Exam 1: Introduction: Matter and Measurement
Exam 1: Introduction: Matter and Measurement118 Questions
Exam 2: Atoms, Molecules, and Ions201 Questions
Exam 3: Stoichiometry: Calculations With Chemical Formulas and Equations134 Questions
Exam 4: Aqueous Reactions and Solution Stoichiometry147 Questions
Exam 6: Electronic Structure of Atoms161 Questions
Exam 7: Periodic Properties of the Elements149 Questions
Exam 8: Basic Concepts of Chemical Bonding116 Questions
Exam 10: Gases146 Questions
Exam 11: Intermolecular Forces, Liquids, and Solids103 Questions
Exam 12: Modern Materials47 Questions
Exam 13: Properties of Solutions121 Questions
Exam 14: Chemical Kinetics110 Questions
Exam 15: Chemical Equilibrium58 Questions
Exam 16: Acid-Base Equilibria97 Questions
Exam 17: Additional Aspects of Equilibria88 Questions
Exam 18: Chemistry of the Environment105 Questions
Exam 19: Chemical Thermodynamics101 Questions
Exam 20: Electrochemistry90 Questions
Exam 21: Nuclear Chemistry128 Questions
Exam 22: Chemistry of the Nonmetals176 Questions
Exam 23: Metals and Metallurgy112 Questions
Exam 24: Chemistry of Coordination Compounds124 Questions
Exam 25: The Chemistry of Life: Organic and Biological Chemistry115 Questions
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How many liters of air are in a room that measures 10.0 ft × 11.0 ft and has an 8.00 ft ceiling? 1 in. = 2.54 cm (exactly); 1 L = 103 cm3
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The width, length, and height of a large, custom- made shipping crate are 1.22 m, 3.22 m, and 0.83 m, respectively. The volume of the box using the correct number of significant figures is m3.
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One edge of a cube is measured and found to be 13 cm. The volume of the cube in m3 is
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You have to calculate the volume of a gas sample with mass of 1.000 × 103 g and density of 1.027 g/L , but you have forgotten the formula. Which way of reasoning would help you in finding the correct mass?
(Multiple Choice)
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Which calculation clearly shows a conversion between temperatures in degrees Celsius, t(°C), and temperature in Kelvins, T(K)?
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If an object, beginning at rest, is moving at a speed of 700 m/s after 2.75 min, its rate of acceleration (in m/s2) is . (Assume that the rate of acceleration is constant.)
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