How can we determine Avogadro’s number based on trials 1-3 ? The volume is 0.0125

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Chapter1: Chemical Foundations
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How can we determine Avogadro’s number based on trials 1-3 ? The volume is 0.0125
number o
Next, we can
everage vo
moles Sh
Assuming that
number of SA mere is no
alculate A
(7.86
12
aber t
mus
t 2..
5 ma
surface area of water = nr² = n(14.5 cm²
area of SA molecule = 0.21 m
adro's number?
tar formula of stearic acid is C18H3602. Ba
three trials they needed 23, 25, and
group determined the average
₁&=1mL
Experiment 7
Volume of I drop of hexare ~,0125 ml/
The drop=1mL
accurate results
Gradated Cylysber gives most
Watch Glass = 14.8cm
nameter of 14.5
/L. The area of one
Trial 120 drops
Trio l 2. 17 olrops
Triol 3, 18 drops
Transcribed Image Text:number o Next, we can everage vo moles Sh Assuming that number of SA mere is no alculate A (7.86 12 aber t mus t 2.. 5 ma surface area of water = nr² = n(14.5 cm² area of SA molecule = 0.21 m adro's number? tar formula of stearic acid is C18H3602. Ba three trials they needed 23, 25, and group determined the average ₁&=1mL Experiment 7 Volume of I drop of hexare ~,0125 ml/ The drop=1mL accurate results Gradated Cylysber gives most Watch Glass = 14.8cm nameter of 14.5 /L. The area of one Trial 120 drops Trio l 2. 17 olrops Triol 3, 18 drops
Sample Calculation
A group of students performed this experiment using a watch glass with a diameter of 14.5
cm. The stearic acid/hexane solution had a concentration of 0.10 g/L. The area of one
stearic acid (SA) molecule is known to be 0.21 nm². The group determined the average
volume of a drop of hexane to be 0.0135 ml. For their three trials they needed 23, 25, and
26 drops to form the monolayer. The molecular formula of stearic acid is C18H3602. Based
on these measurements, what is Avogadro's number?
surface area of water =
cm
area of SA molecule = 0.21 nm² (107mm)
mr2 = π
14.5 cm
2
2
=
NA
2
= 165.1 cm²
= 2.1 x 10-15 cm²
Assuming that there is no empty space between the molecules, we can calculate the
number of SA molecules that fit in an area of 165.1 cm².
number of SA molecules in monolayer
165.1 cm²
2.1 x 10-15 cm²
Next, we can calculate the volume of SA solution added and the moles of SA added.
49
(25+26+28
3
average volume of solution added =
= 3.555 x 10-4L
1 mole
moles SA = 3.555 × 10-4L (0.10%) (2)
284.5
= 7.862 x 10¹6 molecules
0.0135 mL = 0.3555 mL
= 1.250 x 10-7 mol
Then, we can calculate Avogadro's number, NA - the number of molecules per mole.
7.862 x 1016 molecules
1.250 x 10-7 mol
= 6.3 x 1023 molecules/mol
Determine Avogadro's number based on your three trials. To do so construct a s
in Excel as described in part 2. Answer the focus question and discuss sourc
Which one do you consider as major source of error? In your discussion of er
the result, that is, does it make your experimental
data you collected, all table-
Transcribed Image Text:Sample Calculation A group of students performed this experiment using a watch glass with a diameter of 14.5 cm. The stearic acid/hexane solution had a concentration of 0.10 g/L. The area of one stearic acid (SA) molecule is known to be 0.21 nm². The group determined the average volume of a drop of hexane to be 0.0135 ml. For their three trials they needed 23, 25, and 26 drops to form the monolayer. The molecular formula of stearic acid is C18H3602. Based on these measurements, what is Avogadro's number? surface area of water = cm area of SA molecule = 0.21 nm² (107mm) mr2 = π 14.5 cm 2 2 = NA 2 = 165.1 cm² = 2.1 x 10-15 cm² Assuming that there is no empty space between the molecules, we can calculate the number of SA molecules that fit in an area of 165.1 cm². number of SA molecules in monolayer 165.1 cm² 2.1 x 10-15 cm² Next, we can calculate the volume of SA solution added and the moles of SA added. 49 (25+26+28 3 average volume of solution added = = 3.555 x 10-4L 1 mole moles SA = 3.555 × 10-4L (0.10%) (2) 284.5 = 7.862 x 10¹6 molecules 0.0135 mL = 0.3555 mL = 1.250 x 10-7 mol Then, we can calculate Avogadro's number, NA - the number of molecules per mole. 7.862 x 1016 molecules 1.250 x 10-7 mol = 6.3 x 1023 molecules/mol Determine Avogadro's number based on your three trials. To do so construct a s in Excel as described in part 2. Answer the focus question and discuss sourc Which one do you consider as major source of error? In your discussion of er the result, that is, does it make your experimental data you collected, all table-
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