Graph connectivity | Graph invariants

Strength of a graph

In the branch of mathematics called graph theory, the strength of an undirected graph corresponds to the minimum ratio edges removed/components created in a decomposition of the graph in question. It is a method to compute partitions of the set of vertices and detect zones of high concentration of edges, and is analogous to graph toughness which is defined similarly for vertex removal. (Wikipedia).

Strength of a graph
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Largest Possible Number of Edges for Various Types of Graphs

The video explains how to determine the maximum number of possible edges for various types of graphs. mathispower4u.com

From playlist Graph Theory (Discrete Math)

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Bound on the Sum of Minimum Degrees of Graphs and their Complements | Graph Theory Proofs

We know the degree of a vertex in a simple graph with n vertices has an upper bound of n-1. The degree of a vertex is n-1 when it is adjacent to every vertex in the graph except for itself (it cannot be adjacent to itself). Then certainly the minimum degree of a graph is less than or equal

From playlist Graph Theory

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How to graph a quadratic in vertex form

👉 Learn the basics to understanding graphing quadratics. A quadratic equation is an equation whose highest exponent in the variable(s) is 2. To graph a quadratic equation, we make use of a table of values and the fact that the graph of a quadratic is a parabola which has an axis of symmetr

From playlist Graph a Quadratic in Standard Form | Essentials

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Learn how to graph the parent graph of a quadratic equation in standard form using a table

👉 Learn the basics to understanding graphing quadratics. A quadratic equation is an equation whose highest exponent in the variable(s) is 2. To graph a quadratic equation, we make use of a table of values and the fact that the graph of a quadratic is a parabola which has an axis of symmetr

From playlist Graph a Quadratic in Standard Form | Essentials

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How to analyze a quadratic function to graph

👉 Learn the basics to understanding graphing quadratics. A quadratic equation is an equation whose highest exponent in the variable(s) is 2. To graph a quadratic equation, we make use of a table of values and the fact that the graph of a quadratic is a parabola which has an axis of symmetr

From playlist Graph a Quadratic in Standard Form | Essentials

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Diameter of a Graph | Graph Theory

What is the diameter of a graph in graph theory? This is a simple term we will define with examples in today's video graph theory lesson! Remember that the distance between two connected vertices in a graph is the length of a shortest path between those vertices. Here's my lesson on dist

From playlist Graph Theory

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Diameter and Radius of Tree Graphs | Graph Theory

We discuss what family of tree graphs have maximum diameter, minimum diameter, maximum radius, and minimum radius. Recall the diameter of a graph is the maximum distance between any two vertices. The radius of a graph is the minimum eccentricity of any vertex. We'll find the star graphs ha

From playlist Graph Theory

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How to determine the domain and range of a quadratic using its vertex

👉 Learn the basics to understanding graphing quadratics. A quadratic equation is an equation whose highest exponent in the variable(s) is 2. To graph a quadratic equation, we make use of a table of values and the fact that the graph of a quadratic is a parabola which has an axis of symmetr

From playlist Graph a Quadratic in Standard Form | Essentials

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SPSS - Two-Way Repeated Measures ANOVA Example

Recorded: Spring 2015 Lecturer: Dr. Erin M. Buchanan Repeated Measures ANOVA (Two-Way) Demo - based on information from Tabachnick and Fidell (2012) and Field (2014). Lecture materials and assignments available at statisticsofdoom.com. https://statisticsofdoom.com/page/advanced-statisti

From playlist Learn and Use G*Power

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Intro to heat treatment of steel (hardening and tempering)

I try to bridge the gap between in-depth theoretical explanations of heat treatment, and rote tradition.

From playlist Chemistry and Materials

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Tensorial Forms in Infinite Dimensions - Andrew Snowden

Workshop on Additive Combinatorics and Algebraic Connections Topic: Tensorial Forms in Infinite Dimensions Speaker: Andrew Snowden Affiliation: University of Michigan Date: October 26, 2022 Let V be a complex vector space and consider symmetric d-linear forms on V, i.e., linear maps Symd

From playlist Mathematics

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JASP/Excel - Two-Way Repeated Measures ANOVA Example

Lecturer: Dr. Erin M. Buchanan Missouri State University Spring 2017 This video covers the following: Excel: data screening - accuracy, outliers using z scores, missing data, normality, linearity, homogeneity, and homoscedasticity JASP: running a mixed ANOVA, post hocs, effect size, Mauc

From playlist Learn and Use G*Power

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How do the solutions of a quadratic relate to the x intercepts of the graph

👉 Learn the basics to understanding graphing quadratics. A quadratic equation is an equation whose highest exponent in the variable(s) is 2. To graph a quadratic equation, we make use of a table of values and the fact that the graph of a quadratic is a parabola which has an axis of symmetr

From playlist Graph a Quadratic in Standard Form | Essentials

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Lecture 3 - Computer Science for Biologists

This is Lecture 3 of the CSE549 (Computational Biology) course taught by Professor Steven Skiena [http://www.cs.sunysb.edu/~skiena/] at Stony Brook University in 2010. The lecture slides are available at: http://www.algorithm.cs.sunysb.edu/computationalbiology/pdf/lecture3.pdf More infor

From playlist CSE549 - Computational Biology - 2010 SBU

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A novel way to help 'see' electric (or other) fields and voltage to deepen understanding

Electric fields and voltage and are at times hard to understand conceptually since you cant 'see' electric field lines. In this video I use the spacetime simulator (or the rubber sheet model) to help deepen an understanding of electric fields, voltage and the work done on charges in fields

From playlist Electricity and Magnetism

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tideman - CS50 Walkthroughs 2019

*** This is CS50, Harvard University's introduction to the intellectual enterprises of computer science and the art of programming. *** HOW TO SUBSCRIBE http://www.youtube.com/subscription_center?add_user=cs50tv HOW TO TAKE CS50 edX: https://cs50.edx.org/ Harvard Extension School: ht

From playlist CS50 Walkthroughs 2019

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Geo Visualization

In this talk, we will explore different geographic visualization functions in the Wolfram Language. We will look at how these functions can be used to visualize geo data. We will explore some of the options that make these functions powerful tools for producing compelling geo visualization

From playlist Wolfram Technology Conference 2021

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Ex 2: Match Graphs with Exponential and Logarithmic Functions - Base 10 and e

This video explains how to match exponential and logarithmic functions to graphs based upon th properties of the functions. Library: http://mathispower4u.com Search: http://mathispower4u.wordpress.com

From playlist Graphing Logarithmic Functions

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The Straightest Line EVER Measured?! | Quantum Hall Effect Explained

Can you find a line that's straighter than this one? Hey guys, I'm back with another video! This one's a long one, and in this video I discuss what I believe to be the straightest line that's ever been measured in a science experiment. I'm sure there are examples of even straighter lines,

From playlist Quantum Physics by Parth G

Related pages

Graph partition | Graph theory | Graph (discrete mathematics) | Mathematics | Partition of a set | Graph toughness