The amount of methylamine (in grams) present in 100.0 mL of the given solution has to be calculated Concept Information: Relationship between pH and pOH: pOH is similar to pH . The only difference is that in pOH the concentration of hydroxide ion is used as a scale while in pH , the concentration of hydronium ion is used. The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation, pH + pOH = 14, at 25 o C As pOH and pH are opposite scale, the total of both has to be equal to 14. pOH definition: The pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion [OH - ] concentration. pOH scale is analogous to pH scale. pOH = -log[OH - ] Base ionization constant: The ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid. The ionization of a weak base B is given by the below equation. B ( a q ) + H 2 O ( l ) ⇄ HB + ( a q ) + OH - ( a q ) The equilibrium expression for the ionization of weak base B will be, K b = [ HB + ] [ OH - ] [ B ] Where, K b is base ionization constant, [ OH − ] is concentration of hydroxide ion [ HB + ] is concentration of conjugate acid [ B] is concentration of the base Molar mass: Molar mass is defined as mass of the chemical compound or chemical element divided by its amount. Molar mass= mass of the substance in grams moles To Calculate: The amount of methylamine (in grams) present in 100.0 mL of the given solution
The amount of methylamine (in grams) present in 100.0 mL of the given solution has to be calculated Concept Information: Relationship between pH and pOH: pOH is similar to pH . The only difference is that in pOH the concentration of hydroxide ion is used as a scale while in pH , the concentration of hydronium ion is used. The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation, pH + pOH = 14, at 25 o C As pOH and pH are opposite scale, the total of both has to be equal to 14. pOH definition: The pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion [OH - ] concentration. pOH scale is analogous to pH scale. pOH = -log[OH - ] Base ionization constant: The ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid. The ionization of a weak base B is given by the below equation. B ( a q ) + H 2 O ( l ) ⇄ HB + ( a q ) + OH - ( a q ) The equilibrium expression for the ionization of weak base B will be, K b = [ HB + ] [ OH - ] [ B ] Where, K b is base ionization constant, [ OH − ] is concentration of hydroxide ion [ HB + ] is concentration of conjugate acid [ B] is concentration of the base Molar mass: Molar mass is defined as mass of the chemical compound or chemical element divided by its amount. Molar mass= mass of the substance in grams moles To Calculate: The amount of methylamine (in grams) present in 100.0 mL of the given solution
Solution Summary: The author explains the relationship between pH and pOH. The ionization of a weak base is incomplete.
The amount of methylamine (in grams) present in 100.0 mL of the given solution has to be calculated
Concept Information:
Relationship between pH and pOH:
pOH is similar to
pH. The only difference is that in
pOH the concentration of hydroxide ion is used as a scale while in
pH, the concentration of hydronium ion is used.
The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation,
pH+pOH=14,at25oC
As
pOH and
pH are opposite scale, the total of both has to be equal to 14.
pOH definition:
The
pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion
[OH-] concentration.
pOH scale is analogous to pH scale.
pOH=-log[OH-]
Base ionization constant:
The ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid.
The ionization of a weak base
B is given by the below equation.
B(aq)+H2O(l)⇄HB+(aq)+OH-(aq)
The equilibrium expression for the ionization of weak base
B will be,
Kb=[HB+][OH-][B]
Where,
Kb is base ionization constant,
[OH−] is concentration of hydroxide ion
[HB+] is concentration of conjugate acid
[B] is concentration of the base
Molar mass:
Molar mass is defined as mass of the chemical compound or chemical element divided by its amount.
Molar mass=mass of the substance in gramsmoles
To Calculate: The amount of methylamine (in grams) present in 100.0 mL of the given solution
need help not sure what am doing wrong step by step please answer is 971A
During the lecture, we calculated the Debye length at physiological salt concentrations and temperature, i.e. at an ionic strength of 150 mM (i.e. 0.150 mol/l) and a temperature of T=310 K. We predicted that electrostatic interactions are effectively screened beyond distances of 8.1 Å in solutions with a physiological salt concentration.
What is the Debye length in a sample of distilled water with an ionic strength of 10.0 µM (i.e. 1.00 * 10-5 mol/l)? Assume room temperature, i.e. T= 298 K, and provide your answer as a numerical expression with 3 significant figures in Å (1 Å = 10-10 m).
Influence of salt concentrations on electrostatic interactions 2
Answer is 2.17A why not sure step by step please
What is the Debye length in a concentrated salt solution with an ionic strength of 2.00 mol/l? Assume room temperature, i.e. T= 298 K, and provide your answer as a numerical expression with 3 significant figures in Å (1 Å = 10-10 m).
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell