An electron is on a -2.5 eV energy level. the electron is stuck by a 2.5 eV photon. What will most likely happen?

Answers

Answer 1
the answer would be 0

Related Questions

Fats that are liquid at room temperature can be made more solid by the process of ________.

Answers

Process of hydrogenation

A(n) __________ molecular orbital is lower in energy than the atomic orbital of which it is composed.

Answers

A [tex]\boxed{{\text{bonding}}}[/tex] molecular orbital is lower in energy than the atomic orbital of which it is composed.

Further Explanation:

Atomic Orbital:

The wave nature of electrons present in any atom is expressed by a mathematical function, known as atomic orbital. This wave function is used for determining the probability to find electrons in specific region around atomic nucleus.

Molecular orbitals:

These orbitals are formed by permitted interactions between atomic orbitals. Such orbitals are formed only if symmetries of bonded atomic orbitals match with each other. The number of atomic orbitals results in formation of same number of molecular orbitals.So if n atomic orbitals combine with each other,n molecular orbitals will result.

Following molecular orbitals are formed by interaction between atomic orbitals:

1. Bonding molecular orbitals

These orbitals are formed by constructive interference of waves of different atomic orbitals. Such orbitals are used to depict attractions between atomic orbitals. When electrons are placed in bonding molecular orbitals, this leads to bond strengthening and stabilization of resulting molecule. Hence such orbitals have lower energy, even less than that of combining atomic orbitals.

2. Antibonding molecular orbitals

These orbitals are formed by destructive interference of waves of different atomic orbitals. When electrons are placed in antibonding molecular orbitals, these experience greater repulsion, thereby resulting in repulsion between the combining nuclei.Suchelectrons tend to destabilize it so the energy of the anti-bonding molecular orbitals is higher.

3. Nonbonding molecular orbitals

The energy of such orbitals remains unaffectedif electrons are added or removedfrom them. These orbitals are considered equivalent to lone pairsrepresented in Lewis structures. The only difference is nonbonding molecular orbitals are used up in molecular orbital theory.

Therefore bonding molecular orbitals have lower energy than combining atomic orbitals.

Learn more:

Which molecule cannot be adequately described by a single Lewis structure/ https://brainly.com/question/6786947 Do carbon dioxide and water have the same geometry? https://brainly.com/question/2176581

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Chemical bonding and molecular structure

Keywords: atomic orbitals, molecular orbitals, Lewis structures, lone pairs, bonding, antibonding, nonbonding, molecular orbitals, constructive interference, destructive interference, electrons, energy.

Jupiter has a gravity of 2.9, what would your weight be on Jupiter if you weighed 84 lbs on Earth?

Answers

gravity on earth= 1.98
gravity on jupiter= 2.9
1.98/2.9= .683
84x.683= 57.352
57.352+84= 141.352

Write a balanced equation for the reaction of aluminum with water (aluminum hydroxide is the other product).

Answers

2Al + 6H2O ----> 2Al(OH)3 + 3H2.

Hannah does an experiment. She has two colorless chemicals that she mixes together in a beaker. Which of the following indicates that a chemical change occurs when she mixes the two chemicals together? I. The chemicals change color from colorless to purple. II. A yellow gas forms. III. A brown solid forms in the bottom of the beaker. IV. The temperature of the chemicals rises 15°C. A. II and III only B. I, II, III, and IV C. I and III only D. I, II, and III only

Answers

Answer:

B. I, II, III, and IV

Explanation:

A chemical change occurs when the original substances (the reactants) are changed into a new substance or substances (the products). A chemical change can be indicated by a color change, gas formation, solid formation, or a temperature change. I, II, III, and IV all indicate that a chemical change has occurred when Hannah mixes the two chemicals

A chemical change occurs when she mixes the two chemicals together. The chemicals change color from colorless to purple, a brown solid forms in the bottom of the beaker and a yellow gas forms

What is chemical change ?

Chemical synthesis, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance.

These processes are referred to as chemical reactions, and they are often irreversible, barring additional chemical reactions. When one chemical material changes into one or more others, as when iron rusts, this is referred to as a chemical transformation.

Chemical reactions produce changes in the way that atoms and molecules are ordered, which leads to the formation of new substances with new characteristics.

Thus, option B is correct.

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calculate the energy of a photon of radiation with a wavelength of 6.4x10^-7 m.

Answers

I think the answer is 0.00000064.
Please tell me if I'm wrong.

Final answer:

The energy of a photon with a wavelength of 6.4x10^-7 m can be calculated using Planck's equation, E = hc/λ, giving a result of E = 3.11 x 10^-19 Joules.

Explanation:

To calculate the energy of a photon of radiation with a wavelength of 6.4x10^-7 m, you use the equation derived from Planck's equation, specifically E = hc/λ, where E is the energy of the photon, h is Planck’s constant (6.626 × 10^-34 J-s), c is the speed of light (3.00 × 10^8 m/s), and λ is the wavelength. So plugging in the given wavelength, we get:

E = (6.626 × 10^-34 J-s)*(3.00 × 10^8 m/s) / 6.4x10^-7 m

Performing this calculation gives E = 3.11 x 10^-19 Joules. This is the energy of the photon.

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If you change peanuts into peanut butter is it a chemical or a physical change

Answers

The answer to your problem is physical 

Which observation indicates that the kinetic-molecular theory has limited use for describing a certain gas?

Answers

Increasing pressure causes a smaller change in gas volume.

D. Increasing collisions of gas molecules will increase energy between them.

What is the mass of the light bulb and paperclips together?

Answers

251.0 is the correct mass

A(n) __________ is a substance in which atoms of two or more elements are combined in a fixed proportion.

Answers

A(n) _compound_ 

Hope this helps

A compound is a pure substance formed by chemically bonding two or more different elements in a fixed ratio. It can only be broken down into simpler substances through chemical processes.

An compound is a substance in which atoms of two or more elements are combined in a fixed proportion. A compound is a pure substance composed of atoms of two or more different chemical elements bonded in some fixed ratio, forming molecules of that substance. These atoms are held together by chemical bonds and the compound has properties different from the individual elements that compose it. Compounds can be separated into simpler substances and elements only through chemical methods, not by physical means such as filtering or distillation.

When carbon is burned in air, it reacts with oxygen to form carbon dioxide. when 18.0 g of carbon were burned in the presence of 62.3 g of oxygen, 14.3 g of oxygen remained unreacted. what mass of carbon dioxide was produced?

Answers

C + O2 --> CO2

18g C = 18/12.01 = 1.49 moles (Limiting Reagent) 
62.3-14.3 = 48g oxygen that reacted 
48g O = 3 moles 

A (an) _____ is an easier path for electron flow that can cause shocks or an electric fire.

Answers

a short circuit is an easier path for electron flow

Final answer:

A short circuit is a low-resistance path between the terminals of a voltage source that can lead to electrical fires and shocks, especially when worn insulation allows conductors to touch.

Explanation:

A short circuit, also known as a "short," is an easier path for electron flow that can cause shocks or an electric fire. It is an undesired low-resistance path that develops between the terminals of a voltage source.

When the insulation on wires gets worn out, such as in a toaster, the wires may come into contact and a short circuit can occur. The electrical power formula P = V²/r indicates that the electrical power (P) dissipated increases rapidly when resistance (r) is low, which creates significant thermal energy resulting in the cord melting or burning. This scenario not only poses a thermal hazard by potentially starting a fire but also a shock hazard if a person comes into contact with the energized wires or the appliance itself.

If a poison expires, is it no longer poison, or is it more poisonous?

Answers

If poison expires it becomes less poisonous and soon it won't be poisonous. Depends on what kind of poison as well 
IT depends completely on the TYPE of poisin, some posions dont even expire

If 3.000g of k2co3 were used in this experiment (instead of khco3),
a. what is the balanced equation for the equation? k2co3 + 2hcl = 2kcl + co2 + h2o
b. how many milliliters of 6.0 m hcl would be needed ________ml hcl
c. how many grams of kcl would be formed in the reaction? ________ g kcl

Answers

A. The balanced chemical equation is correct:

k2co3 + 2hcl --> 2kcl + co2 + h2o

 

B. First let us calculate the moles of K2CO3.

moles K2CO3 = 3 g / (138.205 g/mol) = 0.0217 mol

 

From the equation, we need 2 moles of HCl per 1 mole of K2CO3, hence:

moles HCl needed = 0.0217 mol * 2 = 0.0434 mol

 

So the volume required is:

volume HCl = 0.0434 mol / 6 M = 7.24 x 10^-3 L = 7.24 mL

 

C. The number of moles of HCl and KCl is equal hence:

moles KCl = 0.0434 mol

 

The molar mass of KCl is 74.5513 g/mol, so the mass is:

mass KCl = 0.0434 mol * 74.5513 g/mol = 3.24 grams

Final answer:

In a reaction of K2CO3 with HCL the balanced chemical equation is K2CO3 + 2HCL = 2KCL + CO2 + H2O. For 3g of K2CO3, approximately 7.2 mL of 6M HCL would be required and the reaction would yield approximately 3.2g of KCL.

Explanation:

The topic that is being asked here revolves around chemical equations, stoichiometry and calculations pertaining to a chemical reaction. In the question, you have the chemical reaction K2CO3 + 2HCL = 2KCL + CO2 + H2O where K2CO3 is reacting with Hydrochloric acid (HCl) to form Potassium chloride (KCl), Carbon dioxide (CO2), and Water (H2O).

b) The molar mass of K2CO3 is approximately 138.205g/mol. Since you have 3g, that is approximately 0.0217 mol of K2CO3. Since 2 mol of HCl react with 1 mol of K2CO3, you would require 0.043 mol of HCL which in mL for 6M HCl would be approximately 7.2 mL HCl.

c) Given the reaction, 2 mol of KCL are generated per mol of K2CO3. So with 0.0217 mol of K2Co3, you will produce close to 0.043 mol of KCl. The molar mass of KCl is about 74.55g/mol, so the mass produced would be about 3.2g of KCL.

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Which of the following is true concerning atoms? A.Atoms are made of even smaller substances called subatomic particles B.The properties of atoms cannot be measured or observed

Answers

a.) atoms are made of even smaller atoms

Answer:

A.Atoms are made of even smaller substances called subatomic particles

Explanation:

Atoms are made up of small subatomic particles such as protons, electrons and neutrons.  

Protons and neutron are located in the center of the atom. Electrons orbit the center of the nucleus. Hence option A is incorrect.

Properties of an atom can be studied. The chemical property of an aton depends on its atomic number or the number of protons. Some atoms are inherently unstable and their radioactive properties are also studied. Hence option B is incorrect.  

For the element barium, which wavelength of light is produced by the largest drop in energy for an electron? Which represents the smallest drop? Explain.

Answers

For such calculation, we apply Planck's equation:
E = nhc / λ; where n is the number of photons, h is the Planck's constant, c is the speed of light and λ is the wavelength of the light.
As is visible from the equation, energy and wavelength have an inverse relationship. Therefore, larger energy drops produce smaller wavelengths and smaller drops produce larger wavelengths.

Describe how formal charges are used to choose between possible molecular structures

Answers

Lewis structure give the connectivity between atoms in amolecule.they tell about the arrangement of of the atoms of a molecule with in 3 d space... 1.Determine the total number of valence electrons in a molecule. 2.Draw a skeleton for the molecules which connects all atoms using only single bonds. 3.Consider the remaining electrons and place them so as to fill the ocets of as many atoms as possible. 4.Fill the remaining ocets by making multiple bonds. 5.Check that you have the lowest formal charges possible for all the atoms.

Calculate the number of moles of oxygen atoms in 35.2 grams of oxygen.

Answers

 Atomic Weight of Oxygen is 16 g/mol 

Use the equation n=m/MM

You know m (mass) and MM (molar mass), sub in into the equation.


Ans: 2.2 mol

Why does it make sense that if an atom loses electrons, it is left with a positive charge?

Answers

Electrons are negatively charged. If you remove negative particles, the leftover atom is positive and positive is really just another word for "less negative".

Ions can be made by single element or covalently bonded group of elements. On removing an electron from an atom, atoms occupy positive charge.

What is Ions?

Any species that contain charge whether it is positive charge or negative charge is called ions. The example of polyatomic ions are sulfate, phosphate, nitrate etc.

Cation is the species that loose electron and attain positive charge while anion is a species which gain electron and attains negative charge. Electrons are negatively charged. If we remove negative particles, the leftover atom is positive. when anion and cation combine in fixed ration the the overall charge of the molecule is zero that is molecule is neutral.

Therefore, on removing an electron from an atom, atoms occupy positive charge.

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What electrically neutral atom will have an electron configuration of 1 s 22 s 22 p 4? Use a periodic table.

Question 5 options:

nitrogen (N)

oxygen (O)

carbon (C)

fluorine (F)

Answers

Answer:

oxygen (O)

Explanation:

Oxygen is electrically neutral atom will have an electron configuration of 1 s 22 s 22 p 4. Therefore, option B is correct.

What is electronic configuration ?

The distribution of electrons in an element's atomic orbitals is described by the element's electron configuration. Atomic electron configurations adhere to a standard nomenclature in which all atomic subshells that contain electrons are arranged in a sequence with the number of electrons they each hold expressed in superscript.

One orbital can house a maximum of two electrons, and there are four different types of orbitals (s, p, d, and f). More electrons can be held in the p, d, and f orbitals since they contain various sublevels. According to its location on the periodic table, each element's electron configuration is distinct.

The arrangement of electrons within an atom's orbitals is known as its electronic configuration. Each neutral atom contains an equal number of electrons, which is a fixed number.

Thus, option B is correct.

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Which type of change occurs when electrons form a bond between two atoms?
a. atomic change
b. chemical change
c. physical change
d. phase change?

Answers

B is the answer. hope this helps

Is instant coffee compound solution or heterogeneous mixture?

Answers

Heterogeneous mixture because the small particles would be floating

Which group of elements have some properties of metals and some properties of nonmetals?

Answers

The group of elements that have some properties of metals and some properties of nonmetals are called metalloids.

What is number in front of a chemical formula in an equation that indicates how many molecules or atoms of each reactant and product are involved in a reaction?

Answers

coefficient There are 3 major parts for each reactant in a formula. That would be the coefficient, subscript, and element. For instance, the burning of methane (CH4) in oxygen. The unbalanced formula is CH4 + O2 => CO2 + H2O The numbers 2 and 4 above should all be subscripts, but I'm limited in my ability to type them. And the letters each represent elements. If you carefully count the number of atoms for each element, you'll soon determine that they don't match. For instance, the left side has 1 carbon, 4 hydrogen, and 2 oxygen. Bu the right side has 1 carbon, 2 hydrogen and 3 oxygen. To balance the equation, we need to add coefficients to the equation so that the number of atoms for each element matches. The balanced formula, created by adding coefficients is CH4 + 2 O2 => CO2 + 2 H2O Which now has 1 carbon, 4 hydrogen, and 4 oxygen on both sides.

When elemental sodium is added to water, the sodium atoms ionize spontaneously. uncharged na becomes na+. this means that the na atoms have been _____________?

Answers

ionized, become charged, become a cation

hopefully that helps

Final answer:

Sodium atoms are oxidized when they lose an electron and change into sodium cations upon contact with water. This forms positively charged Na+ ions that are surrounded by water molecules in a process known as dissociation.

Explanation:

When elemental sodium is added to water, the sodium atoms ionize spontaneously. This transformation from an uncharged Na to Na+ means that the Na atoms have been oxidized. An oxidation process involves the loss of electrons, changing the sodium atom into a sodium cation.

A sodium atom (Na) has equal numbers of protons and electrons, making it uncharged. Once an electron is lost, the sodium cation (Na+) has one more proton than electrons, thus acquiring an overall positive charge.

Dissociation in water occurs when atoms or groups of atoms break off from molecules and form ions. For example, when table salt (NaCl) is added to water, it dissociates into Na+ and Cl− ions.

During this process, spheres of hydration form around the ions, with water molecules orienting themselves around the positive sodium ion and negative chloride ion due to their polar natures.

The n = 1 shell contains ________ p orbitals. all the other shells contain ________ p orbitals.

Answers

When determining the location of electrons using quantum numbers, the n=1 shell only contains the 1s orbital; therefore the shell contains zero p orbitals. All the other shells contain one less than the n number, or n-1 p orbitals.

Answer:

Zero; Three

Explanation:

The quantum numbers are the set of four described unique values that describes each electron in the orbitals of the atom. The four quantum numbers are the principal, azimuthal, magnetic, and spin.

The principal quantum number (n) gives the energy levels of the electrons. The value of n is always n ≥ 1.

The azimuthal quantum number, also known as the orbital quantum number, describes the shape of the subshell. The values of this quantum number ranges from 0 ≤  ℓ ≤ n − 1.

For n = 1,

The value of:  ℓ = n-1 = 1-1 = 0

∵  ℓ = 0 ⇒ s-orbital

Therefore, in n=1 shell, there is only one value of ℓ. So, there is only one s-orbital and zero p-orbital.

For n > 1,

The value of: l = n-1 > 0

Therefore, for n > 1 shell, there are more than one values of ℓ. So, n > 1 shells contains a set of three p-orbitals each.

Which particle(s) determine(s) the identification of an atom?

Answers

Proton number of a particular atom

Methane is a colorless, odorless gas. It oxidizes in air and has a boiling point of -161° C. Which property of methane is a chemical property? A. odor B. color C. boiling point D. oxidizes in air

Answers

Methane is a colorless, odorless gas. It oxidizes in air and has a boiling point of -161° C. Which property of methane is a chemical property?

D. oxidizes in air

The  property of methane which  is a chemical property is its ability to oxidize in air.

What are the chemical properties?

These properties are defined as those properties which become evident during or after a chemical reaction after the identity of the substance is changed during chemical reaction.

These properties cannot be determined externally just by viewing the substance ,these change immensely after a substance undergoes a chemical change.These are used for identification of unknown substances and for building up chemical classifications.

The major chemical properties are flammability,toxicity,reactivity,acidity and heat of combustion.For a chemical property to be apparent , it is necessary that the structure of the substance is altered.

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Explain why metals are capable of conducting electricity while ionic solids are not.

Answers

Metal atoms have outer electrons which are not tied to any one atom. These electrons can move freely within the structure of a metal when an electric current is applied. There are no such free electrons in covalent or ionic solids, so electrons can't flow through them..
however ionic solids might be able to conduct electricity in their molten state to a certain degree

Give two reasons why the flame test is sometimes invalid

Answers

Answer: 1.A false positive and 2.A false negative.

Explanation:

A false positive the classic example is the contamination of almost any sample with sodium ions which gives an intense yellow line even when the sodium is present as only impurity.

A false negative here sodium ions is the culprit that masks other emissions unless the emissions are resolved spectroscopically rather than simply visually.

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