Ex 2) Acids and Bases: A solution is obtained by completely dissolving 900 g of sodium hypochlorite in water (V solution=100 liters). a) Calculate pH and the concentration of hypochlorite ions at equilibrium knowing that, at T=25°C, Ka for hypochlorous acid is 2.95x10. b) Briefly describe the effects of electronegativity on the strength of hypochlorous acid, hypobromous acid and hypoiodous acid.
Ex 2) Acids and Bases: A solution is obtained by completely dissolving 900 g of sodium hypochlorite in water (V solution=100 liters). a) Calculate pH and the concentration of hypochlorite ions at equilibrium knowing that, at T=25°C, Ka for hypochlorous acid is 2.95x10. b) Briefly describe the effects of electronegativity on the strength of hypochlorous acid, hypobromous acid and hypoiodous acid.
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![Ex 2) Acids and Bases: A solution is obtained by completely dissolving 900 g of sodium hypochlorite in water (V
solution=100 liters).
a) Calculate pH and the concentration of hypochlorite ions at equilibrium knowing that, at
T=25°C, Ka for hypochlorous acid is 2.95x10°.
b) Briefly describe the effects of electronegativity on the strength of hypochlorous acid, hypobromous acid and
hypoiodous acid.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc0f1eb44-3cb8-4f9d-8a6b-6ec73b2c77d2%2Ffa4439de-5344-4dbe-b441-880ea152f7b9%2Fdg7o18x_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Ex 2) Acids and Bases: A solution is obtained by completely dissolving 900 g of sodium hypochlorite in water (V
solution=100 liters).
a) Calculate pH and the concentration of hypochlorite ions at equilibrium knowing that, at
T=25°C, Ka for hypochlorous acid is 2.95x10°.
b) Briefly describe the effects of electronegativity on the strength of hypochlorous acid, hypobromous acid and
hypoiodous acid.
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