Among the given conditions, the condition which represents a basic solution should be identified. pOH = 12.53 pH = 3.64 pOH<[H + ] [OH − ] > 1.0 × 10 − 7 M . Concept Introduction: Water is an amphoteric in nature implies it can act as an acid as well as base. Ionization of water is given as: H 2 O ( l ) + H 2 O ( l ) ⇀ ↽ H + ( a q ) + OH − ( a q ) Here, one water molecule is act as an acid by accepting proton and another molecule of water act as a base by donating proton. At 25 ° C , the actual concentrations of the products are: [H + ][OH − ]=1 × 10 − 14 To express the small number, p scale is used, which implies to take the log of a number. Since, the concentration of [H + ] in aqueous solution is small, by using the p scale in the form of pH scale, it is better way to represent acidity of solution. Thus, pH = -log [H + ] Similarly, the relation between pOH and [OH − ] is given by: pOH=-log [OH − ] The solution is basic when its pH is equal to greater than 7.
Among the given conditions, the condition which represents a basic solution should be identified. pOH = 12.53 pH = 3.64 pOH<[H + ] [OH − ] > 1.0 × 10 − 7 M . Concept Introduction: Water is an amphoteric in nature implies it can act as an acid as well as base. Ionization of water is given as: H 2 O ( l ) + H 2 O ( l ) ⇀ ↽ H + ( a q ) + OH − ( a q ) Here, one water molecule is act as an acid by accepting proton and another molecule of water act as a base by donating proton. At 25 ° C , the actual concentrations of the products are: [H + ][OH − ]=1 × 10 − 14 To express the small number, p scale is used, which implies to take the log of a number. Since, the concentration of [H + ] in aqueous solution is small, by using the p scale in the form of pH scale, it is better way to represent acidity of solution. Thus, pH = -log [H + ] Similarly, the relation between pOH and [OH − ] is given by: pOH=-log [OH − ] The solution is basic when its pH is equal to greater than 7.
Solution Summary: The author explains that water is an amphoteric in nature, which implies it can act as an acid as well as base.
Among the given conditions, the condition which represents a basic solution should be identified.
pOH = 12.53
pH=3.64
pOH<[H+]
[OH−]>1.0×10−7 M.
Concept Introduction:
Water is an amphoteric in nature implies it can act as an acid as well as base.
Ionization of water is given as:
H2O(l)+H2O(l)⇀↽H+(aq)+OH−(aq)
Here, one water molecule is act as an acid by accepting proton and another molecule of water act as a base by donating proton.
At 25°C, the actual concentrations of the products are:
[H+][OH−]=1×10−14
To express the small number, p scale is used, which implies to take the log of a number. Since, the concentration of [H+] in aqueous solution is small, by using the p scale in the form of pH scale, it is better way to represent acidity of solution.
Thus, pH = -log [H+]
Similarly, the relation between pOH and [OH−] is given by:
pOH=-log [OH−]
The solution is basic when its pH is equal to greater than 7.
How many chiral carbons are in the molecule?
OH
F
CI
Br
A mixture of three compounds Phen-A, Acet-B and Rin-C was analyzed using TLC
with 1:9 ethanol: hexane as the mobile phase. The TLC plate showed three spots
of R, 0.1 and 0.2 and 0.3.
Which of the three compounds (Phen-A; Acet-B or Rin-C) would have the highest
(Blank 1), middle (Blank 2) and lowest (Blank 3) spot respectively?
0
CH:
0
CH,
0
H.C
OH
H.CN
OH
Acet-B
Rin-C
phen-A
A
A
<
How many chiral carbons are in the molecule?
F
Chapter 16 Solutions
Introductory Chemistry: Foundation - Text (Looseleaf)
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