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If an aqueous solution of "Mg"("OH")_2 had a "pH" of 10.52 ... - Socratic
Given #"pH of Mg(OH)"_2 = 10.52#. #pOH = 14-10.52# #"pOH of Mg(OH)"_2 = 14-10.52# #"pOH of Mg(OH)"_2 = 3.48# ...

Question #6cd6a - Socratic
For neutralization mol of H+ ions of acid = mol of OH- ions of base So first you need to know the H+ of 10ml of 0.1 M HCl The number H^+ ions in the solution is the concentration of HCl because strong acids dissociate completely thus producing "1mole of H+"/"1mole of acid." This is only applicable to strong acids. The same is the case with strong base but instead of H^+ they produce strong ...

Question #e8338 - Socratic
Barium hydroxide, Ba(OH)_2, is a strong base, so it will react with hydrochloric acid, HCl, a strong acid, to produce water and barium chloride, a soluble salt. Keep in mind that barium hydroxide is not very soluble in aqueous solution, but what does dissolve will dissociate completely to form barium cations, Ba^(2+), and hydroxide anions, OH^(-).

Using the Brønsted-Lowry concept of acids and bases, which ... - Socratic
HS⁻ + H₂O → H₂S + OH⁻ The HS⁻ has become H₂S. It has one more H atom. It has accepted a proton (H⁺), so it is a Brønsted-Lowry base. The H₂O has become OH⁻. It has one less H atom. It has donated a proton (H⁺), so it is a Brønsted-Lowry acid. Hope this helps.

Back Titration (determining moles OH- and amount of Al(OH)3 ... - Socratic
A 500mg tablet containing an antacid mixture of aluminum hydroxide, magnesium hydroxide, and inert material was dissolved in 50.0 mL of 0.500 M HCl solution.

Question #947ff - Socratic
Barium hydroxide, #"Ba"("OH")_2#, is a strong base, which means that it dissociates completely to form barium cations and hydroxide anions -- keep in mind that barium hydroxide is not very soluble, but the amount that dissolves does so completely.

What is the "pH" of a solution of magnesium hydroxide given ... - Socratic
"pH" = 10.52 In order to find the pH of a solution, you must determine the concentration of hydronium ions, "H"_3"O"^(+), either directly or indirectly. When you're dealing with a Bronsted - Lowry acid, you will be solving for the concentration of hydronium ions directly. When you're dealing with a Bronsted - Lowry base, like you are here, you will be solving for the concentration of hydronium ...

Which pair is a Brønsted–Lowry conjugate acid–base pair?
The Brønsted–Lowry theory is an acid–base reaction theory. The fundamental concept of this theory is that when an acid and a base react with each other, the acid forms its conjugate base, and the base forms its conjugate acid by exchange of a proton. So the anwer could only be the first pair: NH_3 and ammonium catione.

Question #410dd - Socratic
A) 2 The van't Hoff factor, i, tells you the ratio that exists between the number of moles of solute dissolved in water and the number of moles of particles of solute produced in solution. i = "what you get in solution"/"what you dissolve to make the solution" Potassium hydroxide, "KOH", is a soluble ionic compound, which means that it dissociates completely to form potassium cations and ...

To determine the solubility of calcium hydroxide, a chemist ... - Socratic
That is the concentration of Ca(OH)_2 was equal to the concentration as specified by the following equilibrium..... Ca(OH)_2(s)rightleftharpoonsCa^(2+) + 2HO^- We had 8.13xx10^-3*Lxx0.102*mol*L^-1=8.29xx10^-4*mol with respect to HCl, and thus there were HALF this molar quantity present in solution with respect to the saturated Ca(OH)_2; you ...

 

 

 

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