Which of these formulas contains the most polar bond?
(1) H–Br (3) H–F(2) H–Cl (4) H–I

Answers

Answer 1
Answer: The answer is H—F. Fluorine is the most electronegative of the four halogens (and, in fact, of all the elements), so it does the best job of gathering the shared electrons to itself. Therefore, the bond with F is the most polar

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An explosion that releases great amounts of heat is an example ofan exothermic process
an implosion
an endothermic process
a phase change

(please explain! Do not jus give me the answer... I know its not B or
d.

Answers

An explosion that releases great amounts of heat is an example of an exothermic process. Any reaction that gives off or releases energy as light, electricity, heat, or sound is considered to be exothermic, with "exo" meaning "outside". An explosion is one of the most extreme cases of exothermic reactions.

In a chemical reaction occurring in an open beaker, the reactants have a mass of 10.0 g and contain 1000 J of energy. The products in the beaker contain a mass of 5.0 g and 500 J of energy. Which best explains the difference in energy and mass as reactants are converted to products?

Answers

The reaction sure involves the formation of products in gas state and the generation of heat (exothermical reaction)

Answer:

C. law of conservation

Explanation:

Give an advantage and disadvantage of nuclear energy

Answers

One advantage is that is another source that we can rely on that is not fossil fuels. Depending on how much your country has it can increase its revenue and it provides jobs since those facilities have to be closely monitored.. One disadvantage is the harmful effects a spill can cause an environment/ecosystem.

Light of three different wavelengths—325 nm, 455 nm, and 632 nm—is shined on a metal surface. The observations for each wavelength, labeled A, B, and C, is as follows: Observation A: No photoelectrons were observed.
Observation B: Photoelectrons with a kinetic energy of 155 kJ/mol were observed
Observation C: Photoelectrons with a kinetic energy of 51 kJ/mol were observed
Which observation corresponds to which wavelength of light?

Answers

Answer:

A. No photoelectrons < C. KE = 51 kJ·mol⁻¹ <  B. KE = 155 kJ·mol⁻¹

              632 nm         <              455 nm      <           325 nm

Explanation:

The equation for the photoelectric effect is

E = hf = Φ + KE  

That is, the energy (hf) of the incident photon is used to eject an electron from the surface of the metal ( the work function, Φ), and anything left over goes into the kinetic energy (KE) of the electron.

1. Calculate the relative energies of the three wavelengths

E = hf

fλ = c or f = c/λ. So,  

E = (hc)/λ

The energy is inversely proportional to the wavelength. Thus, the order of increasing energies is

632 nm < 455 nm < 325 nm

2. Assign the radiation to the observations.  

Solve the photoelectric equation for KE.

E = Φ + KE

KE = E - Φ

If E < Φ, the light does not have enough energy to eject a photoelectron.

Once E > φ, the greater the value of E, the greater the value of  KE.

The order of energies is

A. No photoelectrons < C. KE = 51 kJ·mol⁻¹ < B. KE = 155 kJ·mol⁻¹

               632 nm        <            455 nm         <               325 nm

Final answer:

Observation A corresponds to the 325 nm wavelength, observation B corresponds to the 632 nm wavelength, and observation C corresponds to the 455 nm wavelength.

Explanation:

The observation labeled A corresponds to the 325 nm wavelength, observation B corresponds to the 632 nm wavelength, and observation C corresponds to the 455 nm wavelength. This is because the behavior of photoelectric effect can be explained by Einstein's equation, E = hf, where E is the energy of a photon, h is Planck's constant, and f is the frequency of the light. Since frequency and wavelength are inversely proportional, higher frequency light corresponds to shorter wavelength and vice versa.

Learn more about photoelectric effect here:

brainly.com/question/35875610

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The physicals properties of a substance can be used to identify the substance, because_____. Select all that apply.at any given location, the physical properties of a substance do not change
when the substances are chemically reacted the physical properties remain the same
each substance has a unique set of physical properties
no two substances have any of the same properties

Answers

The answer is C because having a unique set of features sets the substance apart from another substance.

The following statements apply:

1. At any given location, the physical properties of a substance do not change.

2. Each substance has a unique set of physical properties.

Each substance usually has some characteristics that are peculiar to it and these characteristics can be used to identify them and separate them from other materials. Change of location does not affect the properties of substances, thus, the properties of oxygen that is found in America is the same as the one that is found in Nigeria.

What would be a simple way to prevent erosion

Answers

There are many simple ways to prevent erosion. One of the simplest forms of preventing erosion is with vegetation and by establishing root systems that hold the soil together. You can also use geotextiles, fertilizers and also build retainer walls to keep the soil intact and prevent erosion.