When an ionic solid dissolves in water, water molecules attract the ions causing them to dissociate or come apart. The resulting dissolved ions are electrically charged particles that allow the solution to conduct electricity. The following chemical equations represent this phenomenon: NaCl (s) = Na* (aq) + Cl´(aq) Na2CO3 (s) = 2Na* (aq) + CO3? (aq) Write a similar balanced chemical equation for each electrolyte in the data table.

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Chapter1: Chemical Foundations
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EXPERIMENT #5 - Ionic and Covalent Compounds
Data and results
Complete the following table with your conductivity results:
Compound
NaCl
NazCO3
NaHCO3
ΚNO3
Conductivity
43.81
67.33
70.16
36.74
value
Compound
NHẠCI
NH3
HCI
HCN
Conductivity
97.20
0.83
39.29
0.00
value
Transcribed Image Text:EXPERIMENT #5 - Ionic and Covalent Compounds Data and results Complete the following table with your conductivity results: Compound NaCl NazCO3 NaHCO3 ΚNO3 Conductivity 43.81 67.33 70.16 36.74 value Compound NHẠCI NH3 HCI HCN Conductivity 97.20 0.83 39.29 0.00 value
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4. When an ionic solid dissolves in water, water molecules attract the ions causing them to dissociate or come
apart. The resulting dissolved ions are electrically charged particles that allow the solution to conduct
electricity. The following chemical equations represent this phenomenon:
NaCl (s) = Na" (aq) + Cl¯ (aq)
Na2CO3 (s) = 2Na" (aq) + CO3 (aq)
Write a similar balanced chemical equation for each electrolyte in the data table.
2-
....
а.
b.
c.
d.
е.
8.50 x 11.00 in
Transcribed Image Text:Home Tools CHEM107_Lab Ex... Lab Experiment #... x ... / 2 150% 4. When an ionic solid dissolves in water, water molecules attract the ions causing them to dissociate or come apart. The resulting dissolved ions are electrically charged particles that allow the solution to conduct electricity. The following chemical equations represent this phenomenon: NaCl (s) = Na" (aq) + Cl¯ (aq) Na2CO3 (s) = 2Na" (aq) + CO3 (aq) Write a similar balanced chemical equation for each electrolyte in the data table. 2- .... а. b. c. d. е. 8.50 x 11.00 in
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