Table of contents
- 0. Review of Algebra4h 16m
- 1. Equations & Inequalities3h 18m
- 2. Graphs of Equations43m
- 3. Functions2h 17m
- 4. Polynomial Functions1h 44m
- 5. Rational Functions1h 23m
- 6. Exponential & Logarithmic Functions2h 28m
- 7. Systems of Equations & Matrices4h 6m
- 8. Conic Sections2h 23m
- 9. Sequences, Series, & Induction1h 19m
- 10. Combinatorics & Probability1h 45m
1. Equations & Inequalities
Linear Inequalities
2:31 minutes
Problem 18
Textbook Question
Textbook QuestionSolve each polynomial inequality in Exercises 1–42 and graph the solution set on a real number line. Express each solution set in interval notation. 4x^2+1≥4x
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Polynomial Inequalities
Polynomial inequalities involve expressions that compare a polynomial to a value using inequality symbols (e.g., ≥, ≤, >, <). To solve these inequalities, one typically finds the roots of the corresponding polynomial equation and tests intervals between these roots to determine where the inequality holds true.
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Interval Notation
Interval notation is a mathematical notation used to represent a range of values on the real number line. It uses brackets [ ] to include endpoints and parentheses ( ) to exclude them. For example, the interval [a, b) includes 'a' but not 'b', indicating all numbers from 'a' to 'b', including 'a' and excluding 'b'.
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Graphing Solution Sets
Graphing solution sets on a real number line visually represents the solutions to an inequality. Each solution is marked with a solid dot for included endpoints and an open dot for excluded endpoints. This graphical representation helps in understanding the range of values that satisfy the inequality, making it easier to interpret the results.
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