5. a) The Kw value that we normally use is for room temperature (25°C). Calculate the equilibrium H+ concentration and pH of pure, neutral water at 0.0°C (Kw= 1.14 x 10-15at 0.0°C) b) Methylamine (CH3NH2) is a derivative of the weak base ammonia. Write the equation for the ionization of methylamine in water, and use the I.C.E. method to find the pH of a 3.75 M CH3NH2 solution.(Kb= 4.37 x 10-4at 25°C)

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5. a) The Kw value that we normally use is for room temperature
(25°C). Calculate the equilibrium H+ concentration and pH of pure,
neutral water at 0.0°C (Kw= 1.14 x 10-15at 0.0°C)
b) Methylamine (CH3NH2) is a derivative of the weak base ammonia.
Write the equation for the ionization of methylamine in water, and use
the I.C.E. method to find the pH of a 3.75 M CH3NH2 solution.(Kb=
4.37 x 10-4at 25°C)
Transcribed Image Text:5. a) The Kw value that we normally use is for room temperature (25°C). Calculate the equilibrium H+ concentration and pH of pure, neutral water at 0.0°C (Kw= 1.14 x 10-15at 0.0°C) b) Methylamine (CH3NH2) is a derivative of the weak base ammonia. Write the equation for the ionization of methylamine in water, and use the I.C.E. method to find the pH of a 3.75 M CH3NH2 solution.(Kb= 4.37 x 10-4at 25°C)
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