The student is now told that the four solids, in no particular order, are magnesium bromide (MgBr2), sugar (C6H12O6), butanoic acid (C3H7COOH), and potassium bromide (KBr). Assuming that conductivity is correlated to the number of ions in solution, rank the four substances based on how well a 0.20 M solution in water will conduct electricity. Rank from most conductive

Answers

Answer 1

Answer:

MgBr2 > KBr > C3H7COOH > C6H12O6

Explanation:

A strong electrolyte is a solution that dissociate completely in solution. A weak electrolyte does not dissociate completely in solution. The more the number of particles in solution, the more the conductivity of the solution.

For the substances Lister in the question;

MgBr2(aq) ------> Mg^2+(aq) + 2Br^-(aq)

KBr(aq) -----> K^+(aq) + Cl^-(aq)

C3H7COOH(aq) ------->C3H7COO^-(aq) + H^+(aq) (poorly dissociates)

C6H12O6 does not dissociate because it is molecular


Related Questions

1-Witch compound is composed of the most atoms?

A- H25O4. B-Li2N.
C-Mg(OH)2. D-NaF.

2-Witch compound has the most hydrogen atoms?

A-NaOH. B-C2H4O.
C-H3PO4. D-(NH3)2SO4.

3-Witch compound has the greatest molar más?

A-H2O. B-C6H12O6.
C-HNO3. D-C2H6.

4-What is the molar mass for Ca(C2H3O2)2?

A-71g. B-99g.
C-158g. D-148g

5-show work for #4.

Answers

Answer:

good luck with these problems I've never seen anything like it

is volcanoes eruption rapid change or slow change​

Answers

Answer:

Fast change

Explanation:

Weathering, erosion, and deposition are examples of slow change. Earthquakes, erupting volcanoes, and landslides happen fast. Therefore, they can change the Earth's surface very quickly.

P is the dominant allele for purple. p is the recessive allele for white. A Pp flower crosses with a pp flower. What are the possible genotypes? What are the odds of getting each genotype? What are the odds of getting a purple flower? What are the odds of getting a white flower? * PLS HELPASDKSOAD

Answers

Answer:

Pp, Pp, pp, pp, 50% chance at purple and 50% chance at white

Explanation:

How many atoms are there in 15.0 grams of Sulfur (S)?


A) 7.99×10−22 atoms of S

B) 7.77×10−25 atoms of S

C) 2.82×1023 atoms of S

D) 9.03×1024 atoms of S

Answers

Answer:

C

Explanation:

Mol x Avogadro's number

Mol : mass / molar mass

Avogadro's no: 6.02E+23

In 15.0 g of sulfur, there are 2.82 × 10²³ atoms of S (C).

We want to calculate the number of atoms in 15.0 g of sulfur. We will need 2 conversion factors.

What is a conversion factor?

A conversion factor is an arithmetical multiplier for converting a quantity expressed in one set of units into an equivalent expressed in another.

To convert 15.0 g of sulfur into atoms, we need to consider the following conversion factors:

The molar mass of S is 32.07 g/mol.1 mol contains 6.02 × 10²³ atoms (Avogadro's number).

[tex]15.0g \times \frac{1mol}{32.07g} \times \frac{6.02 \times 10^{23}atoms }{1mol} = 2.82 \times 10^{23} [/tex]

In 15.0 g of sulfur, there are 2.82 × 10²³ atoms of S (C).

Learn more about Avogadro's number here: https://brainly.com/question/15989275

Which of these happens when the warm water gets to the North and South Poles

Answers

Answer:It creates a heat source on the cold water and the molecules act against each other and then it becomes steam.

Explanation:I had to take this on a test.

Which of the following is true about the offspring of an organism Y that reproduces sexually? *
A:The offspring would show all the traits of Y.
B:The offspring would be identical in size to Y.
C:The offspring would have identical DNA as Y.
D:The offspring would show some traits of the parent other than Y.

Answers

Answer:

D

Explanation:

It's essentially just half and half, meaning the offspring would have the nose of the mother, the eyes of the fathers, basically crud like that

The statement that is true about the offspring of an organism Y that reproduces se*ually is that offspring would show some traits of the parent other than Y.

What is se*ual reproduction?

Se*ual reproduction is the type of reproduction that involves two organisms to produce an offspring.

The process of se*ual reproduction involves one male and one female organism of the same species.

This means that the offspring of organisms that reproduced se*ually will show traits of both organism involved.

Therefore, statement that is true about the offspring of an organism Y that reproduces se*ually is that offspring would show some traits of the parent other than Y.

Learn more about reproduction at: https://brainly.com/question/13434823

#SPJ2

Write 5 sentences explaining how ionic compounds are formed.

Answers

Explanation:

Ionic bonds are special interatomic or intramolecular forces of attraction within a compound.

They are formed between atom with large electronegativity differences. These atoms are usually metals and non- metalsThe transfer of electrons from the metals to the non-metals makes both specie becomes ions. This leads to the stability of the ions as they are isoelectronic with the noble gases. The electrostatic attraction between the ions that are oppositely charged leads to the formation of ionic bonds.

Can some please answer these two questions?

Answers

Answer:

1. Mass of potassium (K) = 203.32 g

2. Number of mole of As = 7.53 moles

Explanation:

1. Determination of the mass of potassium (K)

Molar mass of K = 39.1 g/mol

Number of mole of K = 5.2 moles

Mass of K =.?

Mole = mass / Molar mass

5.2 = mass of K / 39.1

Cross multiply

Mass of K = 5.2 × 39.1

Mass of potassium (K) = 203.32 g

2. Determination of the number of mole of Arsenic (As)

Molar mass of As = 74.92 g/mol

Mass of As = 563.9 g

Number of mole of As =.?

Mole = mass /Molar mass

Number of mole of As = 563.9 / 74.92

Number of mole of As = 7.53 moles

HELP ASAP PLEASE, I WILL GIVE BRAINLIEST

Answers

Answer:

1.

Solid: A, B, and C.

Liquid: D and E.

Gas: F.

2.

Into liquid on warm day (37 °C): D and C.

Into a liquid only when heated slightly: C and E.

From liquid to solid readily when placed into a freezer (0 °C): D.

Explanation:

Hello!

In this case, since the melting point is the temperature at which a substance change from solid to liquid and the boiling point from liquid to gas, we understand that substance at a temperature below the melting point is solid, whereas above are liquid; moreover, below the boiling point they are liquid and above gaseous.

In such a way, we have:

1.

Solid: A, B, and C.

Liquid: D and E.

Gas: F.

2.

Into liquid on warm day (37 °C): D and C.

Into a liquid only when heated slightly: C and E.

From liquid to solid readily when placed into a freezer (0 °C): D.

Best regards!

Draw the reactants and complete the mechanism by drawing in the appropriate electron-flow arrows (including stereochemistry) for the following SN2 reaction of an alkyl bromide. Represent the nucleophile as an ion. Draw all missing reactants and/or products in the appropriate boxes by placing atoms on the grid and connecting them with bonds, including charges where needed. Indicate the mechanism by drawing the electron-flow arrows on the molecules. Arrows should start on an atom or a bond and should end on an atom, bond, or where a new bond should be created.

Answers

Answer:

Wow I don't that hhehehe sorry

The end point indicates the completion of the titration by physical change (which is
usually color change)*

True
False

Answers

your answer would be, true.

Universe L, recently discovered by an intrepid team of chemists who also happen to have studied interdimensional travel, quantum mechanics works just as it does in our universe, except that there are seven d orbitals instead of the usual number we observe here. Use these facts to write the ground-state electron configurations of the sixth and seventh elements in the first transition series in Universe L.

Answers

Answer:

Iron; [Ar] 3d6 4s2

Cobalt; [Ar] 3d6 4s2 4p1

Explanation:

We know that in our universe, there are five d orbitals known. However, in this strange universe L, there are only three d orbitals known.

The sixth and seventh first row transition elements are iron and cobalt. In universe L, the electronic configuration of iron and cobalt will be written as;

Iron; [Ar] 3d6 4s2

Cobalt; [Ar] 3d6 4s2 4p1

There are
main variables that every experiment should have

Answers

Answer:

Experiments should have the independent variable, and a dependent variable, as well as a constant variable and control variables.

Explanation:

Constants

Experimental constants are values that do not change either during or between experiments. Many natural forces and properties, such as the speed of light and the atomic weight of gold, are experimental constants. In some cases, a property can be considered constant for the purposes of an experiment even though it technically could change under certain circumstances. The boiling point of water changes with altitude and acceleration due to gravity decreases with distance from the earth, but for experiments in one location these can also be considered constants.

Independent Variable

The independent variable in an experiment is the variable whose value the scientist systematically changes in order to see what effect the changes have. A well-designed experiment has only one independent variable in order to maintain a fair test. If the experimenter were to change two or more variables, it would be harder to explain what caused the changes in the experimental results. For example, someone trying to find how quickly water boils could alter the volume of water or the heating temperature, but not both.

Dependent Variable

A dependent variable is what the experimenter observes to find the effect of systematically varying the independent variable. While an experiment may have multiple dependent variables, it is often wisest to focus the experiment on one dependent variable so that the relationship between it and the independent variable can be clearly isolated. For example, an experiment could examine how much sugar can dissolve in a set volume of water at various temperatures. The experimenter systematically alters temperature (independent variable) to see its effect on the quantity of dissolved sugar (dependent variable).

Control

A controlled variable is a variable that could change, but that the experimenter intentionally keeps constant in order to more clearly isolate the relationship between the independent variable and the dependent variable. For example, an experiment examining the relationship between how much sunlight plants receive (independent variable) and how tall they grow (dependent variable) should make sure none of the other factors change. The experimenter should control how much water the plants receive and when, what type of soil they are planted in, and as many other variables as possible.

Which compound has the most hydrogen atoms?

A. NaOH B. C2H4O C. H3PO4 D. (NH3)2SO4

Answers

The answer is B because there are two hydrogen atoms

Help it is easy I think

Why must scientific investigations be replicable?

A ) to prove the reliability of the results

B)to confirm ideas and theories

C)to prove its validity within the scientific community

D)to improve the investigation each time

Answers

Answer:a

Explanation:

Answer:

Answervis A.

Explanation:

Because,so that other scientists can validate the results.

I hope it's helpful!

What is the atomic number of sulfur?
How many of its s orbitals are filled?
How many of its p orbitals are filled?

Answers

Answer:

z=16 and five p orbitals are filled and three s orbitals are filled

Someone please help me plz :(please

Answers

Answer:

4

Explanation:

the actual change in phase is 4 on the diagram

Assume you mixed 5 µl of your cod fish homogenate with 195 µl working solution. The fluorometer displays a measurement of 12.2 µg/ml. What is the protein concentration of the cod fish homogenate?

Answers

Answer:

Hallo

Explanation:

I took that question

What is the surface area of the rectangular prism below? 7 7 14

Answers

Answer:

A=490

Explanation:

Hope this helps :)

Right rectangular prism

Solve for surface area

A=490

l Length  

7

w Width  

7

h Height  

14

h

l

w

d

l

l

h

w

h

w

Solution

the area would be 490

C2H5OH + 302 →2C02 + 3H20, what is the mole ratio
of ethanol to water?

Answers

The mole ratio  of ethanol to water : 1 : 3

Further explanation

Given

Reaction

C2H5OH + 302 →2C02 + 3H20

Required

The mole ratio

Solution

In a chemical reaction equation, the mole ratio of the reacting compound (reactants or products) is indicated by the reaction coefficient

The reaction coefficient is determined from the number of elements reacting by holding the principle that the number of elements in the reactants is equal to the number of elements in the product

In the above reaction, the ethanol-C2H5OH coefficient is 1 while the reaction coefficient of water-H20 is 3 so that the mole ratio = 1: 3

A substance made up of two or more types of atoms that are NOT chemically combined is called a(n)
A
element
B
mixture
с
compound
D
pure substance

Answers

Answer:

pure substance

Explanation:

it does not combine to anything.

I need help fast plz atoms

Answers

Answer:

proton and neutron in region one and electron orbiting in region two is the answer

please help the anion , cation , neither is the options. for all of them​

Answers

Answer:

Cation

Anion

Cation

Cation

Explanation:

If an atom, or atoms, has a balanced number of electrons (negative charge) and protons (positive charge) they are neutral overall. However, if they are not balanced, they will be charged. These charged species are called ions.

What is an anion?

An anion has more electrons than protons, consequently giving it a net negative charge. For an anion to form, one or more electrons must be gained, typically pulled away from other atoms with a weaker affinity for them. The number of electrons gained, and so the charge of the ion, is indicated after the chemical symbol, e.g. chlorine (Cl) gains one electron to become Cl-, whilst oxygen (O) gains two electrons to become O2-.

What is a cation?

A cation has more protons than electrons, consequently giving it a net positive charge. For a cation to form, one or more electrons must be lost, typically pulled away by atoms with a stronger affinity for them. The number of electrons lost, and so the charge of the ion, is indicated after the chemical symbol, e.g. silver (Ag) loses one electron to become Ag+, whilst zinc (Zn) loses two electrons to become Zn2+.

Source: Cation vs Anion: Definition, Chart and the Periodic Table By  

Karen Steward (PhD)

Someone please help me please

Answers

Answer:

1. Solid

2. Melting Point

3. liquid

4. Boiling point

5. gas

How many moles of tin, Sn, are in 2500 atoms of tin?

Answers

Answer:

4.2 × 10⁻²¹ moles Sn

General Formulas and Concepts:

Math

Pre-Algebra

Order of Operations: BPEMDAS

Brackets Parenthesis Exponents Multiplication Division Addition Subtraction Left to Right

Chemistry

Atomic Structure

Using Dimensional AnalysisAvogadro's Number - 6.022 × 10²³ atoms, molecules, formula units, etc.Explanation:

Step 1: Define

2500 atoms Sn

Step 2: Identify Conversions

Avogadro's Number

Step 3: Convert

Set up:                              [tex]\displaystyle 2500 \ atoms \ Sn (\frac{1 \ mol \ Sn}{6.022 \cdot 10^{23} \ atoms \ Sn})[/tex]Multiply:                            [tex]\displaystyle 4.15144 \cdot 10^{-21} \ moles \ Sn[/tex]

Step 4: Check

Follow sig fig rules and round. We are given 2 sig figs.

4.15144 × 10⁻²¹ moles Sn ≈ 4.2 × 10⁻²¹ moles Sn

Which solution has a higher percent ionization of the acid, a 0.10M solution of HC2H3O2(aq) or a 0.010M solution of HC2H3O2(aq)

Answers

Answer:

The solution 0.010 M has a higher percent ionization of the acid.

Explanation:

The percent ionization can be found using the following equation:

[tex]\% I = \frac{[H_{3}O^{+}]}{[CH_{3}COOH]} \times 100[/tex]    

Since we know the acid concentration in the two cases, we need to find [H₃O⁺].          

By using the dissociation of acetic acid in the water we can calculate the concentration of H₃O⁺ in the two cases:

1. Case 1 (0.1 M):

CH₃COOH(aq) + H₂O(l) ⇄ CH₃COO⁻(aq) + H₃O⁺(aq)   (1)

0.1 - x                                         x                     x

[tex] Ka = \frac{[CH_{3}COO^{-}][H_{3}O^{+}]}{[CH_{3}COOH]} [/tex]  (2)

Where:

Ka: is the dissociation constant of acetic acid = 1.7x10⁻⁵.

[tex] 1.7 \cdot 10^{-5} = \frac{x^{2}}{0.1 - x} [/tex]  

[tex] 1.7 \cdot 10^{-5}*(0.1 - x) - x^{2} = 0 [/tex]

By solving the above equation for x we have:

x = 1.29x10⁻³ M = [CH₃COO⁻] = [H₃O⁺]

Hence, the percent ionization is:      

[tex] \% I = \frac{1.29 \cdot 10^{-3} M}{0.1 M} \times 100 = 1.29 \% [/tex]                      

   

2. Case 2 (0.01 M):

The dissociation constant from reaction (1) is:

[tex] Ka = \frac{[CH_{3}COO^{-}][H_{3}O^{+}]}{[CH_{3}COOH]} [/tex]

With [CH₃COOH] = 0.01 M

[tex] 1.7 \cdot 10^{-5} = \frac{x^{2}}{0.01 - x} [/tex]  

[tex]1.7 \cdot 10^{-5}*(0.01 - x) - x^{2} = 0[/tex]

By solving the above equation for x:

x = 4.04x10⁻⁴ M = [CH₃COO⁻] = [H₃O⁺]    

Then, the percent ionization for this case is:

[tex] \% I = \frac{4.04 \cdot 10^{-4} M}{0.01 M} \times 100 = 4.04 \% [/tex]

As we can see, the solution 0.010 M has a higher percent ionization of the acetic acid.

Therefore, the solution 0.010 M has a higher percent ionization of the acid.

I hope it helps you!    

The 0.010 M solution of CH₃COOH has a higher percent ionization compared to the 0.10 M solution.

Percentage ionization formula

The percent ionization of the acid solution is determined using the following equation:

Percent ionization = [H₃O⁺]/[CH₃COOH]

What is the ionization equation of CH₃COOH

Ionization equation of CH₃COOH is given below:

CH₃COOH + H₂O  ⇄ CH₃COO⁻ + H₃O⁺

Ka = 1.7 * 10⁻⁵

Ka = [CH₃COO⁻][H₃O⁺]/[CH₃COOH]

Calculating [H₃O⁺]

The  [H₃O⁺] in both solutions is determined first.

For the 0.1 M solution:

CH₃COOH(aq) + H₂O(l) ⇄ CH₃COO⁻(aq) + H₃O⁺(aq)   (1)

0.1 - x                                         x                     x

Using the equation of dissociation constant:

Ka =  [CH₃COO⁻][H₃O⁺]/[CH₃COOH]

1.7 * 10⁻⁵ = x₂/0.1 - x

assuming x is very small;

x = 1.29 * 10 ⁻³ M

Hence, [H₃O⁺] = 1.29 * 10 ⁻³ M

For the 0.010 M solution

CH₃COOH(aq) + H₂O(l) ⇄ CH₃COO⁻(aq) + H₃O⁺(aq)   (1)

0.01 - x                                         x                     x

Using the equation of dissociation constant:

Ka =  [CH₃COO⁻][H₃O⁺]/[CH₃COOH]

1.7 * 10⁻⁵ = x₂/0.01 - x

assuming x is very small;

x = 4.04 * 10 ⁻⁴ M

Hence, [H₃O⁺] = 4.04 * 10 ⁻⁴ M

Calculating the percent ionization    

For the 0.1 M solution

Percent ionization = (1.29 * 10 ⁻³ M/0.1) * 100%

Percent ionization = 1.29%

For the 0.01 M solution:

Percent ionization = (4.04 * 10 ⁻⁴ M/0.1) * 100%

Percent ionization = 4.04 %

Therefore, the 0.010 M solution of CH₃COOH has a higher percent ionization compared to the 0.10 M solution.

Learn more about percent ionization at: https://brainly.com/question/15073874

Name the following ionic compounds. Use the periodic table, the table of common polyatomic ions, and
the transition metal charges chart found here.
Al₂O3:
I
Name
Formula and
Charge
DONE
Ammonium
NH4
Hydroxide
OH
Nitrate
Carbonate
NO3-
CO32-
SO,2-
PO, 3-
Sulfate
Phosphate

Answers

Answer: aluminum oxide

Explanation:

Answer:

aluminum oxide

Explanation:

On the periodic table, the elements known as noble gases are all found in

Answers

Answer:

Group 18 (VIIIa)

Explanation:

Noble gas, any of the seven chemical elements that make up Group 18 (VIIIa) of the periodic table.

Need help as fast as possible please?

Answers

Answer:
9

Step - by - step explanation:

What is the process called to prepare a ceramic by heating a slurry of a powder of an inorganic substance in water to a very high temperature under pressure

Answers

Answer: The process that is used to prepare ceramic is sintering.

Explanation:

Sintering is defined as the process in which number of particles are fused together to form one solid mass by the applying pressure at high temperatures.

Ceramic is an material that is made by taking mixtures of clay, earthen elements, powders and water.

When this mixture (slurry of the powders) is heated at a very high temperature and under high pressure, ceramic is formed.

Hence, the process that is used to prepare ceramic is sintering.

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