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Lecture
Sets, Functions and Relations: Set Operations
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Related lectures (24)
Sets: Operations and Relations
Covers set operations and their relations to propositional logic, including cardinality.
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Covers the basics of sets and operations in mathematics, from set properties to advanced operations.
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Covers sets, propositional language, reading, writing, containment, and cardinality.
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Introduces sets and functions, covering union, intersection, complement, functions terminology, and set operations analogies.
Set Identities: Analogues and Proofs
Explores set identities as analogues of logical equivalences in propositional logic.
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Covers the basics of discrete mathematics, including logic, structures, and algorithms.
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Covers Python sets operations, including creation, modification, and comparison, as well as set operations like union and intersection.
Discrete Mathematics: Logic, Structures, Algorithms
Covers the basics of discrete mathematics, focusing on logic, structures, and algorithms for computer systems.
Sets, Functions and Relations: Set Identities
Covers set identities and different approaches to prove them, including set builder notation and membership tables.
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Explores recursively defined sets, natural numbers, strings, functions, string concatenation, and well-formed formulae.
Linear Algebra: Sets and Operations
Introduces fundamental concepts of linear algebra, focusing on sets and operations.
Course Overview: Teaser on Course Contents
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Relations in Computer Science
Explores the properties of relations in computer science, including equivalence relations and the partition of a set.
Linear Algebra: Bijections and Cardinality
Explores bijections in linear algebra and the concept of cardinality between sets.
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Delves into the concept of proof in mathematics, emphasizing the importance of evidence and logical reasoning.
Discrete Mathematics: Logic & Structures
Covers propositional logic, truth tables, and problem-solving strategies in discrete mathematics.
Intersection: Set Operations
Introduces set intersection, its properties, and its relation to arithmetic operations.
Mathematical Induction: Basics and Applications
Introduces mathematical induction principles and applications, including inequalities, divisibility, subsets, and strong induction.
Linear Algebra: Operations and Sets
Covers operations on sets and Venn diagrams for set operations.
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Introduces cardinality and mapping in linear algebra, illustrating concepts with examples and visual aids.
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