CHAPTER 5 FREE-RESPONSE QUESTIONS 1. When a ratio of 2 formula units of A£NO, and 3 formula units of KCl solids are dissolved in 100 mL of pure water, a white precipitate is observed to form. 3, (a) Write a net ionic equation for the formation of the precipitate. (b) In Beaker 1, draw the correct number of particles formed in the solid, white precipitate, and identify the type/nature of bonding. Beaker (1) (c) In Beaker 2, draw a picture of the relative number of dissolved particles remaining in soluti You may ignore the H,O molecules present. Beaker (2)

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CHAPTER 5
FREE-RESPONSE QUESTIONS
1. When a ratio of 2 formula units of A£NO, and 3 formula units of KCl solids are dissolved in 100 mL
of pure water, a white precipitate is observed to form.
3,
(a) Write a net ionic equation for the formation of the precipitate.
(b) In Beaker 1, draw the correct number of particles formed in the solid, white precipitate, and
identify the type/nature of bonding.
Beaker (1)
(c) In Beaker 2, draw a picture of the relative number of dissolved particles remaining in soluti
You may ignore the H,O molecules present.
Beaker (2)
Transcribed Image Text:CHAPTER 5 FREE-RESPONSE QUESTIONS 1. When a ratio of 2 formula units of A£NO, and 3 formula units of KCl solids are dissolved in 100 mL of pure water, a white precipitate is observed to form. 3, (a) Write a net ionic equation for the formation of the precipitate. (b) In Beaker 1, draw the correct number of particles formed in the solid, white precipitate, and identify the type/nature of bonding. Beaker (1) (c) In Beaker 2, draw a picture of the relative number of dissolved particles remaining in soluti You may ignore the H,O molecules present. Beaker (2)
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