The valence of aluminum is +3, and the valence of chlorine is –1. The formula for aluminum chloride iscorrectly written as
A. ClAl3.
B. Cl3Al.
C. AlCl3.
D. Al3Cl.

Answers

Answer 1
Answer: The correct option is C.i.e. AlCl3Given:The valence of aluminum is +3, and the valence of chlorine is –1. Thus, 3 chlorine atoms each of (-1 charge )combine to make the charge balance because of Al (3+). Thus, 1 atom of Aluminum (Al) binds with three atoms of Chlorine (Cl).Thus, the net foromula becomes AlCl3
Answer 2
Answer:

AICI3

which is choice c.


Aluminium chloride

Chemical compound

DescriptionAluminium chloride is the main compound of aluminium and chlorine. It is white, but samples are often contaminated with iron(III) chloride, giving it a yellow color. The solid has a low melting and boiling point. Wikipedia

IUPAC ID: aluminium chloride

Molar mass: 133.34 g/mol

Soluble in: Water

Related Lewis acids: Iron(III) chloride; Boron trifluoride

Heat capacity (C): 91.1 J/mol·K

Other names: aluminium(III) chloride; aluminum trichloride


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Which of the following compounds contains both ionic and covalent bonds?Select one:
a. NH3
b. NaNO3
c. CH3OH
d. AlCl3

Answers

Answer:

d. AlCl3

Explanation:

In AlCl₃ each Al³⁺ cation is surrounded by three Cl⁻ anion. Al³⁺ has a small ionic radius giving it a high charge density whereas Cl⁻ has a large ionic radius, low charge, and easily polarizable. Al³⁺ pulls one electron from each of the three Cl⁻ ion thus giving the Al-Cl bond a covalent character.  

NaNO3 because Na is a cation allowing it to bond with anions which are NO3. NO3 is a covalent compound because nitrogen and oxygen are sharing electrons when they bond; thus making a covalent bond

What is an ionic bond?

Answers

In ionic bond there is the formation of ions due to transfer of electrons from one atom to the other. Normally, at this link, there is an element that tends to yield electrons (metal-cation), and one that tends to receive electrons (not metal-anion).
Note: the Ionic bond is the only in the transfer of electrons.
Ionic bonds are when atoms lose or gain electrons so that both elements now have a full outer shell. Ionic bonds form between metals and nonmetals.

_____ is the element from which iron is taken.

Carbon
Quartz
Hematite

Answers

Hematite is the element
Answer:

Hematite is the element from which iron is taken.

The fermentation of C6H12O6 will produce CO2 and 1. C3H5(OH)3 2. C2H5OH 3. Ca(OH)2 4. Cr(OH)3

Answers

Answer is "2 - CHOH".

Fermentation is a process which is used to produce energy from sugars (glucose, sucrose and fructose) in the absence of oxygen.

Fermentation with the glucose releases energy by producing carbon dioxide (CO) and ethanol (CHOH) as its byproducts.
The reaction is 
           C₆H₁₂O₆ → 2C₂H₅OH + 2CO₂ + energy



If the Ka of a monoprotic weak acid is 5.4 × 10-6, what is the pH of a 0.25 M solution of this acid?

Answers

The first step is to write the balanced equation of the dissociation of the monoprotic weak acid. This can be assumed to have 1:1 stoichiometric relationships, so the equation and ICE chart are given by:

                          HA ---> H^+ + A^-
initial                 0.25       0          0
change               -x         x           x
equilibrium    0.25-x       x           x

This gives an expression for Ka given by:

Ka = (x)^2/(0.25-x) = 5.4x10^-6
x = 1.159x10^-3 = [H+] = [A-]

pH = -log[H+] = -log[1.159x10^-3] = 2.936

What is the term for the dissolving medium in a solution? (1 point) A. solvent
B. solute
C. solvator
D. emulsifier

Answers

Answer : The correct option is, (A) solvent

Explanation :

Solvent : It is present in large amount. It is a type of substance in which the amount of solute is dissolved.

Solute : It is present in smaller amount. It is a substance that is dissolved in another substance.

Emulsifier : It is a molecule that has two ends, one is water loving end and another is oil loving end. That means it is a substance which stabilizes the emulsion.

Hence, the term for the dissolving medium in a solution is, solvent.

The term for the dissolving medium in a solution is "solvent." It is the component that can dissolve other substances (solute) to form a homogeneous mixture, known as a solution.

The term for the dissolving medium in a solution is "solvent." In a solution, a solvent is the component that exists in the larger quantity and has the ability to dissolve other substances, known as solutes. This process occurs due to the solvent's molecular structure, which allows it to interact with and surround the solute particles, breaking their intermolecular forces and dispersing them evenly throughout the solvent.

Solvents can be liquids (such as water in aqueous solutions), solids (as in solid-state solutions), or even gases (in gas-phase solutions). The choice of solvent depends on the specific application and the nature of the solute. For instance, in chemistry labs, common solvents include water, ethanol, acetone, and more, each chosen based on their compatibility with the substances being studied.

The ability of a solvent to dissolve a solute is influenced by various factors, including temperature, pressure, and the nature of the solute and solvent molecules. The dissolution process is often described in terms of solvation, where solvent molecules surround and stabilize solute particles through electrostatic interactions.

In summary, the solvent is a crucial component of a solution, responsible for dissolving and dispersing solute particles, leading to the formation of a homogeneous mixture. This concept is foundational in chemistry and plays a fundamental role in various scientific, industrial, and everyday applications.

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