Compare two electrons with quantum number sets (4, 2, 1, +½) and (4, 1, 1, +½). Be specific about each in terms of location and properties, based on their four quantum numbers.

Answers

Answer 1
1) The set of quantum numbers (4, 2, 1, +1/2) represent this:

a) first quantum number, 4: is the the main quantum number, it represents the main energy level, if it were the last electron of the atom, that means that the electron belonged to an element in the row number 4 of the periodic table, that is one element between the atomic numbers 19 and 36.

b:second quantum number, 2; is the sub-level of energy, it indicates the kinf (shepe) of orbital, the number 2 means that the orbital is type d.

c. third quantum number, 1: it represents the orientation of the orbital in the space.

d. fourth quantum number, +1/2: it is the spin quantum number, given that two electrons in an atom cannot have the same set of four quantum numbers  and two electrons can share the same orbital, when one electron has spin +1/2 the other electron in the same orbital has opposite spin (- 1/2).

2) Set of quantum numbers (4, 1, 1, +1/2).

This electron is in the same main energy level than the previous one (4), but it is in a p orbital (second quantum number = 1), instead of a d orbital, and the orientation is px (third quantum number = 1). The spin is +1/2 the same as the other electron.
Answer 2
Final answer:

The quantum numbers (4, 2, 1, +½) and (4, 1, 1, +½) represent two different electrons in an atom.

The first quantum number, n, represents the principal energy level, which is 4 for both electrons.

The second quantum number, l, refers to the type of subshell, where l = 2 corresponds to the d subshell and l = 1 corresponds to the p subshell.

The third quantum number, m₁, specifies the specific orbital within the subshell. For the electron (4, 2, 1, +½), m₁ = 1, indicating a specific orbital within the d subshell. For the electron (4, 1, 1, +½), m₁ = 1, indicating a specific orbital within the p subshell.

The fourth quantum number, m², represents the spin of the electron. In both cases, it is +½, indicating a spin up orientation for both electrons.

Explanation:

The quantum numbers (4, 2, 1, +½) and (4, 1, 1, +½) represent two different electrons in an atom. The first quantum number, n, represents the principal energy level, which is 4 for both electrons. The second quantum number, l, refers to the type of subshell, where l = 2 corresponds to the d subshell and l = 1 corresponds to the p subshell.

The third quantum number, m₁, specifies the specific orbital within the subshell. For the electron (4, 2, 1, +½), m₁ = 1, indicating a specific orbital within the d subshell. For the electron (4, 1, 1, +½), m₁ = 1, indicating a specific orbital within the p subshell.

The fourth quantum number, m², represents the spin of the electron. In both cases, it is +½, indicating a spin up orientation for both electrons.

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Related Questions

One kind of radiation not released by radioactive decay is ______

~A~ Free Protons

~B~ Beta Particles

~C~ Gamma Rays

~D~ Alpha Particles

Answers

the answer is A

[tex]free \: protons[/tex]

A reaction has the following values. Calculate ΔG.
ΔH = -85.5 kJ/mole ΔS = 0.133 kJ/mole.K) Temperature = 110 ºC
1. -35 kJ
2. -64 kJ
3. -86 kJ
4. -136 kJ

Answers

The answer is -136 kJ so answer 4. I hope this helps bunches.

Final answer:

To calculate ΔG, we use the equation ΔG = ΔH - TΔS, converting temperature to Kelvin and substituting the given values. The calculation gives a ΔG of approximately -136.47945 kJ/mol, so the closest answer is -136 kJ.

Explanation:

To calculate the change in Gibbs free energy (ΔG), we can use the Gibbs free energy equation:

ΔG = ΔH - TΔS

First, convert the temperature from Celsius to Kelvin:

T(K) = T(°C) + 273.15 = 110 °C + 273.15 = 383.15 K

Then substitute the given values into the equation:

ΔH = -85.5 kJ/mol

ΔS = 0.133 kJ/(mol)·K

T = 383.15 K

ΔG = (-85.5 kJ/mol) - (383.15 K)(0.133 kJ/(mol)·K)

ΔG = -85.5 kJ/mol - (50.97945 kJ/mol)

ΔG = -136.47945 kJ/mol

The closest answer to ΔG is option 4, -136 kJ.

Enter the molecular equation representing aqueous nitric acid and aqueous ammonia reacting. express your answer as a balanced molecular equation. identify all of the phases in your answer.

Answers

Aqueous nitric acid and aqueous ammonia reacts to form ammonium nitrate 
 HNO₃(aq)+NH₃(aq) = NH₄NO₃(aq)
 HNO₃ +NH3 = NH₄ (+) + NO₃ (-)
Therefore the net ionic equation will be;
 H⁺(aq) + NH₃ = NH₄⁺ (aq)

Answer : The balanced chemical reaction will be,

[tex]HNO_3(aq)+NH_3(aq)\rightarrow NH_4NO_3(aq)[/tex]

Explanation :

Balanced chemical reaction : It is a reaction in which the number of atoms of individual elements present on reactant side must be equal to the product side.

As per question.

When aqueous nitric acid react with aqueous ammonia then it gives ammonium nitrate as a product.

The balanced chemical reaction will be,

[tex]HNO_3(aq)+NH_3(aq)\rightarrow NH_4NO_3(aq)[/tex]

This reaction is an acid-base reaction in which an acid react with a base to give salt and water as a product.

If i initially have 4.0 l of a gas at a pressure of 1.1 atm, what will the volume be if i increase the pressure of 3.4 atm?

Answers

Final answer:

According to Boyle's Law, when the temperature and amount of gas are kept constant, the product of the initial pressure and initial volume is equal to the product of the final pressure and final volume. By plugging in the given values and solving the equation, the new volume is determined to be 1.29 liters.

Explanation:

To solve this problem, we can use the relationship between pressure and volume described by Boyle's Law. According to Boyle's Law, when the temperature and amount of gas are kept constant, the product of the initial pressure and initial volume is equal to the product of the final pressure and final volume.

Mathematically, this can be represented as P1 * V1 = P2 * V2, where P1 and V1 are the initial pressure and volume, and P2 and V2 are the final pressure and volume.

In this case, the initial pressure is 1.1 atm and the initial volume is 4.0 L. If we increase the pressure to 3.4 atm, we can plug these values into the equation to find the new volume:

(1.1 atm) * (4.0 L) = (3.4 atm) * (V2)

Solving for V2, we divide both sides of the equation by 3.4 atm:

V2 = (1.1 atm * 4.0 L) / 3.4 atm = 1.29 L

Therefore, the new volume will be 1.29 liters.

•In carrying out an experiment based on this reaction, 2.45 L of dinitrogen tetroxide were used. How many liters of nitrogen dioxide are produced? Temperature and pressure were held constant. Work must be shown in order to earn credit.

Answers

Dinitrogen  tetroxide   decomposes  to   give  nitrogen  dioxide  according  to   equation  below
N2O4--->2NO2
According  to  avogadros law
1 moles  =22.4  l
what  about  2.45 l
=2.45l  x1  mole/22.4=0.1094 moles
by  use  of  reacting  ratio  that  1 :2
the  moles of  No2  =  0.1094  x2=0.2188 moles

1 moles=  22.4 l
what  about  0.2188moles
=(0.2188moles x22.4  l) /1moles=4.90  L

What volume of a 2.5 M stock solution of acetic acid (HC2H3O2) is required to prepare
100.0 milliliters of a 0.50 M acetic acid solution?

Use the equation

Mconcentrated × Vconcentrated = Mdilute × Vdilute.

90points given to correct answer

Answers

 

Answer is: volume is 20 mL.
c₁(CH₃COOH) = 2,5 M.
c₂(CH₃COOH) = 0,5 M.
V₂(CH₃COOH) = 100 mL.
V₁(CH₃COOH) = ?
c₁(CH₃COOH) · V₁(CH₃COOH) = c₂(CH₃COOH) · V₂(CH₃COOH).
2,5 M · V₁(CH₃COOH) = 0,5 M · 100 mL.
V₁(CH₃COOH) = 0,5 M · 100 mL ÷ 2,5 M.
V₁(CH₃COOH) = 20 mL ÷ 1000 mL/L =0,02 L.

Answer:

20 milliliters

Explanation:

I don't cap

how many grams of ammonia would be formed from the complete reaction of 4.50 moles hydrogen

Answers

Answer:

51 grams of ammonia would be formed.

Explanation:

[tex]3H_2+N_2\rightarrow 2NH_3[/tex]

Moles of hydrogen gas = 4.50 moles

According to reaction, 3 moles of hydrogen gas gives 2 moles of ammonia gas.

Then 4.50 moles of hydrogen gas will give:

[tex]\frac{2}{3}\times 4.50 mol=3.00 mol[/tex]of ammonia

Mass of 3.00 moles of ammonia:

[tex]17 g/mol\times mol=51 g[/tex]

51 grams of ammonia would be formed.

Final answer:

To find out how many grams of ammonia are produced from 4.50 moles of hydrogen, the balanced chemical equation for the synthesis of ammonia and the 3:2 mole ratio between hydrogen and ammonia are used. It is calculated that 4.50 moles of hydrogen will produce 3.00 moles of ammonia which is equivalent to 51.093 grams of ammonia.

Explanation:

To determine how many grams of ammonia would be formed from the complete reaction of 4.50 moles of hydrogen, we must use the balanced chemical equation for the synthesis of ammonia:

N2(g) + 3H2(g) → 2NH3(g)

From the equation, we see that 3 moles of hydrogen gas (H2) produce 2 moles of ammonia (NH3). Hence, the mole ratio is 3 moles H2 to 2 moles NH3. To find the amount of ammonia produced from 4.50 moles of hydrogen, we can set up a ratio:

3 moles H2 : 2 moles NH3 = 4.50 moles H2 : x moles NH3

Calculating this gives us:

4.50 moles H2 / 3 moles H2 * 2 moles NH3 = 3.00 moles NH3

To convert moles of NH3 to grams, we need to know the molar mass of NH3, which is approximately 17.031 g/mol:

3.00 moles NH3 * 17.031 g/mol = 51.093 grams of ammonia.

If a radioactive material has a 10 year half-life, how much of a 100 g sample will be left after 30 years?
A) 50 g
B) 6.25 g
C) 12.50 g
D) 25 g

Answers

12.5g, each 10 years you lose a half of what you have at that given moment

Final answer:

After 30 years, 12.5 grams will remain from a 100 grams sample of a radioactive material with a 10-year half-life. This is because the half-life is the period of time it takes for a substance undergoing decay to decrease by half.

Explanation:

The concept in question is related to radioactive decay and the half-life of a substance, both core concepts in physics and nuclear chemistry. For a substance with a half-life of 10 years, after each period of 10 years, it will be reduced to half of its previous amount. So, in a timeline, starting with 100 grams of this substance, after 10 years, you'll have 50 grams left. 10 years later (i.e., 20 years total), half of these 50 grams decay, leaving you with 25 grams. After another 10 years (i.e., 30 years total), half of this 25 grams decays, leaving you with 12.5 grams. Thus, in answer to your question, after 30 years of a 100 g sample of radioactive material with a 10-year half-life, 12.5 grams of it will remain.

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Explain, in detail, how you convert grams of one substance to grams of something else. Be specific and include each step

Answers

Given the mass (in grams) of a reactant A, first divide this by the molar mass of A to get the number of moles of A. Then balance the chemical reaction, and divide the number of moles of A by the coefficient of A in the balanced reaction. Next, find the coefficient of the product (B) in the reaction, and multiply this by the result from the previous operation. Finally, multiply by the molar mass of B to get the final answer in grams of the product B.

How many grams of hcl can be produced if 7.25 g of cl2 is reacted with an unlimited supply of h2?

Answers

Did you ever get the correct answer?


Final answer:

To find the mass of HCl produced, use stoichiometry based on the balanced chemical equation.

Explanation:

To find the number of grams of HCl that can be produced, we need to use the stoichiometry of the balanced chemical equation. From the equation, we can see that for every 2 moles of AlCl3, 6 moles of HCl are produced. Therefore, we can set up a proportion:

2 moles AlCl3 / 6 moles HCl = 249 g AlCl3 / x g HCl

Solving for x, we find that x = 747 g HCl. Therefore, 747 grams of HCl can be produced when 249 g of AlCl3 is reacted.

An acidic substance
a) releases OH- ions
b) releases OH+ ions
c) releases H- ions
d) releases H+ ions

Answers

D.) releases H+ ions
a) releases OH- ions

Hope this helped!

In order to from magma, what must happen to sedimentary, metamorphic, or igneous rocks?

Answers

sedimentary rocks, metamorphic rocks, and igneous rocks to form magma they must be under extreme heat and pressure.  

:D

If a hurricane destroyed an entire U.S. city, what category would it most likely be?
A)category 1 or 2
B)category A or B
C)category X or Y
D)category 4 or 5

Answers

Hello,

Here is your answer:

The proper answer to this question is option D "category 4 or 5".

Your answer is D.

If you need anymore help feel free to ask me!

Hope this helps!

Which of the following is an example of a defined contribution plan?'

a) 401(k)
b) Keogh plan
c) Both a and b

Answers

Hello
It's both a and b

401(k) and  Keogh plan both are  an example of a defined contribution plan and the correct option is option C.

What is defined contribution plan?

A defined contribution (DC) plan is a retirement plan that's typically tax-deferred, like a 401(k) or a 403(b), in which employees contribute a fixed amount or a percentage of their paychecks to an account that is intended to fund their retirements.

In addition, the sponsor company can match a portion of employee contributions as an added benefit.

These plans place restrictions that control when and how each employee can withdraw from these accounts without penalties.

Therefore, 401(k) and  Keogh plan both are  an example of a defined contribution plan and the correct option is option C.

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How many grams of acetylene are produced by adding water to 5.00 g CaC2?

Answers

Answer:

2.03125g of acetylene

Explanation:

First thing's first, we have to write out the balanced chemical equation;

CaC2(s) + 2H2O(l) → Ca(OH)2(aq) + C2H2(g)

Water is in excess, so CAC2 is our limiting reactant. i.e it determines the amount of product that would be formed.

1 mol of CaC2 produces 1 mol of C2H2

In terms of mass;

Mass = Number of moles * Molar mass

where the molar mass of the elements are;

Ca = 40g/mol

C = 12g/mol

H = 1g/mol

CaC2 = 40+ (2*12) = 64g/mol

C2H2 =( 2 * 12) + ( 2 * 1) = 26g/mol

64g (1 * 64g/mol) of CaC2 produces 26g ( 1mol * 26g/mol) of C2H2

5g would produce x?

64 = 26

5 = x

Upon solving for x we have;

x = (5 * 26) / 64

x = 2.03125g

Final answer:

By using a balanced chemical equation and molar conversions, we can calculate that adding water to 5.00 g of CaC2 will produce approximately 2.03 grams of acetylene.

Explanation:

In order to find out how many grams of acetylene are produced by adding water to 5.00 g of CaC2, we need to start by writing a balanced chemical equation for the reaction: CaC2(s) + 2H2O(l) → C2H2(g) + Ca(OH)2(aq). From this equation, we can see that one molecule of calcium carbide reacts with two molecules of water to produce one molecule of acetylene and one molecule of calcium hydroxide.

Next, we calculate the molar mass of CaC2 which is approximately 64 g/mol. Therefore, 5.00 g of CaC2 is approximately 0.0781 moles. According to the chemical equation, one mole of CaC2 produces one mole of C2H2, so 5.00 g of CaC2 would also produce 0.0781 moles of acetylene.

Last, we convert the moles of acetylene to grams by multiplying by its molar mass (26.04 g/mol), which gives us approximately 2.03 g of acetylene. Therefore, approximately 2.03 grams of acetylene are produced by adding water to 5.00 g of CaC2.

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By analogy to examples given in the text, predict what gas forms when na2so3(s) reacts with hcl(aq). express your answer as a chemical formula.

Answers

Answer: The gas formed by the reaction of sodium sulfite and hydrochloric acid is [tex]SO_2[/tex]

Explanation:

When sodium sulfite reacts with hydrochloric acid, it leads to the formation of many products.

The chemical equation for the reaction of two reacts are:

[tex]Na_2SO_3(s)+2HCl(aq.)\rightarrow 2NaCl(aq.)+SO_2(g)+H_2O(l)[/tex]

By Stoichiometry of the reaction:

1 mole of solid sodium sulfite reacts with 2 moles of aqueous hydrochloric acid to produce 2 moles of aqueous sodium chloride, 1 mole of sulfur dioxide gas and 1 mole of water molecule.

Hence, the gas formed by the reaction of sodium sulfite and hydrochloric acid is [tex]SO_2[/tex]

The gas formed by the reaction of [tex]{\text{N}}{{\text{a}}_{\text{2}}}{\text{S}}{{\text{O}}_3}[/tex] with HCl is [tex]\boxed{{\text{S}}{{\text{O}}_2}}[/tex]

Further Explanation:

The five types of chemical reactions are as follows:

1. Combination reactions:

These reactions are also known as a synthesis reaction. These are the reaction in which two or more reactants combine to form single product. These are generally accompanied by the release of heat so they are exothermic reactions.

Examples of combination reactions are as follows:

(a) [tex]{\text{Ba}}+{{\text{F}}_2}\to{\text{Ba}}{{\text{F}}_2}[/tex]

(b) [tex]{\text{CaO}}+{{\text{H}}_2}{\text{O}}\to{\text{Ca}}{\left({{\text{OH}}}\right)_2}[/tex]

2. Decomposition reactions:

The opposite of combination reactions is called a decomposition reaction. Here, a single reactant gets broken into two or more products. Such reactions are usually endothermic because energy is required to break the existing bonds between the reactant molecules.

Examples of decomposition reactions are as follows:

(a) [tex]2{{\text{H}}_2}{{\text{O}}_2}\to2{{\text{H}}_2}{\text{O}}+{{\text{O}}_2}[/tex]

(b) [tex]2{\text{NaCl}} \to{\text{2Na+C}}{{\text{l}}_2}[/tex]

3. Displacement reactions

Also known as replacement or metathesis reactions. Here, one of the reactants gets replaced by the other one. Generally, the more reactive element displaces the less reactive element. Both metals and non-metals can take part in displacement reactions.

Examples of displacement reactions are as follows:

(a) [tex]{\text{Cu}}+{\text{AgN}}{{\text{O}}_3}\to{\text{Ag}}+{\text{Cu}}{\left({{\text{N}}{{\text{O}}_3}}\right)_2}[/tex]

(b) [tex]{\text{C}}{{\text{l}}_2}+{\text{KBr}}\to{\text{B}}{{\text{r}}_2}+{\text{KCl}}[/tex]

4. Double displacement reactions

These are the reaction in which ions of two compound interchange with each other to form the product. For example, the general double displacement reaction between two compound AX and BY is as follows:

[tex]{\text{AX}}+{\text{BY}}\to{\text{AY}}+{\text{BX}}[/tex]

Examples of double displacement reactions are as follows:

(a) [tex]{\text{N}}{{\text{a}}_2}{\text{S}}+{\text{HCl}}\to{\text{NaCl}}+{{\text{H}}_2}{\text{S}}[/tex]

(b) [tex]2{\text{KOH}}+{\text{Cu}}{\left({{\text{N}}{{\text{O}}_{\text{3}}}}\right)_2}\to2{\text{KN}}{{\text{O}}_3}+{\text{Cu}}{\left({{\text{OH}}}\right)_2}[/tex]

5. Combustion reactions:

These are the reactions that take place when hydrocarbons are burnt in the presence of oxygen to form carbon dioxide and water. These are also referred to burning.  

Example of combustion reactions are as follows:

(a) [tex]{\text{C}}{{\text{H}}_4}+{{\text{O}}_2}\to{\text{C}}{{\text{O}}_2}+{{\text{H}}_2}{\text{O}}[/tex]

(b) [tex]{{\text{C}}_{10}}{{\text{H}}_{14}}+12{{\text{O}}_2}\to10{\text{C}}{{\text{O}}_2}+4{{\text{H}}_2}{\text{O}}[/tex]

The given reaction occurs as follows:

[tex]{\text{N}}{{\text{a}}_{\text{2}}}{\text{S}}{{\text{O}}_{\text{3}}}\left(s\right)+{\text{2HCl}}\left({aq}\right)\to{\text{2NaCl}}\left({aq}\right)+{\text{S}}{{\text{O}}_{\text{2}}}\left(g\right)+{{\text{H}}_{\text{2}}}{\text{O}}\left(l\right)[/tex]

This is an example of a double displacement reaction. Here [tex]{\text{N}}{{\text{a}}_{\text{2}}}{\text{S}}{{\text{O}}_3}[/tex] reacts with HCl to form NaCl, [tex]{\text{S}}{{\text{O}}_2}[/tex] and [tex]{{\text{H}}_{\text{2}}}{\text{O}}[/tex] . Of all the products formed, NaCl is present in the aqueous phase, [tex]{{\text{H}}_{\text{2}}}{\text{O}}[/tex] is in liquid state and [tex]{\text{S}}{{\text{O}}_2}[/tex] is in gaseous state.

So the gas formed in the above reaction is [tex]{\mathbf{S}}{{\mathbf{O}}_{\mathbf{2}}}[/tex] .

Learn more:

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Answer details:

Grade: High School

Subject: Chemistry

Chapter: Chemical reaction and equation

Keywords: SO2, Na2SO3, HCl, NaCl, H2O, double displacement reaction, combination reaction, combustion reaction, displacement reaction, decomposition reaction, aqueous, liquid, gaseous state.

Which phrase is the best definition for the word common in environmental science?

A. A typical resource
B. A shared resource
C. A worthless resource
D. A rare resource

Answers

I believe that the best definition of the word common in environmental science is a typical resource. A typical resource is a resource that is not hard to find and is very common. The answer to the question will hence be A.
The answer could not be the other three choices because a shared resource is a resource that is used by more than one organism in the environment. A worthless resource is one that has no use in the environment while a rare resource is one that is hard to find.

Answer:

B is correcta-moundo

Explanation:

1. The IMA of the doorknob shown is .
1
0.2
6

2. What is the IMA of the inclined plane shown?
6
6.75
3

3. Choose the mathematical formula expressing work.

W=F x d
W=d/F
W=F/d

Answers

the ima of the doorknob is 6.

Explanation :

(a) The full form of IMA is Ideal Mechanical Advantage. It is given as the ratio of the radius of the wheel and the radius of the axle.

From the figure,

The radius of the wheel is 6 cm

and the radius of the axle is 1 cm.    

[tex]IMA=\dfrac{6\ cm}{1\ cm}=6\ cm[/tex]

So, the IMA of the doorknob is 6.

(b) The IMA of the inclined plane is given by the ratio of the distance covered by the effort (L) and the distance covered by the resistance (h).

So, [tex]IMA=\dfrac{4.5\ m}{1.5\ m}=3[/tex]

So, the IMA of the inclined plane is 3.

(c) Work done is the product of the force acting and the displacement caused.

Mathematically, it can be written as :

[tex]W=F\times d[/tex]

F is applied force

d is the distance or displacement.

Clouds form when water vapor in the air condenses to form liquid water or ice crystals.
a. True
b. False

Answers

Hey there!

I think it's true

Hope this helps!

Always remember, you are a Work Of Art! 
- Nicole <3 :)

Radioactivity in our world _____.
a. is something relatively new
b. is as old as the universe
c. was invented in 1913
d. was caused by atomic bombs

Answers

Radioactivity in our world b. is as old as the universe.
Radioactive atom spontaneously emits energetic particles or waves, while decays on lighter nuclei (atoms with smaller atomic mass). Radioactivity is used to calculate how old is Earth and living things, for that purpose isotope of carbon is used.

What is the atomic mass of chlorine if 75.77% has an atomic mass of 34.97 u and 24.23% has an atomic mass of 36.97 u?

Answers

Atomic mass Cl = 8.9578 + 26.4968 = 35.45 amu

The compound ncl3 is nitrogen trichloride, but alcl3 is simply aluminum chloride. why? check all that apply. check all that apply. the compound alcl3 is an ionic compound (metal and nonmetal), and therefore does not require prefixes\-âso alcl3 is aluminum chloride. ncl3 is a molecular compound (two or more nonmetals), and therefore in its name prefixes indicate the number of each type of atom\-âso ncl3 is nitrogen trichloride. alcl3 is a molecular compound (two or more nonmetals), and therefore in its name prefixes indicate the number of each type of atom\-âso alcl3 is aluminum chloride. the compound ncl3 is an ionic compound (metal and nonmetal), and therefore does not require prefixes\-âso ncl3 is nitrogen trichloride. none of the above.

Answers

The compound  [tex]AlCl_3[/tex] is an ionic compound (metal and nonmetal) and therefore does not require prefixes so  [tex]AlCl_3[/tex] is aluminum chloride.

[tex]NCl_3[/tex] is a molecular compound (two or more nonmetals), and therefore in its name prefixes indicate the number of each type of atom so

[tex]NCl_3[/tex] is nitrogen trichloride.

FURTHER EXPLANATIONBinary Ionic Compound NomenclatureIonic compounds are compounds made up  of metals and nonmetals. Metals are elements that readily lose valence electrons and form positively charged ions called cations. Nonmetals are atoms that readily gain electrons and form negatively charged ions called anions.The electrostatic attraction between these oppositely charged ions pulls and holds them together forming the ionic compound.The compound is named based on the name of the cation and anion that it is made of.The cation name is simply the name of the metal element plus the word ion.The anion name is the first or first two syllables of the name of the nonmetal element plus the suffix -ide.Example: KCl  

                        cation name: potassium ion

                        anion name: chloride

                        compound name: potassium chloride

Covalent (Molecular) Compound NomenclatureMolecular compounds are a group of nonmetal elements that are sharing their electrons for stability. They are named by using prefixes that correspond to their subscripts (how many atoms of the element is present in the molecule).The prefixes include:

        mono - 1                         hexa - 6

        di - 2                               hepta - 7

        tri - 3                               octa - 8

        tetra - 4                           nona - 9

        penta - 5                         deca - 10

The prefix mono- is never written for the first element of a covalent compound but may be used for the second or succeeding elements (e.g. CO is carbon monoxide NOT monocarbon monoxide).Example: [tex]CO_2[/tex]              

                        no. of carbon atom = 1 (mono-)

                        no. of oxygen atom = 2 (di-)

                        name of the compound: carbon dioxide

LEARN MOREIon Formation brainly.com/question/6177640Chemical Formula https://brainly.com/question/4697698

Keywords: nomenclature, ionic, molecular

AlCl3 is an ionic compound, which means that the aluminium cation and chlorine anion make up its structure. Strong electrostatic forces hold the two elements' strong ionic connection together.

Because of this, the compound's name just needs to include the prefix aluminium chloride. However, the substance NCl3 is a molecular molecule, which means that it is made up of two non-metals, namely nitrogen and chlorine.

Prefixes are needed in the name of this element to denote the number of each kind of atom present since the link between these two elements is weaker than the ionic interaction between aluminium and chlorine. Thus, the substance is sometimes referred to as nitrogen trichloride.

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Do all molecules contain only single bonds

Answers

I'm pretty sure some molecules contain double bonds

Answer: The given statement is false.

Explanation:

A single bond is defined as the bond through which two same or different atoms are combined to each other by a single line. It is represented by a hyphen.

For example, C-H shows that both carbon and hydrogen atoms are attached to each other through single bond.

It is not necessary that all the molecules contain a single bond. This is because there are molecules which contain a double or triple bond also.

For example, [tex]H_{2}C=CH_{2}[/tex] is ethene molecule and it contains a double bond.

Therefore, we can conclude that the statement all molecules contain only single bond, is false.

If 25.8 grams of BaO dissolve in enough water to make a 212-gram solution, what is the percent by mass of the solution?
A. 12.2% BaO
B. 8.92% BaO
C. 10.8% BaO
D. 8.22% BaO

Answers

The answer is A. 12.2% BaO

Below is the solution as to how the answer was generated:

Let:

25.8g = mass of solute

212g = mass solution

Equation:

% = (mass of solute / mass solution) x 100

Substitute the given values to the equation:

% = (25.8 / 212) x 100

% = 0.122 x 100

= 12.2%
Correct Answer: Option A i.e. 12.2 % BaO
.....................................................................................................................................

Reason: percent by mass is mathematically expressed as: 
% by mass = [tex] \frac{\text{Weight of solute (g)}}{\text{Weight of solution (g)}} [/tex] X 100

Given: weight of solute (BaO) = 25.8 g weight of solution = 212 g

∴, % by mass of the solution = [tex] \frac{25.8X100}{212} [/tex]
                                              = 12.2 %

 Thus, percent by mass of BaO in solution is 12.2 %

Determine the [oh−] of a solution that is 0.125 m in co32−.

Answers

Final answer:

To estimate the concentration of hydroxide ions ([OH-]) in a 0.125 M carbonate (CO3²-) solution, we would simply use the stoichiometry assuming that each carbonate ion becomes one hydroxide ion, giving an approximate [OH-] value of 0.250 M. This is a simplification and actual values may vary according to equilibrium dynamics.

Explanation:

To determine the concentration of hydroxide ions ([OH-]) in a solution that is 0.125 M in carbonate ions (CO32-), we need to understand the relationship between carbonate and hydroxide ions in an aqueous solution. Carbonate ions can react with water in a basic reaction to form bicarbonate ions (HCO3-) and hydroxide ions (OH-).

In this reaction, each carbonate ion can produce two hydroxide ions. Therefore, if we have a 0.125 M solution of carbonate ions, we could potentially have a hydroxide concentration of 0.125 M × 2 = 0.250 M. But, since this is a basic reaction and not all carbonate will turn into hydroxide ions (due to equilibrium with bicarbonate), we need additional information to calculate the exact hydroxide concentration, such as the equilibrium constant for the reaction.

However, without this information, we can assume a 1:1 stoichiometry for simplicity, giving us an initial approximate [OH-] concentration of 0.250 M. This is a simplification and the actual concentration could be less due to the reasons stated above.

For more accurate results, we would use the equilibrium constant for the reaction between carbonate and water to calculate the exact [OH-].

Based on the activity series, which metals could X represent in the reaction below? (Note: The equation is not balanced.)
X + MgSO4 —> Mg + XSO4
A) Sr
B) Al
C) Sn
D) Au

Answers

Answer is: A) Sr (strontium).
The reactivity series is a series of metals from highest to lowest reactivity. Metal higher in the reactivity series will displace another.
Strontium is only higher in this group from magnesium. Strontium is stronger reducing agent than magnesium, gives electrons easier.

In which of the following is the solution concentration expressed in terms of molarity?

A. 10g of solute/ 1000g of solution

B. 10g of solute/ 1000mL of solution

C.10mL of solute/ 1L of solution

D.10 mol of solute/ 1L of solution

Answers

Answer:
D. 10 mol of solute/ 1L of solution

Explanation:
Molarity is used to express the concentration of the solution. It is expressed as the number of moles of solute per liter of solution

Molarity = moles of solute / liters of solution
This means that molarity has the units moles/liter

The only option satisfying this is the last one.

Hope this helps :)
Final answer:

Molarity is a concentration unit that is expressed as the number of moles of the solute per liter of solution. Only Option D (10 mol of solute/ 1L of solution) presents the solution concentration in terms of molarity.

Explanation:

In chemistry, molarity is a concentration unit that is expressed as the number of moles of the solute per liter of solution. In this context:
Option A represents a weight to weight percent concentration, not molarity.
Option B, though it seems similar to molarity, is not equivalent due to using mass (g) instead of moles for the solute.
Option C would be considered dilution, wherein the volume of a solution is increased, thus decreasing the solute's overall molarity.
Only Option D (10 mol of solite/ 1L of solution) directly aligns with the definition of molarity and represents the solution concentration in terms of molarity.

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Why is a drip irrigation system more sustainable than traditional spraying methods of irrigating crops?

A. It leads to reduced river flow.
B. It causes the water table to drop.
C. It reduces pollution from runoff.
D. It decreases water quality.

Answers

The appropriate answer is c. It reduces pollution from runoff. Drip irrigation supplies water directly to the roots of the plants. This reduces loss of water from infiltration and evaporation. Water with nutrients is supplied directly to the roots of plants and so this reduces the chance of excess water infiltrating the soil and contaminating the ground water with pollutants. 

Answer: C

Explanation: Just took the test.

The data in the table describes the properties of three substances. Based on the data, identify whether each substance is ionic, polar covalent, or non-polar covalent.

Answers

Substance A is ionic because in molten and aqueous solution conduct electricity and dissolves in water. This is because it dissociate in ions and ion conduct electicity and dissolve in polar molecules (water). Ionic bond is very strong (high melting point).
Substance B non polar covalent, because it is not dissolve in polar molecules and has weak intermolecular forces (low melting point).
Substance C is polar covalent because polar molecules have stronger intermolecular forces than non-polar and higher melting points.

What is the single factor that classifies an element as a transition metal? Question 16 options:

A.the highest occupied orbital is aa "d" orbital

B. all orbitals are filled with electrons except the "s" orbitals

C. only the "s" orbitals are filled

D. aall "s" and "p" orbitals are filled

Answers

A...Just got it right on my exam:)

Answer: Option (A) is the correct answer.

Explanation:

A transition element is defined as the element which has incompletely filled d-orbital.

For example, atomic number of chromium is 24 and its electronic configuration is [tex][Ar]4s^{1}3d^{5}[/tex].

Also, sometimes the s-orbital is completely filled and sometimes it is half-filled.

Hence, we can conclude that a single factor that classifies an element as a transition metal is that the  highest occupied orbital is a "d" orbital.

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