Media Summary: ... many different possibilities of research and the Lecturer: Justin Solomon Spring, 2017 Slides and other material: Hello, everybody and welcome to the supplemental

Shape Analysis Lecture 19 Optimal - Detailed Analysis & Overview

... many different possibilities of research and the Lecturer: Justin Solomon Spring, 2017 Slides and other material: Hello, everybody and welcome to the supplemental No it's Secret uh no so so uh yeah that's that's that's that's that's our next task in Slides and other materials can be found here: "Typo" at 1:17:57 --- should be T and not N (as in the equation in the corner, just copied wrong from previous line). So it's written: ...

Photo Gallery

Shape Analysis (Lecture 19): Optimal transport
Shape analysis, lecture 19: Clustering II, rigid registration
Shape Analysis (Lectures 14, extra content): A simple Laplacian on point clouds
Shape Analysis, spring 2023 (lecture 3): Smooth curves
Shape analysis, lecture 17: Optimal transport
Shape analysis (spring 2019), Lecture 4: Smooth and discrete curves
Shape Analysis (Lecture 16): Vector fields, Lie/covariant derivatives, frame fields
Shape analysis (spring 2019), Lecture 3: Variational derivatives, curves and arc length
Shape Analysis (Lecture 3): Differential geometry of smooth curves
Shape analysis (spring 2019), Lecture 1: Introduction
Shape Analysis (Lecture 6): Second fundamental form and surface curvature
Shape analysis (spring 2019), Lecture 2: Linear and variational problems
View Detailed Profile
Shape Analysis (Lecture 19): Optimal transport

Shape Analysis (Lecture 19): Optimal transport

... many different possibilities of research and the

Shape analysis, lecture 19: Clustering II, rigid registration

Shape analysis, lecture 19: Clustering II, rigid registration

Lecturer: Justin Solomon Spring, 2017 Slides and other material: http://groups.csail.mit.edu/gdpgroup/6838_spring_2017.html.

Shape Analysis (Lectures 14, extra content): A simple Laplacian on point clouds

Shape Analysis (Lectures 14, extra content): A simple Laplacian on point clouds

Hello, everybody and welcome to the supplemental

Shape Analysis, spring 2023 (lecture 3): Smooth curves

Shape Analysis, spring 2023 (lecture 3): Smooth curves

No it's Secret uh no so so uh yeah that's that's that's that's that's our next task in

Shape analysis, lecture 17: Optimal transport

Shape analysis, lecture 17: Optimal transport

Lecturer: Justin Solomon Spring, 2017 Slides and other material: http://groups.csail.mit.edu/gdpgroup/6838_spring_2017.html.

Shape analysis (spring 2019), Lecture 4: Smooth and discrete curves

Shape analysis (spring 2019), Lecture 4: Smooth and discrete curves

Slides and other materials can be found here: http://groups.csail.mit.edu/gdpgroup/6838_spring_2019.html.

Shape Analysis (Lecture 16): Vector fields, Lie/covariant derivatives, frame fields

Shape Analysis (Lecture 16): Vector fields, Lie/covariant derivatives, frame fields

Hello, everybody, and welcome to another

Shape analysis (spring 2019), Lecture 3: Variational derivatives, curves and arc length

Shape analysis (spring 2019), Lecture 3: Variational derivatives, curves and arc length

Slides and other materials can be found here: http://groups.csail.mit.edu/gdpgroup/6838_spring_2019.html.

Shape Analysis (Lecture 3): Differential geometry of smooth curves

Shape Analysis (Lecture 3): Differential geometry of smooth curves

"Typo" at 1:17:57 --- should be T and not N (as in the equation in the corner, just copied wrong from previous line). So it's written: ...

Shape analysis (spring 2019), Lecture 1: Introduction

Shape analysis (spring 2019), Lecture 1: Introduction

Slides and other materials can be found here: http://groups.csail.mit.edu/gdpgroup/6838_spring_2019.html.

Shape Analysis (Lecture 6): Second fundamental form and surface curvature

Shape Analysis (Lecture 6): Second fundamental form and surface curvature

So it makes

Shape analysis (spring 2019), Lecture 2: Linear and variational problems

Shape analysis (spring 2019), Lecture 2: Linear and variational problems

Slides and other materials can be found here: http://groups.csail.mit.edu/gdpgroup/6838_spring_2019.html.

Shape Analysis (Lecture 7): Approximating Gaussian/mean/principal curvatures on triangle meshes

Shape Analysis (Lecture 7): Approximating Gaussian/mean/principal curvatures on triangle meshes

Hello, everybody and welcome to the next