Exam 2: Introduction to Real Numbers and Algebraic Expressions
Exam 1: Introduction167 Questions
Exam 2: Introduction to Real Numbers and Algebraic Expressions375 Questions
Exam 3: Solving Equations and Inequalities277 Questions
Exam 4: Graphs of Linear Equations125 Questions
Exam 5: Polynomials: Operations395 Questions
Exam 6: Polynomials: Factoring233 Questions
Exam 7: Rational Expressions and Equations226 Questions
Exam 8: Graphs, Functions, and Applications174 Questions
Exam 9: Systems of Equations117 Questions
Exam 10: More on Inequalities210 Questions
Exam 11: Radical Expressions, Equations, and Functions319 Questions
Exam 12: Quadratic Equations and Functions250 Questions
Exam 13: Exponential Functions and Logarithmic Functions262 Questions
Exam 14: Calculating Means and Medians of Data Sets124 Questions
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Solve the problem.
-Monday's closing value of your company's stock was up
Tuesday's was up
, Wednesday's was down
but Thursday's closing was up again by
. Finally, the stock closed the week down
What was the net change for the week?





(Multiple Choice)
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Add. Do not use a number line except as a check.
--2.4 + (-7.3)
(Multiple Choice)
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Solve the problem.
-After one round in a card game, your score was -13 points. After the second round, your score was 36 points. How many points did you gain in the second game?
(Multiple Choice)
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Write the word or phrase that best completes each statement or answers the question.
-Choose the expression that is equivalent to the following: 

(Multiple Choice)
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Solve the problem.
-The attendance at 3 games of a major sporting event fluctuated above and below the average according to the following table. What was the net change from the average attendance after these three games?
Game Gain/Loss in Attendance
#1 -3500
#2 5911
#3 4899
(Multiple Choice)
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Solve the problem.
-A bike road race starts at an elevation of 560 feet and passes through 5 stages where the elevation changes by 134 feet, 11 feet, 300 feet, -193 feet, and -211 feet. At what elevation does the race end?
(Multiple Choice)
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Write an equivalent expression. Use a commutative law.
-wx
(Multiple Choice)
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Translate to an algebraic expression.
-Alex had y dollars before spending $35.50 for a book. How much did he have after the purchase?
(Multiple Choice)
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