Trigonometry 12th Edition By Ron Larson
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- Pages
- 578
- File size
- 12.32 MB
- Format
- Digital PDF
- Course
- Mathematics
- Category
- eBook[PDF]
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About this ebook
Trigonometry, 12th Edition by Ron Larson covers foundational trigonometric principles, analytic applications, geometric extensions, and complex number theory across six core chapters and a prerequisite section. [1, 2]
The curriculum is structured to bridge foundational math with advanced technical calculus preparation through the following chapters: [1]
Chapter P: Prerequisites
- Real numbers and their properties
- Exponents, radicals, and algebraic expressions
- Solving fundamental linear and quadratic equations
- The Cartesian plane and basic graphing mechanics
Chapter 1: Trigonometry
- Angles, degree measurements, and radian measurements
- Unit circle mechanics and right-triangle trigonometry
- Evaluating the six fundamental trigonometric functions
- Graphing sine, cosine, tangent, and other reciprocal functions
- Inverse trigonometric functions and their behavioral bounds
- Practical real-world modeling and applications [1, 2, 3, 4]
Chapter 2: Analytic Trigonometry
- Utilizing basic algebraic trigonometric identities
- Verifying and proving complex trigonometric equations
- Implementing sum and difference formulas
- Applying multiple-angle, half-angle, and product-to-sum formulas
Chapter 3: Additional Topics in Trigonometry
- Solving oblique triangles via the Law of Sines
- Solving oblique triangles via the Law of Cosines
- Advanced triangle area formulas
- Vectors in a flat two-dimensional plane
- Dot products, vector components, and vector operations [1]
Chapter 4: Complex Numbers
- The imaginary unit i and complex number operations
- Complex numbers mapped on the complex plane
- Trigonometric and polar forms of complex numbers
- DeMoivre’s Theorem and calculating complex roots
Chapter 5: Exponential and Logarithmic Functions
- Graphing exponential functions and logarithmic functions
- Evaluating natural logarithms and algebraic properties of logs
- Solving intricate exponential and logarithmic equations
- Exponential growth, decay, and mathematical scaling models
Chapter 6: Topics in Analytic Geometry
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12.32 MB