Its unit is mole/liter. It measure the concentration of any solute in a solution.

Mathematically,

Molarity= number of moles of solute/volume of solution in litre (1)

Where,

moles= given weight /by molecular weight

         =45 g  ÷110.98 g/mol

         =0.40 moles

Molarity=  1. 5M

Substituting values in equation 1

1. 5=0.40/volume

Volume = 0.26L=260ml

Therefore, the volume in milliliters of solution is 260ml.

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Hii please answer this really easy x

Hii please answer this really easy x

Answers

Answer:

What do we need to find in that question ?

Answer:

1) no

2)yes

3)no

4)yes

Explanation:

hope that it helped you

1. Convert these from plus-minus notation to significant figures notation.
a. 65.316 mL + 0.05 mL.
b. 5.2 cm + 0.1 cm
c. 1.8642 km ± 0.22 km
d. 16.8°C ±1°C

Answers

Answer: a. 65.37 mL
b. 5.3 cm
c. 2.08 km (plus) or 1.64 km (minus)
d. 18°C (plus) or 16°C (minus)

Explanation:

The way significant figures work when you're adding or subtracting, is you go to the answer with the least amount of decimal places. Take a. for example; you have 65.316 (3 places after the decimal) and 0.05 (2 places after the decimal place). Based off of this, you would round your answer to two places after the decimal. And when you have a whole number, like in d. you round to the nearest whole number, since there aren't any decimal places to round your answer to.

Please write an explanation if you find the answer, I don't get it.

A flask contains 21.8 g of chlorine gas and 47.8 g of sulfur dioxide gas. What is the mole fraction of the sulfur dioxide?

Round your answer to 3 decimal spaces, even if sig figs are not conserved.

Answers

The mole fraction of the sulfur dioxide gas present in a falsk which contains 21.8 g of chlorine gas and 47.8 g of sulfur dioxide gas is 0.708.

How do we calculate mole fraction?

Mole fraction of any substance will be calculated by dividing the moles of desired substance by the total moles of the species present in that sample.

Moles can be calculated as:

n = W/M, where

W = given mass

M = molar mass

Moles of 21.8g of chlorine gas = 21.8g / 71g/mol = 0.307mol

Moles of 47.8g of sulphur dioxide gas = 47.8g / 64g/mol = 0.746mol

Mole fraction of sulphur dioxide gas = 0.746 / 0.746+0.307 = 0.708

Hence required mole fraction of sulphur dioxide gas is 0.708.

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Which statement about noble gases is correct? *

They are extremely rare in nature.

They are highly reactive with both metals and nonmetals.

O They exist as single atoms rather than as molecules.

O They form compounds with very bright colors.

Answers

Answer:

Hello There!!

Explanation:

I believe the answer is O They form compounds with very bright colors.

hope this helps,have a great day!!

~Pinky~

The statement about noble gases that is correct is D. They form compounds with very bright colors.

Noble gases simply refers to the elements that have similar properties. Noble gases are colorless, odorless, and have very low reactivity.

Examples of noble gases are helium, argon, Krypton, xenon, etc. Noble gases also form compounds with very bright colors.

In conclusion, the correct option is D.

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d. Describe the following concentration measurements. (2 points)
i. Molality (1 point)
ii. Parts per million (1 point)

Answers

1. The quantity of a material dissolved in a given mass of solvent is known as its molality (m), also known as molal concentration.

2. The mass of a chemical or contamination per volume of water is the parts per million here.

How can these be calculated?

1. The quantity of solvent moles per kilogram is known as molality, which is a property of solutions. The SI unit for molality is mol/kg.

m=mol/kg

2. The measurement unit for pollutant concentration in soil and sediment is parts per million (ppm) (or ppmm). If so, 1 ppm corresponds to 1 milligram of material per kg of solid (mg/kg).

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Which of these would most likely happen to a species that is not able to adapt to a changing environment?

Answers

Answer:

If a species cannot adapt to the changes in their ecosystem, they may move to another location. If they will not move, the species may become threatened, endangered or extinct.

Explanation:

The way the question is worded, it sounds like there are options for you to chose from that you are not showing. I could help you out more if I actually knew the options.

Extinction is likely if conditions change faster than a species can evolve, and if members of that species lack the traits required to survive in the new environment.

What is an extinction ?

The death of all members of a species of plants, animals, or other organisms is referred to as extinction.

The primary cause of higher extinction rates is habitat loss. Other causes include habitat changes, commercial overexploitation of wildlife, the introduction of harmful nonnative species, pollution, and disease spread.

If a species is unable to adapt to changes in its ecosystem, it may relocate. The species may become threatened, endangered, or extinct if they do not move.

Thus, Extinction is likely if environmental conditions change faster than a species can evolve and members of that species lack the traits needed to survive in the new environment.

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What makes plant green ?

How are the life process in a cell controlled?

What gives plants cells their regular shape ?

Where are the fluids stored in the cell?

What important function does the cell membrane do ?

( can someone help me out please )

Answers

Answer:

Chlorophyll makes plants green.

Enzymes are responsible for dictating what chemical changes happen and when, so thus they control the life process of the cells in our bodies.

The cell wall is what gives a plant cell it's distinct shape (animal cells don't have cell walls btw).

Intracellular fluid, or cytosol, is the fluids stored in the Intracellular compartment.

The cell membrane is the barrier between everything inside the cell, and everything else outside of it. It protects the contents of the cell from harm and releases toxins and other waste from it. The cell membrane is basically like the gate keeper of the cell.

Explanation:

Hope this helps, I tried :)

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