Line integrals - Study guides, Study notes & Summaries
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WTW258: LU 3.3 : THE FUNDAMENTAL THEOREM FOR LINE INTEGRALS Lecture notes
- Class notes • 4 pages • 2022
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Lecture notes were made while watching the recorded lectures assigned to watch. These notes include theory (theorems) and worked out examples from the lecturer. 
These specific notes cover The Fundamental Theorem for Line integrals.
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MATHEMATICS 1B FINAL EXAM PRACTICE PROBLEMS
- Exam (elaborations) • 21 pages • 2022
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MATHEMATICS 1B 
FINAL EXAM PRACTICE PROBLEMS 
 
DISCLAIMER: The practice problems below are not intended to be a complete review of the material covered this quarter. They are intended only to give you practice in applying SOME of the concepts you learned. For a complete review (strongly recommended), you should review old exams/quizzes/HW and try new problems from each section covered in class. You are also encouraged to review lecture handouts (e.g., Survival Guide material). Finally, some pr...
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WTW258: Theme 3: CALCULUS OF VECTOR FUNCTIONS
- Summary • 13 pages • 2022
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A summary was made about theme 3 before attending weekly tutorial sessions. These are cripnotes that cover the fundamental theory to better understand the application of each lecture unit and how they follow each other in the theme.
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Calc III (Multivariable Calculus) Notes
- Class notes • 8 pages • 2023
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- R240,98
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Notes on topics covered in Calculus III, such as gradients, tangent planes, vector fields, and line integrals.
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Exam (elaborations) TEST BANK FOR Vector Calculus, Linear Algebra and Differential Forms 2nd Edition By Hubbard J.H (Solution manual)
- Exam (elaborations) • 59 pages • 2021
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Exam (elaborations) TEST BANK FOR Vector Calculus, Linear Algebra and Differential Forms 2nd Edition By Hubbard J.H (Solution manual) 
CONTENTS 
How to Use This Book 
IV 
Acknowledgments IV CHAPTER 1 The Geometry of Euclidean Space 1 CHAPTER 2 Differentiation 21 CHAPTER 3 Higher-Order Derivatives; Maxima and Minima 43 CHAPTER 4 Vector-Valued Functions 63 CHAPTER 5 Double and Triple Integrals 77 CHAPTER 6 The Change of Variables Formula and Applications of Integration 97 CHAPTER 7 Integrals over...
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M3 (Unit-3) Vector integration
- Class notes • 56 pages • 2024
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- R260,78
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The unit covers following points 
- Introduction to vectors and their significance in mathematics and physics 
- Explanation of linear integral, involving the integration of vector fields along curves or paths 
- Discussion on surface integrals, focusing on the integration of vector fields over surfaces 
- Overview of volume integrals, used to calculate properties within three-dimensional regions 
- Introduction to Stokes' theorem, relating line integrals of vector fields to surface integrals ...
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Mastering Calculus 3: A Concise Summary of Multivariable Differential and Vector Calculus
- Summary • 10 pages • 2024
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- R170,79
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This document serves as a comprehensive summary of Calculus 3, encompassing an overview of differential calculus in several variables and vector calculus. It explores functions with multiple variables, including discussions on limits, continuity, differentiability, and partial differentiation, along with practical applications such as optimization and Lagrange multipliers. The summary also covers key aspects of vector calculus, including vector functions, line integrals, surface integrals, Green...
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Vector Integral Theorems
- Class notes • 8 pages • 2024
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Vector integral theorems are fundamental results in vector calculus that relate integrals over regions in space to integrals over the boundaries of those regions. These theorems are essential in physics, engineering, and mathematics for solving problems involving vector fields and their properties. 
These theorems provide powerful tools for converting integrals between different forms (volume, surface, line integrals) and are extensively used in solving problems related to fluid dynamics, electr...
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Mathematical method 1 part 3
- Class notes • 21 pages • 2023
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- R53,81
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This course is about, Differentiation and integration and their applications. Partial derivatives chain rule, extrema, Lagrangian multipliers. Increments, differentials and linear approximations. Evaluation of line, integrals. Multiple integrals. Mean value theorem. Taylor series. Real-valued functions of two or three variables.
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Mathematical method 1 part 1
- Class notes • 18 pages • 2023
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Differentiation, integration, and their applications are the topics of this course. Diminished derivatives Lagrangian multipliers, the chain rule, and extrema. differentials, linear approximations, and increments. Analyzing a line and integrals. several integrals. Theorem of mean values. Taylor saga. real-valued two- or three-variable functions.
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