Experiment 1 Data Table 1 Data Table 2 Data Table 1: Antacid Neutralization Data Mass of 0.5 Crushed Antacid (g) Concentration 1.0 of HCI (M) Volume HCI 5.0 (mL) Concentration 1.0 of NaOH (M) Initial NaOH 6 Volume (mL) Final NaOH 4 Volume (mL) Total Volume -2 of NaOH Used (mL)

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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A) Calculate the initial amount (grams) of HCl available for neutralization by the antacid. B) Calculate the number of moles of NaOH required to reach the stoichiometric point (neutralize the excess HCl), after initial neutralization with the antacid. C) Calculate the amount (grams) of HCl neutralized by antacid. D)Calculate the gram per gram neutralization by antacid.
Experiment 1
Data Table 1
Data Table 2
Data Table 1: Antacid Neutralization Data
Mass of
0.5
Crushed
Antacid (g)
Concentration 1.0
of HCI (M)
Volume HCI
5.0
(mL)
Concentration 1.0
of NaOH (M)
Initial NaOH
Volume (mL)
Final NaOH
Volume (mL)
CO
6
4
Total Volume
-2
of NaOH
Used (mL)
Transcribed Image Text:Experiment 1 Data Table 1 Data Table 2 Data Table 1: Antacid Neutralization Data Mass of 0.5 Crushed Antacid (g) Concentration 1.0 of HCI (M) Volume HCI 5.0 (mL) Concentration 1.0 of NaOH (M) Initial NaOH Volume (mL) Final NaOH Volume (mL) CO 6 4 Total Volume -2 of NaOH Used (mL)
Experiment 1
Data Table 1
Data Table 2
Data Table 2: Experimental Results
HCI available
for
neutralization
(g):
Moles of
NaOH
required to
reach
stoichiometric
point (mol):
HCI
neutralized by
antacid (g):
HCI
neutralized
per gram of
antacid (g):
Transcribed Image Text:Experiment 1 Data Table 1 Data Table 2 Data Table 2: Experimental Results HCI available for neutralization (g): Moles of NaOH required to reach stoichiometric point (mol): HCI neutralized by antacid (g): HCI neutralized per gram of antacid (g):
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