12. When filling a set of orbitals of equal energy which of the following is true?

Answers

Answer 1

Missing options

a. There are no sets of orbitals of equal energy

b. Two electrons will occupy the same orbital rather than separate orbitals

c. Two electrons will occupy different orbitals and have opposing spins.

d. Two electrons will occupy different orbitals and have like spins

Answer:

d. Two electrons will occupy different orbitals and have like spins

Explanation:

When the orbitals are degenerate ( equal energy)  pairing does not start until each orbital in a particular subshell gets one electron each. After that pairing start. This is the basis of Hund's rule of maximum multiplicity.

When the electrons have occupied different orbitals in the same subshell their spin remains same, because opposite spin electrons exist in the same orbitals. and this pattern continues in the second, so the electron in the second orbital will resemble to that of the first orbital electron


Related Questions

Discuss the differences expected in the IR spectra of methyl benzoate vs methyl m-nitrobenzoate.

Answers

Answer:

im sorry but i havent reached that topic as of yet

Explanation:

A piece of iron is heated to 95.0 celsius and then placed in an insulated vessel containing 250. grams of water at 25.0 celsius. when the system comes to equilibrium the temperature of the system is 35.0 celsius. what is the mass in g of the iron? assume no heat is lost to the surroundingsSpecific heat/J.g^-1 K^-1iron 0.450water 4.184 (A) 4.48 g (B) 41.7 g (C) 387 g (D) 612 g

Answers

Answer:

c) 387g

Explanation:

Water;

Mass = 250g

Specific heat = 4.184

Initial Temp, T1 = 25 + 273 = 298K

Final Temp, T2 = 35 + 273 = 308K

Heat = ?

H = mc(T2 - T1)

H = 250 * 4.184 (308 - 298)

H = 10460 J

Iron;

Initial Temp, T2 = 95 + 273 = 368K (Upon converting to kelvin temperature)

Mass = ?

Final Temp, T1 = 35 + 273 = 308

Heat = 10460 (Heat lost by iron is qual to heat gained by water)

Specific heat = 0.45

H = mc(T2-T1)

M = 10460 / [0.45 (308 - 368)]

M = 10460 / 27

M = 387g

The mass of the iron has been calculated as 387.40 grams.

Specific heat can be defined as the amount of heat required to raise the temperature of 1 gram of a substance by 1 degree celsius.

Since in the reaction there has been no heat loss, the heat released by iron has been equivalent to heat absorbed by the water in the calorimeter.

The heat absorbed by calorimeter:

Heat = mass × specific heat of water × change in temperature

Heat absorbed = 250 grams × 4.184 J/g[tex]\rm ^\circ C[/tex] × (308 K - 298 K)

Heat absorbed = 10460 J

The heat released by Iron can be given by:

Heat released = mass × specific heat of water × change in temperature

Heat released = mass × 0.45 J/g.K × (308 K - 368 K)

Heat released = mass × 27

Heat released = Heat absorbed

Mass of Iron × 27 = 10460 J

Mass of iron = 387.40 grams.

The mass of the iron has been calculated as 387.40 grams.

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Na2CO3 + H2SO4 Na2SO4 + CO2 + H2O
=

Write the word equation for this reaction.

Answers

Answer:

that is an invalid question

The word equation for this reaction is:

Sodium carbonate + Sulfuric acid → Sodium sulfate + Carbon dioxide + Water.

The given chemical equation represents a chemical reaction between sodium carbonate (Na₂CO₃) and sulfuric acid (H₂SO₄). When these two substances react, they undergo a chemical change and produce different compounds. The reaction results in the formation of sodium sulfate (Na₂SO₄), carbon dioxide (CO₂), and water (H₂O).

In a word equation, the chemical reaction is described using the names of the substances involved rather than their chemical formulas. Hence, the word equation for this reaction would be:

Sodium carbonate + Sulfuric acid → Sodium sulfate + Carbon dioxide + Water.

This word equation provides a simple and concise description of the reactants and products involved in the chemical reaction, allowing for a better understanding of the overall transformation of substances that occurs during the reaction.

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What is the numerical value for the standard cell potential of the following reaction?
2Cr2(aq) + 3Cu(s) → 2Cro) + 3Cu2+ (aq)
a) -1.25 V
b) -0.57 V
c) +0.57 V
d) +1.25 V

Answers

The answer is D
Hope this help!

Who was the creator of the atomic bomb and why was he against the project?

Answers

Answer:Robert Oppenheimer went on to become chairman of the General Advisory Committee of the Atomic Energy Commission, which, in October 1949, opposed the development of the hydrogen bomb. This shocking opposition led to accusations that Oppenheimer was a Communist supporter.

Explanation:

What is the concentration (M) of a NaCl solution prepared by dissolving 9.1 g of NaCl in sufficient water to give 375 mL of solution?

Answers

Answer:

d

Explanation:

How do the ionic radii vary within a group of metals?

Answers

Answer:

ionic radii is a half the distance between two ions

Explanation:

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Calculate the work (w) and ΔEo, in kJ, at 298 K and 1 atm pressure, for the combustion of one mole of C4H10 (g). First write and balance the equation. The products will be CO2 (g) and H2O (g)
The value of ΔHo for this reaction is -2658.3 kJ/mol

Answers

Answer:

Explanation:

2C₄H₁₀ + 13O₂ = 8 CO₂ + 10H₂O

Change in number of moles Δn = 18 - 15 = + 3 moles .

ΔHo = -2658.3 kJ/mol.

ΔHo = ΔEo+ Δn RT

Δn = 3

For one mole Δn = 1.5

ΔHo = ΔEo+ W

W = Δn RT

= 1.5 x 8.31 x 298

= 3714.5 J

= 3.7 kJ /mole

ΔHo = ΔEo+ W

ΔEo =  ΔHo -  W

= -2658.3 - 3.7  kJ

= - 2662 kJ .

(a) The work done for the combustion of 1 mole of methane is 3,714.5 J.

(b) The change in the energy of the given system is -3,991.2 kJ.

The balanced chemical reaction of the given compounds is written as follows;

[tex]2C_4H_{10} \ + \ 13O_2 \ -->\ 8CO_2 \ + \ 10H_2 O[/tex]

The change in number of moles;

[tex]\Delta n = 18 - 15 = 3[/tex]

The work done for the combustion of 1 mole of methane is calculated as follows;

[tex]W = \frac{\Delta n}{2} RT\\\\W = \frac{3}{2} \times 8.31 \times 298\\\\W = 3,714.6 \ J[/tex]

The energy change is calculated as follows;

[tex]\Delta E_0 = \Delta H_o - W\\\\\Delta E_0 = (\frac{3 \ mole}{2} \times-2658.3 \ kJ/mol) - 3.715 \ kJ\\\\\Delta E_0 = -3,991.2 \ kJ[/tex]

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Which of the following is NOT something that electromagnetic waves and mechanical waves have in common?

A.Both can transmit energy through a medium.
B.Both involve the repeated vibrations of particles
.C.Neither of the waves can move matter.
D.In both, vibrations occur in a parallel direction to the direction of the wave.

Answers

Answer:

D. In both, vibrations occur in a parallel direction to the direction of the wave.

Explanation:

It is not true that in both mechanical and electromagnetic waves, vibrations occur in  parallel direction to the direction of the wave.

As with all waves, they are disturbances that transfers energy without moving the materials of the medium.

Electromagnetic waves have only one way of propagation which is a vibration in both parallel and longitudinal direction.Mechanical waves can be propagated either in a parallel direction or longitudinal direction and not both.

The reaction of 11.9 g of CHCl3 with excess chlorine produced 11 grams of CCl4, carbon tetrachloride. What is the percent yield

Answers

This is your perfect answer

I have a buddy who recycles electronics, and isolates metals from the connector pins electrical boards. He isolates gold, for example, and purifies it the best he can, then sells it along with his other scrap metal. This last go around he was able to isolate 3.00 g of Au with a process he claims results in a 80.0% yield. If he is correct, what is his theoretical yield? In other words, he got 3.00 g, but what should he have been able to get?

Answers

Solution :

In the process to isolate gold that has a 80 percent yield, a 3.00 g of Au is being isolated.

That is, the actual yield of Au is 3. 00 g

Therefore, we need to find the theoretical yield.

As we know,

[tex]$\text{percent yield}=\frac{\text{actual yield}}{\text{theoretical yield}} \times 100$[/tex]

[tex]$\text{theoretical yield}=\frac{\text{actual yield}}{\text{present yield}} \times 100$[/tex]

As actual yield = 3.00 g

    percent yield = 80 %

So, theoretical yield = [tex]$\frac{3.00}{80} \times 100$[/tex]

                                  = 3.75 g

Thus he should be able to get 3.75 g which is the theoretical yield of Au.

Which statement describes effusion?
A) It occurs when a gas passes through a tiny hole.
B) It occurs when a liquid passes through a tiny hole.
C) It occurs when gas molecules disperse throughout a container.
D) It occurs when a liquid disperses throughout a container.

Answers

Answer:

choice A

Explanation:

it it occurs when a gas escapes from a container through a hole of diameter.

Answer:

A. It occurs when a gas passes through a tiny hole.

Explanation:

Edge2020

Have a great day y'all :)

What is the formula for hydrophosphoric acid?

Answers

Answer:

H3PO4 is the formula for hydrophosphoric acid

The chemical formula of hydrophosphoric acid is H₃PO₄ which is a mineral acid of phosphorous.

What is chemical formula?

Chemical  formula is a way of representing the number of atoms present in a compound or molecule.It is written with the help of symbols  of elements. It also makes use of brackets and subscripts.

Subscripts are used to denote number of atoms of each element and brackets indicate presence of group of atoms. Chemical formula does not contain words. Chemical formula in the simplest form  is called empirical formula.

It is not the same as structural formula and does not have any information regarding structure.It does not provide any information regarding structure of molecule as obtained in structural formula.

There are four types of chemical formula:

1)empirical formula

2) structural formula

3)condensed formula

4)molecular formula

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Within which of Linnaeus's groupings are organisms most closely related to one another?
A) species
B) genus
C) phylum
D) kingdom

Answers

Answer:

B)

Explanation:

A genus is a group that includes a number of very closely related species; a species within a genus includes populations of organisms that can potentially interbreed.

HELPP ANSWERSSS!!!!
Which of the following elements in Group 13 would most likely have a physical and chemical properties of brittle, shiny, semiconductor, and is silver?

A.
Indium

B.
Gallium

C.
Aluminum

D.
Boron

Answers

Answer:

answer is

Explanation:

Gallium because it has the properties which you have mentioned

The element of Group 13 would most likely have a physical and chemical properties of brittle, shiny, semiconductor, and is silver is gallium. The correct option is B.

What is gallium?

Gallium is a chemical substance with the atomic number 31 and indeed the emblem Ga.

Gallium belongs to periodic table group 13 and is chemically similar to the other metals in the group. In standard temperature and pressure, gallium is a soft, silvery metal.

It finds widespread application in Blu-ray technology, mobile phones, blue and green LEDs, and pressure sensors for touch switches. Gallium readily alloys with the majority of metals.

It is especially useful in low-melting alloys. Because of its high boiling point, it is ideal for recording temperatures that would vaporize a thermometer.

Gallium is a rare element on Earth, but its abundance is comparable to that of lithium and lead, with a content of 19 ppm in the continental crust.

Thus, the correct option is B.

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As the thermal energy of matter increases, its particles usually spread out, causing

Answers

Answer:

As the thermal energy of matter increases, its particles usually spread out, causing the substance to expand.

Explanation:

i have a book about this stuff

As the thermal energy of matter increases, its particles usually spread out,

causing the substance to expand.

What is Thermal energy?

Thermal energy is the energy which is measured as a result of its heat

content. This is usually as a result of the increase in temperature of the

substance involved.

Increase in temperature leads to an increase in thermal energy. This leads

to the particles spreading out and the substance expanding as a result of

the atoms being loosely held together.

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What is the pressure in atmospheres exerted by a column of water that is 12.5 m
high?
(density of water = 1.00g/cm3; gravitational constant = 9.80665 m/s2, 1 atm =
101,325 Pa = 760 torr = 760 mmHg)

Answers

Answer:

0.00121 atm

Explanation:

Step 1: Given data

Height of the column of water (h): 12.5 mDensity of water (ρ): 1.00g/cm³Gravitational constant (g): 9.80665 m/s²

Step 2: Calculate the pressure exerted by the column of water in SI units

The pressure exerted by the column of liquid depends on the height of the column, the density of the liquid and the gravitational constant. We can calculate it using the following expression.

P = ρ × g × h

P = 1.00g/cm³ × 9.80665 m/s² × 12.5 m

P = 123 Pa

Step 3: Convert "P" to atm

We will use the conversion factor 101325 Pa = 1 atm.

123 Pa × (1 atm/101325 Pa) = 0.00121 atm

A student was using the periodic table to organize elements based on their ionization energy from lowest to highest. At the end of the class period, the student left one of the 4 spaces blank.

It looked like this: Ba, Co, ____, He.

Which of the following elements would best fit into this model?

A.
N would go into the blank because it fits the diagonal trend that points towards the upper right.

B.
Se would go into the blank because it fits the diagonal trend that points towards lower left.

C.
Kr would go into the blank because it is a noble gas and has a lower ionization energy than helium but higher than cobalt.

D.
Sb would go into the blank because it has more energy levels than cobalt which gives it a higher ionization energy than cobalt but less than helium.

Answers

Answer:

a

Explanation:

because it fits the diagonal trend that point toward the upper right

Question 20
Review

Which solution is the most concentrated?

1. 1 mole of solute dissolved in 1 liter of solution
2. 2 moles of solute dissolved in 3 liters of solution
3. 6 moles of solute dissolved in 4 liters of solution
4. 4 moles of solute dissolved in 8 liters of solution

Answers

The answer is 3. because it has the most Molarity = mol/L

1. 1M
2. 2/3M
3. 1.5M
4. .05M

A 31.4 mL sample of nitrogen gas was collected over water at 23.7°C and a total pressure of 706 torr. What mass of nitrogen gas was collected

Answers

Answer:

[tex]m=0.0325g[/tex]

Explanation:

Hello!

In this case, since the collection of gases over at certain conditions implies the usage of the ideal gas equation and computation of the pressure of the gas by subtracting the vapor pressure of water (21.7 torr at 23.7 °C) to the total pressure as shown below:

[tex]p_N=706-21.7=684.3torr =0.900atm[/tex]

Next step is to compute the moles of nitrogen at the given conditions:

[tex]n=\frac{PV}{RT}=\frac{0.900atm*0.0314L}{0.08206\frac{atm*L}{mol*K}*296.85K} \\\\n=0.00116mol[/tex]

Final step is to compute the mass by knowing that gaseous nitrogen has a molar mass of 28.02 g/mol:

[tex]m=0.00116mol*\frac{28.02g}{1mol} \\\\m=0.0325g[/tex]

Regards!

The mass of nitrogen gas that was collected is 0.0336 grams.

Given the following data:

Volume of nitrogen gas = 31.4 mLTemperature = 23.7°C to K = 296.7 KelvinPressure = 706 torr to atm = 0.93 atm.

Scientific data:

Ideal gas constant, R = 0.0821 L⋅atm/mol⋅KMolar mass of nitrogen gas = 28.02 g/mol

To determine the mass of nitrogen gas that was collected:

First of all, we would calculate the number of moles of nitrogen gas used by using the ideal gas law equation:

[tex]n = \frac{PV}{RT}[/tex]

Where;

P is the pressure. V is the volume. n is the number of moles of gas. R is the ideal gas constant. T is the temperature.

Substituting the given parameters into the formula, we have;

[tex]n = \frac{0.93 \times 0.0314}{0.0821 \times 296.7}\\\\n=\frac{0.0292}{24.36}[/tex]

n = 0.001199 moles

For the mass of nitrogen gas:

[tex]Mass = n \times molar \;mass\\\\Mass = 0.001199 \times 28.02[/tex]

Mass = 0.0336 grams

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how does fire start​

Answers

You light it on fire

A story to describe the motion on the graph

Answers

which graph...............?

Please help me it’s due today at 7:40pm please please help me please people please

Answers

Answer:

action, reaction

Explanation:

Answer:

for every action there is an equal and opposite reaction

Which of the following best describes how atoms bond in a copper sample?
O the atoms either gain or lose electrons to meet the octet rule.
O positively charges ions are spread apart throughout the entire molecule
the atoms all gain electrons to form anions in order to remain unstable
the atoms share electrons in order to achieve a stable octet

Answers

Answer:

The first option is the correct option

Explanation:

Copper is one of the transition elements which are normally found in the d-block. Generally, transition elements that have low oxidation number/charge usually undergo ionic/electrovalent bonding, while those that have a relatively higher oxidation number/charge usually undergo covalent bonding. Copper has charges ranging from 1+, 2+ or 3+ and thus will normally undergo ionic bonding which involves the gain or loss of electrons to meet the octet rule.

The best description of how atoms bond in a copper sample is; the atoms share electrons in order to achieve a stable octet - a type of bonding called Metallic bonding.

According to the question;

We are required to identify which of the following best describes how atoms bond in a copper sample.

Definition:

A metallic bond is pretty different from covalent and ionic bonds, but the objective of the bonding is the same: to achieve a lower energy state.

Contrary to a bond between just two atoms, a metallic bond is a sharing of electrons between many atoms of a metal element.

P.S: Copper is one of the transition metals with variable oxidation states.

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Name a substance/solution that could be used to distinguish alkane from an alkene. ​

Answers

Answer: Bromine water

Explanation:

Alkanes are saturated hydrocarbons with single bond and the alkenes as unsaturated hydrocarbons with double bonds.

Bromine water is a chemical reagent which is used to distinguish between alkane and alkene.

It is of orange color in solution form and turns to colorless in alkene.

The alkanes to show any reaction with bromine water.

What is the carbon cycle? ASAP

Answers

Answer:

The carbon cycle is the biogeochemical cycle by which carbon is exchanged among the biosphere, pedosphere, geosphere, hydrosphere, and atmosphere of the Earth. Carbon is the main component of biological compounds as well as a major component of many minerals such as limestone

The Carbon Cycle is the biogeochemical cycle by which carbon is exchanged among the biosphere, pedosphere, geosphere, hydrosphere, and atmosphere of the Earth.

Carbon is the main component of biological compounds as well as a major component of many minerals such as limestone. Along with the nitrogen cycle and the water cycle, the carbon cycle comprises a sequence of events that are key to make Earth capable of sustaining life.

It describes the movement of carbon as it is recycled and reused throughout the biosphere, as well as long-term processes of carbon sequestration to and release from carbon sinks.

Find the mass of benzene (C6H6) required to produce 2.66 g of carbon dioxide gas from the reaction described by the following equation:
2C6H6 + 15O2 → 6H2O + 12CO2

Answers

Answer:

Mass of benzene required = 0.78 g

Explanation:

Given data:

Mass of CO₂ produced = 2.66 g

Mass of benzene required = ?

Solution:

Chemical equation:

2C₆H₆ + 15O₂       →    6H₂O + 12CO₂

Number of moles of CO₂:

Number of moles = mass/molar mass

Number of moles = 2.66 g/ 44 g/mol

Number of moles = 0.06 mol

Now we will compare the moles of CO₂ with C₆H₆.

                        CO₂       :        C₆H₆

                            12        :          2

                          0.06      :        2/12×0.06=0.01 mol

Mass of benzene required:

Mass = number of moles × molar mass

Mass = 0.01 mol × 78.11 g/mol

Mass = 0.78 g

Resonance structures differ by ________.
A. placement of atoms only
B. placement of electrons only
C. number of atoms only
D. number of electrons only
E. number and placement of electrons

Answers

Answer:

b)

Explanation:

Resonance structure differ by placement of electrons only.

I hope you got the answer

‍♂️

PLZZZZZ HELPP: How might the fact that multiple approaches yield the same result contribute to the development of a theory? The accumulation of information from multiple approaches provides ample evidence to support the theory. Scientists are more likely to develop a theory for a concept that is a popular area of research. Evidence from multiple approaches might prevent a poorly developed theory from being accepted. The number of observations from multiple approaches usually exceeds the number that is required.

Answers

Answer: multiple approaches yield the same result positively contributes to the development of a theory since it shows that the conclusions are sound and not based on other factors such as the environment of the experiment, the researches, etc.

Your welcome . <3

Answer:

I'm not positive this is the answer but my guess  would be C: Evidence from multiple approaches might prevent a poorly developed theory from being accepted.

Which of the following would lose heat the fastest?
15 grams of water

200 grams of water

1000 grams of water

500 grams of water

Answers

Answer:

15 grams of water

Explanation:

15 grams of water of water would lose heat the faster compared to higher masses of water.

Water generally is a poor conductor heat.

To heat up a unit of water, significant amount of energy must be added to the body of water. With time, the body continues to increase in temperature. A 500g mass of water will take more time to lose heat.
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