Which pair of atomic orbitals has the same energy in a krypton atom?

1s and 2s

2s and 2p

3px and 4px

4pz and 4py

Answers

Answer 1
3px and 4px the is the answer
Answer 2

Answer:

4pz and 4py

Explanation:

The electron configuration of Kr is:

[Ar] 3d¹⁰ 4s² 4p⁶

4p has 3 subatomic orbitals: 4px, 4py and 4pz

As there are a total of 6 electrons each of the three 4p orbitals have two electrons with opposite spins. Hence 4py and 4pz have equal energy. Option D is correct.  

Option A, 1s and 2s is incorrect, as the energy of the 1st orbital is lower than that of the 2nd orbital.  

Option B, 2s and 2p is incorrect, as the energy of the s suborbital is lower than that of the p, even though they both belong to the same orbital.  

Option C, 3px and 4px is incorrect, as the energy of the 3rd orbital is lower than that of the 4th orbital.  


Related Questions

Which type of institution employs the most forensic anthropologists on a full-time basis?

Answers

Answer: Government laboratories and educational institutions

Explanation:

Certain government institutions and educational institutions offers forensic anthropologists full time permanent jobs. These jobs are awarded on the basis of their research and teaching experience. They are placed as scientists or laboratory assistants in the laboratory and professors or lectarar in educational institutes.

Which of the following elements has the most properties in common with molybdenum (Mo)?

A) manganese (Mn)

B) iron (Fe)

C) vanadium (V)

D) chromium (Cr)

Answers

Elements that belong to the same group in the periodic table will have similar chemical properties. This occurs because same group elements have the same number of electrons in its outer shell. Molybdenum will have the most properties in common with the element Chromium as they are both in the same group on the periodic table. 

D) Chromium (Cr)

______________

Atomic Number, Ionic Radius, and First Ionization Energy help!

"Why do these relationships exist? Propose an explanation for each of these relationships." and "Are these relationships consistent with the periodic trends that you have been studying?"

Answers

the answer 

Why do these relationships exist?: The higher the atomic number of an element means the atomic radii will be bigger because there are more electrons and shells/orbitals involved which will make the element bigger in size. The more electrons there are means the more shells there are which equals to a bigger atomic radii. The first energisation energy will be lower the bigger the atomic number because a larger atomic number means more electrons. This means more shells and the electrons will be further away from the nucleus which equals to less nuclear attraction. This means as the electrons get further away from the nucleus (from the larger amount of electrons and more shells and shielding from the shells closer to the nucleus) there will be less attraction holding the electrons to the nucleus which will make it easier to remove. I'm not sure what the next question means, but I hope this helps explain why the relationships exist :)
Final answer:

Atomic Number, Ionic Radius, and First Ionization Energy are properties that depend on an element's structure, in particular its electron configuration. Atomic Number corresponds to an element's proton count, defining its identity and placement in the periodic table. Ionic Radius pertains to the size of an ion that forms when it loses or gains electrons. First Ionization Energy is the energy required to remove an electron from a neutral atom. These relationships reflect broader periodic trends.

Explanation:

The Atomic Number of an element is the count of protons in its nucleus. It determines the identity of an element and its placement on the periodic table. As the atomic number increases, the atomic size usually also increases because more energy levels are needed to accommodate more electrons.

The Ionic Radius refers to the size of an ion, which changes depending on whether it gains or loses electrons (and thus becomes an ion). Typically, cations (which lose electrons) are smaller than their parent atoms, while anions (which gain electrons) are larger because in both cases, the electron configuration changes, altering the electron-electron repulsion and consequently, the size of the ion.

The First Ionization Energy is the energy necessary to remove the first electron from a neutral atom. As atomic number increases, first ionization energy tends to increase because the outermost electrons are closer to the nucleus, thus more strongly attracted to the nucleus, making them harder to take away.

The relationships between Atomic Number, Ionic Radius, and First Ionization Energy are all part of the broader set of periodic trends, describing element's behavior across and down the periodic table.

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how come the melting point of diesel petrol and rapeseed oil is only approximate?

Answers

Well I wish you could have choices but I look it up Diesel fuel originated from experiments conducted by German scientist and inventor Rudolf Diesel for his compression-ignition engine he invented in 1892. Diesel originally designed his engine to use coal dust as fuel,[4]and experimented with other fuels including vegetable oils[5] such as peanut oil, which was used to power the engines which he exhibited at the 1900 Paris Exposition and the 1911 World's Fair in Paris. Maybe that will help your answer.

list 3 scenarios for a substance being classified as a weak acid

Answers

Answer:

3 scenarios:  

1. acetic acid, organic acid that comes from vinager

2. citric acid, that is present in some fruits

3. phosphoric acid , present in sodas

Explanation:

A weak acid is the one that partially transferres its proton (H+) to a water molecule ( partial dissociation), and usually a part of the original acid (HA) remains after the process of dissociation; that is why, a dissociation reaction of a weak acid is represented with an arrow of both ways.

[tex]HA ⇌ H^{+} +A^{-}[/tex]

As we can see, the acetic acid, citric acid and phosphoric acid are great examples of weak acid. Their pH is higher thanks to its low dissociation, and they can even be eaten in low concentrations.

What is the conversion of 160g to cg??

Answers

16000
is the answer
because I used the calculater

Assuming equal concentrations and complete dissociation, rank these aqueous solutions by their freezing points. K2SO4 NH4I CoCl3

Answers

The substance that releases the greatest amount of ions will have the greatest attractive forces within its solution, resulting in a reduced freezing point.
K₂SO₄ yields 3 ions
NH₄I yields 2 ions
CoCl₃ yields 4 ions

Freezing points:
CoCl₃ < K₂SO₄ < NH₄I

Final answer:

To rank these compounds by their freezing points, we consider the van't Hoff factor which indicates the number of ions each compound forms. [tex]CoCl_3[/tex]  dissociates into the most ions, followed by [tex]K_2SO_4[/tex], and [tex]NH_4I[/tex] with the least, which corresponds to freezing points in ascending order: [tex]CoCl_3[/tex]  (lowest freezing point), [tex]K_2SO_4[/tex], and [tex]NH_4I[/tex] (highest freezing point).

Explanation:

To rank aqueous solutions by their freezing points based on equal concentrations and complete dissociation, we need to consider the number of particles each compound releases into the solution upon dissociation. The more particles that are present, the lower the freezing point. For [tex]K_2SO_4[/tex], which dissociates into three ions , [tex]NH_4I[/tex], which dissociates into two ions , and [tex]CoCl_3[/tex] , which dissociates into four ions the freezing points are affected by the van't Hoff factor (i), which is the number of particles into which a compound dissociates in solution.

Using this principle, we can deduce that:

[tex]CoCl_3[/tex] (highest i, lowest freezing point)[tex]K_2SO_4[/tex] (intermediate i)[tex]NH_4I[/tex] (lowest i, highest freezing point)

Therefore, the order of decreasing freezing points is [tex]NH_4I[/tex] > [tex]K_2SO_4[/tex] >  [tex]CoCl_3[/tex]

How many atoms are in 11.9 moles of chromium?

Answers

Use the following equation:
Given # of moles *  molar mass (g) per mol = Mass (g)
This gives us 11.9 x  51.9962 (g) per mol.

618.75 moles

Answer:

[tex]7,16.10^{24}[/tex]

Explanation:

We know that in 1 mole of any substances there are [tex]6,02. 10^{23}[/tex] atoms

This number ([tex]6,02. 10^{23}[/tex]) is a constant that is known as the avogadros number

if we know how many atoms are in a mole of chromium to calculate how many there are in 11.9 moles we apply a simple rule of three

[tex]1 mol Cr\longrightarrow 6,02.10^{23} atoms\\ 11.9 moles Cr\longrightarrow x\\x=\frac{(11.9)(6,02.10^{23})}{1}\\ x= 7,16.10^{24} atoms[/tex]

In 11.9 moles of chrome there are [tex]7,16.10^{24}[/tex] atoms

. If one mole each of CH4, NH3, H2S, and CO2 is added to 1 liter of water in a flask (1 liter of water = 55.5 moles of H2O), how many moles of hydrogen, carbon, oxygen, nitrogen, and sulfur are in the flask? Round your answers to the nearest whole number.

How many moles of Hydrogen, Carbon, Oxygen, Nitrogen, and sulfur will there be?

Answers

One mole each of CH4, NH3, H2S, and CO2 are added:

For CH4:

moles of C = 1

moles of H = 4 x 1 = 4

1 litre of water is = 55.5 moles of water.

so, in water:

moles of oxygen = 55.5

moles of hydrogen = 2 x 55.5 = 111

For NH3:

moles of N = 1

moles of H = 3 x 1 = 3

For H2S:

moles of H = 2 x 1 = 2

moles of S = 1

For CO2:

moles of C = 1

moles of  = 2 x 1 = 2

Now, add the total moles of each atom:

Hydrogen = 111 + 4 + 3 +1 = 119 moles

Oxygen = 55.5 + 2 = 57.5

Carbon = 1+1 = 2

Sulfur = 1

nitrogen = 1

What is mixture and compound?

In chemistry mixture is a combination of two or more different chemical elements which are not chemically bond. A mixture is the physical combination of two or more elements in which their individual identities are retained and it also mixed by solutions, suspension and colloids.

In chemistry compound is combination of two or more different elements which are chemically bond. So compound is held by chemical bond. A compound can't be separate by physical separation and after the mixture you can't identified that it is compound or not.

Therefore,Hydrogen = 111 + 4 + 3 +1 = 119 moles

Oxygen = 55.5 + 2 = 57.5

Carbon = 1+1 = 2

Sulfur = 1

Nitrogen = 1

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The diagram shows the stages of the eukaryotic cell cycle.

Which stage is labeled C in the diagram?
M phase
G0 phase
S phase
G2 phase

Answers

The stage labelled C in the diagram is the G2 PHASE.

The cell cycle is divided into G1, S, G2 and M phases. The G2 phase is part of the phases of eukaryotic cell cycle. It is the second stage of interphase, it always occur after the completion of S phase. G2 is the stage, where the cell undergo more growth, produce more proteins and check the replicated DNA in order to verify that the cell is ready to enter into the mitosis phase.

Answer:

e2020 kids, D. G2 phase

Explanation:

Which statement is correct about honey?
It contains disaccharides, a complex type of lipid.
It contains monosaccharides, the simplest carbohydrate.
It contains starch, which gives it a sweet taste.
It contains lipids, which give it a sweet taste.

Answers

it contains monosacvharides, the simplest carbohydrate
it contains fructose and glucose, which are the simplest carbohydrate so B. it contains monosaccharides, the simplest carbohydrate

If Keq = 4 x 10^-7, which of the following is true?
A) products are favored
B) reactants are favored
C) there are no reactants remaining
D) reactants and products are present in equal amounts


2. What does a chemical reaction rate measure?
A) the amount of reactant used
B) energy change per unit of time
C) change in amount of reactant per unit of time
D) the amount of time needed for the reaction to come to completion


3. In an equilibrium reaction that makes more moles of gas than it consumes, what is the effect of increasing the pressure?
A) the reaction makes more reactants
B) the reaction makes more products
C) the reaction is unchanged
D) the answer cannot be determined


4. What is the effect of adding ore water to the following equlibrium reaction? CO2 + H20 <--> H2CO3
A) more H2CO3 is produced
B) there is no effect
C) the equilibrium is pushed in the direction of the reactants
D) CO2 concentration increases


5. Which of the following explains the increase in reaction rate from a catalyst?
A) more collisions between particles, so more successful collisions
B) catalysts do not increase the reaction rate
C) same number of collisions, but more are successful
D) fewer collisions but more successful


6. Which of the changes listed below would shift the following reaction to the right? 4HCI(g) + 02(g) <--> 2CL2(g) + 2h20(g)
A) increase of pressure
B) addition of Cl2
C) decrease of pressure
D) removal of 02

Answers

The best and most correct answers among the choices provided by the following questions are as follows:

1)  A) products are favored
2) C) change in amount of reactant per unit of time
3) B) the reaction makes more products
4) A) more H2CO3 is produced
5) A) more collisions between particles, so more successful collisions
6) B) addition of Cl2


I hope my answers has come to your help. Thank you for posting your question here in Brainly. We hope to answer more of your questions and inquiries soon. Have a nice day ahead!

Final answer:

1. Reactants are favored. 2. A chemical reaction rate measures the change in amount of reactant per unit of time. 3. When an equilibrium reaction makes more moles of gas than it consumes, increasing the pressure favors the reactants.

Explanation:

1. If Keq = 4 x 10^-7, the equilibrium constant, then reactants are favored because the Keq value is very small, indicating that the concentration of products is much lower than the concentration of reactants.

2. A chemical reaction rate measures the change in the concentration of a reactant or product per unit of time, so the correct answer is C) change in amount of reactant per unit of time.

3. In an equilibrium reaction that makes more moles of gas than it consumes, increasing the pressure favors the side with fewer moles of gas. Therefore, the equilibrium will shift to the left, favoring the reactants.

4. Adding more water to the equilibrium reaction CO2 + H2O <--> H2CO3 will result in the equilibrium being pushed in the direction of the reactants because adding more water will decrease the concentration of H2CO3, favoring the formation of more CO2 and H2O.

5. A catalyst increases the reaction rate by providing an alternative reaction pathway with a lower activation energy, which leads to more successful collisions between particles. Therefore, the correct answer is A) more collisions between particles, so more successful collisions.

6. To shift the reaction 4HCl(g) + O2(g) <--> 2Cl2(g) + 2H2O(g) to the right, the equilibrium can be shifted by increasing the pressure, which will favor the side with fewer moles of gas, in this case the products. Therefore, the correct answer is A) increase of pressure.

Which property of water makes it helpful to use in car radiators?
A) Water can climb up the sides of a tube.
B) Water is a universal solvent.
C) Water takes long to heat and cool down than other liquids.

Answers

According to the main characteristics of water, the property of water  which makes it helpful to use in car radiators is being shown in the last opton from the scale : C) Water takes long to heat and cool down than other liquids. Such property is the only one that logically suits the task.
I'm sure it helps!

How many resonance structures does NH₃ have?

Answers

#1) How many resonance structures does NH₃ have?

Answer: It does not have any. Resonance structures have this rules to recognize them: Atoms never move, You can only move electrons in π bonds or lone pairs, and The overall charge of the system must remain the same.

I hope it helps, Regards.

How many electrons does nitrogen (N) need to gain to have a stable outer electron shell

Answers

Answer: 3 more electrons

Explanation: Generally elements with inert gas configuration are more stable. It is also called as Octet rule.

It tells that, elements which have electrons equal to atomic number of inert gases (2,8,10,18,36 etc) in their valency shell are exceptionally stable.

Here in our case, nitrogen has atomic number-7, 1s2 2s2 2p3

Here N has 5 electrons in valency shell , hence it needs 3 more electrons to get octet configuration.

So answer is 3 Electrons

The outer electron shell of nitrogen (N) contains 5 electrons. It would need to obtain 3 electrons to fill its shell with 8 electrons in order to have a stable outer electron shell.

An element's capacity to maintain its current state or withstand any changes under usual circumstances is referred to as stability. The fact that it guarantees an element's durability and versatility across a range of applications makes it a desirable property. Depending on the situation, stability can have a variety of meanings. Chemical stability, which refers to an element's resistance to reactions or decomposition when exposed to various chemical environments, is a crucial component of stability. Strong chemical bonds that take a lot of energy to break are common in elements with high chemical stability. The outer electron shell of nitrogen (N) contains 5 electrons. It would need to obtain 3 electrons to fill its shell with 8 electrons in order to have a stable outer electron shell.

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Which statement is true if the hrxn of a reaction is positive

Answers

Answer : The reaction is endothermic in nature.

Explanation : A system of reactants which absorbs heat from the surroundings in an endothermic reaction has a positive ΔH reaction value, as the enthalpy of the products is higher than the enthalpy of the reactants of the system.

As the enthalpies of these reactions are greater than zero, they are called as endothermic reactions. Which absorbs the heat during the chemical reactions.

If the Hrxn of a reaction is positive then the reaction is endothermic reaction. In an endothermic reaction, heat is absorbed by the chemical reaction from the surrounding.

Reactants + heat --> Products

In the activation energy diagram the heat of the products is greater than the heat of the reactants in an endothermic reaction.

An atom has an average atomic mass of about 63.5 amu. What is the chemical symbol for the atom? Consult the periodic table.
(Points : 3)
Pb

Fe

Eu

Cu

Answers

Answer:

Cu

Explanation:

I got it right on my test.

The element with an atomic mass of about 63.5 amu is Copper, which has the chemical symbol Cu.

An atom with an average atomic mass of about 63.5 amu corresponds to the element Copper with the chemical symbol Cu. This is determined by consulting a periodic table where each element is listed with its respective atomic mass closest to the given value. The atomic mass is the weighted average of the masses of its isotopes, and in the case of copper (Cu), this is calculated from its two stable isotopes with mass numbers 63 and 65. Thus, the correct chemical symbol for the atom described with an atomic mass of 63.5 amu is Cu.

In which of the following species is it necessary to employ an expanded valence shell to represent the Lewis structure?
po4^-3
icl3
sf4
oscl2
clo4^-1
pi3

Answers

count the number of valence electrons in each and which ever one surpasses the octet rule is your answer

hope this helps
Final answer:

The species PO₄⁻³, ICl₃, SF₄, and ClO₄⁻¹ require an expanded valence shell in their Lewis Structures as they contain central atoms that go beyond the octet rule by bonding with more than four atoms.

Explanation:

The species that require an expanded valence shell to represent their Lewis structures are PO₄⁻³, ICl₃, SF₄, and ClO₄⁻¹. These molecules contain central atoms (Phosphorus, Iodine, Sulfur, and Chlorine respectively) that go beyond the octet rule by utilizing their d-orbitals to bond with more than four other atoms.

For example, in the case of PO₄⁻³ (Phosphate), the central atom (Phosphorus) is bonded to four Oxygen atoms and carries a formal charge, leading it to utilize its 3d orbitals and thus expanding its valence shell. Similarly for ICl₃, SF₄, and ClO₄⁻¹the central atoms exceed the octet rule, necessitating the expansion of their valence shell.

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What does the concentration of a solution refer to? In what 3 ways can concentration be expressed?

Answers

Concentration of a solution essentially refers to the number of particles, expressed as atoms, molecules, moles that have been dissolved and or present in a known volume of fluid, usually liquid. 3 ways that it can be expressed is as molarity, molality, and normality.

Balance in the water cycle means that

Answers

the answer is that  the average annual precipitation over Earth equals the amount of water that evaporates.

Using the periodic table, which of the following elements has the most properties in common with calcium (Ca)?


potassium (K)

magnesium (Mg)

scandium (Sc)

argon (Ar)

Answers

Potassium i believe (K)

Answer:

potassium (k), because they are both alkali metals

Explanation:



Orange juice is _____.
an acid
a base
a neutral

Answers

An acid because of its high content of citric acid

Orange juice is an acid, characterized by a pH level lower than 7. Its acidic nature is what gives it a sour taste, with citric acid and ascorbic acid being the main contributors. Lemon juice is usually even more acidic and sourer than orange juice. The correct answer is option: an acid.

Orange juice is an acid. The acidity of a substance can be measured by its pH level, with lower pH values indicating higher acidity. Because orange juice has a pH lower than 7, it is considered acidic. The sour taste of orange juice is due to citric acid and ascorbic acid (vitamin C), both of which are acids.

In contrast, substances with a pH higher than 7 are basic, with increased hydroxide ion (OH-) presence or proton (H+) acceptors. Water with a pH of 7 is considered neutral, neither acidic nor basic. Comparing orange juice to lemon juice in terms of acidity, lemon juice is typically more acidic due to its lower pH and higher concentration of citric acid, which is why it tastes more sour.

Most ionic compounds tend to be classified as Select one:
a. fats
b. proteins
c. sugars
d. salts

Answers

Most ions tend to be D. Salts. Hope this helps!
A. Fats 
Hope it helps :)

Carbon-14 has a half-life of 5730 years. In a plant fossil, you find that the 14C has decayed to 1/4.00 of the original amount. How long ago was this plant alive?

Answers

Final answer:

Using the carbon-14 dating method, and knowing that the 14C in the fossil has decayed to 1/4 of its original amount, we can calculate that the plant was alive approximately 11,460 years ago.

Explanation:

In using carbon-14 dating to determine the age of a plant fossil, we utilize the known half-life of 14C which is approximately 5730 years. If the 14C has decayed to 1/4 of the original amount in the plant fossil, that means two half-lives have passed. As each half-life represents 5730 years, the age of the plant can be calculated by doubling this value. Therefore, we conclude that this plant was alive roughly 11,460 years ago.

Gravity is a force between any two objects with mass. Why doesn't a person feel a gravitational force between him/herself and another person?
A) A person doesn't exert a gravitational force.
B) The two gravitational forces cancel each other out.
C) The gravitational forces of people is so small it is overshadowed by that of Earth.
D) There are so many people we are actually balanced by all the different gravitational forces.

Answers

C) The gravitational forces of people is so small it is overshadowed by that of Earth. Gravitational force between 2 person will be negligible cuz product of their masses is very less

Why are electrons important?

Answers

Electrons are also importantfor the bonding of individual atoms together. With out this bonding force between atoms matter would not be able to interact in the many reactions and forms we see every day. This interaction between the outer electron layers of an atom is call atomic bonding.
Electrons balance the atom by countering the protons. They also play a role in keeping the atom from falling apart

Water is an example of a(n) _____.

Answers

Water is an example of polar covalent compounds. Never call it as an element as many students do.

Your answer is d ) a complex system

A gas has a volume of 5.0 L at a pressure of 50 KPa. What happens to the volume when the pressure is increased to 125?

Answers

The volume becomes two. You have to use the equation P1 x V1 = P2 x V2 
P is pressure and V is volume.
P1 = 50     P2 = 125
V1 = 5       V2 = v (we don't know what it is)
Then set up the equation:
50 times 5 = 125 times v
250 = 125v
the divide both sides by 125 and isolate v
2 = v
Therefore the volume is decreased to 2.
Also, Boyle's Law explains this too: Volume and pressure are inversely related, This means that when one goes up the other goes down (ie when pressure increases volume decreases and vice versa). Becuase the pressure went up from 50 KPa tp 125 KPa the volume had to decrease.

Acetone and sodium chloride both have similiar mass. Explain why their other properties differ.

Acetone: C3H6O, melting point = −94°C, liquid at room temperature, low electrical conductivity

Sodium chloride: NaCl, melting point = 801°C, solid at room temperature, high electrical conductivity

Answers

Acetone is a covalent compound, whereas sodium chloride is an ionic compound.


Covalent compounds have strong bonds that do not break apart like ionic compounds do, and they do not conduct electric charge in solution.


Covalent compounds do not have strong attractions between molecules and so have very low melting points, unlike ionic compounds.

Which property of water makes it helpful to use in car radiators?
A) Water can climb up the sides of a tube.
B) Water is a universal solvent.
C) Water takes long to heat and cool down than other liquids.

Answers

The correct answer is C) Water takes long to heat and cool down than other liquids.

It doesn't climb up the sides of a tube any more than other solutions do, and being a universal solvent has nothing to do with radiators. It does however take a long time to heat and cool down since you don't have a 100+ celsius burner to heat it up in an instant.
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