Among the given conditions, the condition which represents an acidic solution should be identified. pH = 8.95 [H + ] < 1.0 × 10 − 7 M pOH=3 .46 [OH − ] = 7.11 × 10 − 10 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 acidic when its pH is equal to less than 7.
Among the given conditions, the condition which represents an acidic solution should be identified. pH = 8.95 [H + ] < 1.0 × 10 − 7 M pOH=3 .46 [OH − ] = 7.11 × 10 − 10 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 acidic when its pH is equal to less than 7.
Solution Summary: The author explains that water is an amphoteric in nature implies it can act as an acid as well as base.
Among the given conditions, the condition which represents an acidic solution should be identified.
pH = 8.95
[H+]<1.0×10−7 M
pOH=3.46
[OH−]=7.11×10−10 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 acidic when its pH is equal to less than 7.
Predict the products of this organic reaction:
+
H
ZH
NaBH3CN
H+
n.
?
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structure.
X
What is the missing reactant R in this organic reaction?
+ R
H3O+
+
• Draw the structure of R in the drawing area below.
• Be sure to use wedge and dash bonds if it's necessary to draw one particular enantiomer.
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structure.
What would be the best choices for the missing reagents 1 and 3 in this synthesis?
1
1. PPh3
2. n-BuLi
2
• Draw the missing reagents in the drawing area below. You can draw them in any arrangement you like.
• Do not draw the missing reagent 2. If you draw 1 correctly, we'll know what it is.
• Note: if one of your reagents needs to contain a halogen, use bromine.
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