2. Some possible sources of experimental error are listed below. Tell whether the error would make your experimental % by mass silver too high, too low, or would have no effect on your results. (Hint: make yourself a complete setup of calculations.) 1. Weighing the empty dish while it is still hot. 2. 3. 4. 5. 6. 7. Splattering of the silver chloride precipitate during drying. Using a balance whose zero point is actually 1.5 mg too high Splattering of the solution during the dissolving of the Ag in acid. Silver chloride precipitate not completely dry. Incomplete precipitation of the silver chloride. Contaminants in the silver sample.

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2. Some possible sources of experimental error are listed below. Tell whether the error would
make your experimental % by mass silver too high, too low, or would have no effect on
your results. (Hint: make yourself a complete setup of calculations.)
1.
Weighing the empty dish while it is still hot.
2.
3.
4.
5.
6.
7.
Splattering of the silver chloride precipitate during drying.
Using a balance whose zero point is actually 1.5 mg too high
Splattering of t solution during the dissolving of the Ag in acid.
Silver chloride precipitate not completely dry.
Incomplete precipitation of the silver chloride.
Contaminants in the silver sample.
Transcribed Image Text:2. Some possible sources of experimental error are listed below. Tell whether the error would make your experimental % by mass silver too high, too low, or would have no effect on your results. (Hint: make yourself a complete setup of calculations.) 1. Weighing the empty dish while it is still hot. 2. 3. 4. 5. 6. 7. Splattering of the silver chloride precipitate during drying. Using a balance whose zero point is actually 1.5 mg too high Splattering of t solution during the dissolving of the Ag in acid. Silver chloride precipitate not completely dry. Incomplete precipitation of the silver chloride. Contaminants in the silver sample.
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