3. Perform the following calculations and report the answer with the correct number of significant figures and units. A. (9.2030 g)(0.00230 g) + 0.1020 g² = 0 0211257 0.10203² 0.123292 234.020 g- 184.08 g 49.949 -6.8905g/mL 382.402 mL-326.322 mL 56. 080ML B. =

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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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significant figures and units.
3. Perform the following calculations and report the answer with the correct number of
A. (9.2030 g)(0.00230 g) + 0.1020 g² =
00²0211237 0.10205² 0.123292
B. 234.020 g- 184.08 g
382.402 mL-326.322 mL
(1 fl oz = 29.6 mL)
4. An aluminum beverage can contains 12.0 fluid ounces of liquid. Express this volume in liters.
12. uffaz X
560 080ML
49.949 = 0.8905g/mL
CHE 1011
29.6mL = 355.2 mL
Ift:0²
(1 in = 2.54 cm)
5. What is the volume, in cubic centimeters, of a brick that is 4.0 in x 2.7 in × 8.0 in?
4.0A x 2,54 cm = 10.16cm
liAcc
207 + x 2.54cm = 60858cm
هذا
8.0MAX 2.54cm
ITA
20032cm
So volume
20.32cm x 6.858cm x 200320
1415.84 cm³
6. The S.I. unit of energy is the joule, J (1 J = 1 kgom²/s²). Another energy unit, the erg, was
once in widespread use (1 erg = 1 gocm²/s²). Calculate the number of ergs in 1.0 J.
Page 2 of 2
Transcribed Image Text:significant figures and units. 3. Perform the following calculations and report the answer with the correct number of A. (9.2030 g)(0.00230 g) + 0.1020 g² = 00²0211237 0.10205² 0.123292 B. 234.020 g- 184.08 g 382.402 mL-326.322 mL (1 fl oz = 29.6 mL) 4. An aluminum beverage can contains 12.0 fluid ounces of liquid. Express this volume in liters. 12. uffaz X 560 080ML 49.949 = 0.8905g/mL CHE 1011 29.6mL = 355.2 mL Ift:0² (1 in = 2.54 cm) 5. What is the volume, in cubic centimeters, of a brick that is 4.0 in x 2.7 in × 8.0 in? 4.0A x 2,54 cm = 10.16cm liAcc 207 + x 2.54cm = 60858cm هذا 8.0MAX 2.54cm ITA 20032cm So volume 20.32cm x 6.858cm x 200320 1415.84 cm³ 6. The S.I. unit of energy is the joule, J (1 J = 1 kgom²/s²). Another energy unit, the erg, was once in widespread use (1 erg = 1 gocm²/s²). Calculate the number of ergs in 1.0 J. Page 2 of 2
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