Exam 1: Review of Basic Concepts
Exam 1: Review of Basic Concepts639 Questions
Exam 2: Equations and Inequalities496 Questions
Exam 3: Graphs and Functions522 Questions
Exam 4: Polynomial and Rational Functions508 Questions
Exam 5: Inverse, Exponential, and Logarithmic Functions472 Questions
Exam 6: Trigonometric Functions297 Questions
Exam 7: The Circular Functions and Their Graphs286 Questions
Exam 8: Trigonometric Identities and Equations492 Questions
Exam 9: Applications of Trigonometry447 Questions
Exam 10: Systems and Matrices507 Questions
Exam 11: Analytic Geometry217 Questions
Exam 12: Further Topics in Algebra348 Questions
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Simplify the expression. Assume all variables represent nonzero real numbers.
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Perform the indicated operations. Write the answer using only positive exponents. Assume all variables represent
positive real numbers.
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Factor out the greatest common factor. Simplify the factors, if possible.
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Simplify the expression. Assume all variables represent positive real numbers.
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Simplify the expression. Assume all variables represent positive real numbers.
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Simplify the expression. Assume all variables represent nonzero real numbers.
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Evaluate the discriminant for the equation. Then use it to predict the number of distinct solutions, and whether they are
rational, irrational, or nonreal complex.
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Decide whether the expression has been simplified correctly.
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Find the values of a, b, and c for which the quadratic equation ax2 + bx + c = 0 has the given numbers as solutions. Then
use those values to write a quadratic equation.
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Determine which property of absolute value justifies the statement.
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