COULD A BUFFERED SOLUTION BE MADE BY MIXING AQUEOUS ... - SOCRATIC
Mar 25, 2017 Could a buffered solution be made by mixing aqueous solutions of HCl and NaOH? Explain. Why isn't a mixture of a strong acid and its conjugate base considered a buffered … From socratic.org
HOW DO YOU WRITE THE CHEMICAL EQUATION AND - SOCRATIC
Dec 15, 2016 Kb = [H 4N +][−OH] [N H 3(aq)] = 10−4.75 The concentration of [H O−] in such solutions is low. As for the use of ammonia in window cleaner, I suspect the percentage of … From socratic.org
Nov 9, 2014 H^+ + OH^--> H_2O when the acid was added to the resulting solution. The H^+ and OH^- react in a 1:1 ratio. This tells us that the number of moles of H^+ used will be equal … From socratic.org
Mar 22, 2016 When an acid and a base are placed together, they react to neutralize the acid and base properties, producing a salt (neutralisation). The H (+) in the acid combines with the OH ( … From socratic.org
CALCULATING THE CONCENTRATION OF EXCESS HCL IN E - SOCRATIC
The acid in excess is then titrated with N aOH (aq) of KNOWN concentration....we can thus get back to the concentration or molar quantity of M (OH)2...as it stands the question (and answer) … From socratic.org
WHAT ARE THE FACTORS THAT MAKE AMPHOTERIC OXIDES ABLE TO
Jun 27, 2018 Warning! Long Answer. Here's what I find. > Basic oxides Metallic character increases from right to left and from top to bottom in the Periodic Table. The most metallic … From socratic.org
WHAT MAKES FOR A GOOD LEAVING GROUP? + EXAMPLE - SOCRATIC
Jun 23, 2015 A good leaving group has to be able to part with its electrons easily enough, so typically, it must be a strong acid or weak base relative to other substituents on the same … From socratic.org
WHAT IS THE CHEMICAL FORMULA FOR LITHIUM HYDROXIDE? - SOCRATIC
Apr 15, 2017 Lithium is a Group 1 metal and commonly forms a M + ion. Hydroxide anion, −OH, has a unit negative charge. When they make music together, there is thus 1:1 stoichiometry … From socratic.org
Nov 19, 2017 ΔG_text (cell)^@= "-332 kJ·mol"^"-1"" Your standard reduction potentials for each half-reaction are: ulbb ("Standard Reduction Potentials"color (white) (mmmmmll)E ... From socratic.org
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