Surfaces

Gaussian surface

A Gaussian surface is a closed surface in three-dimensional space through which the flux of a vector field is calculated; usually the gravitational field, electric field, or magnetic field. It is an arbitrary closed surface S = ∂V (the boundary of a 3-dimensional region V) used in conjunction with Gauss's law for the corresponding field (Gauss's law, Gauss's law for magnetism, or Gauss's law for gravity) by performing a surface integral, in order to calculate the total amount of the source quantity enclosed; e.g., amount of gravitational mass as the source of the gravitational field or amount of electric charge as the source of the electrostatic field, or vice versa: calculate the fields for the source distribution. For concreteness, the electric field is considered in this article, as this is the most frequent type of field the surface concept is used for. Gaussian surfaces are usually carefully chosen to exploit symmetries of a situation to simplify the calculation of the surface integral. If the Gaussian surface is chosen such that for every point on the surface the component of the electric field along the normal vector is constant, then the calculation will not require difficult integration as the constants which arise can be taken out of the integral. It is defined as the closed surface in three dimensional space by which the flux of vector field be calculated. (Wikipedia).

Gaussian surface
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Physics 37.1 Gauss's Law Understood (8 of 29) Placing the Gaussian Surface

Visit http://ilectureonline.com for more math and science lectures! In this video I am going to exhaustively explain one more condition to use Gauss' Law of where exactly to place the Gaussian surface. Next video in this series can be seen at: https://youtu.be/of7hsoAdtNk

From playlist PHYSICS 37.1 GAUSS'S LAW EXPLAINED

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Visit http://ilectureonline.com for more math and science lectures! In this video I will take a closer look at Gauss' Law.

From playlist PHYSICS - ELECTRICITY AND MAGNETISM 3

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Joe Neeman: Gaussian isoperimetry and related topics II

The Gaussian isoperimetric inequality gives a sharp lower bound on the Gaussian surface area of any set in terms of its Gaussian measure. Its dimension-independent nature makes it a powerful tool for proving concentration inequalities in high dimensions. We will explore several consequence

From playlist Winter School on the Interplay between High-Dimensional Geometry and Probability

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(PP 6.3) Gaussian coordinates does not imply (multivariate) Gaussian

An example illustrating the fact that a vector of Gaussian random variables is not necessarily (multivariate) Gaussian.

From playlist Probability Theory

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(ML 19.1) Gaussian processes - definition and first examples

Definition of a Gaussian process. Elementary examples of Gaussian processes.

From playlist Machine Learning

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We introduce the approach of C. F. Gauss to differential geometry, which relies on a parametric description of a surface, and the Gauss - Rodrigues map from an oriented surface S to the unit sphere S^2, which describes how a unit normal moves along the surface. The first fundamental form

From playlist Differential Geometry

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PUSHING A GAUSSIAN TO THE LIMIT

Integrating a gaussian is everyones favorite party trick. But it can be used to describe something else. Link to gaussian integral: https://www.youtube.com/watch?v=mcar5MDMd_A Link to my Skype Tutoring site: dotsontutoring.simplybook.me or email dotsontutoring@gmail.com if you have ques

From playlist Math/Derivation Videos

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Statement of the theorem on existence of Gaussian processes, and an explanation of what it is saying.

From playlist Machine Learning

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Electric Flux and Gauss' Law - Review for AP Physics C: Electricity and Magnetism

AP Physics C: Electricity and Magnetism review of Electric Flux and Gauss’ Law including: Electric flux for a constant electric field, an example of the flux through a closed rectangular box, the electric flux from a point charge, a basic introduction to Gauss’ law, an example of Gauss’ la

From playlist AP Physics C: Electricity & Magnetism Review

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From playlist All of AP Physics C: Electricity & Magnetism!

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Physics 37.1 Gauss's Law Understood (7 of 29) Three Key Conditions

Visit http://ilectureonline.com for more math and science lectures! In this video I will explain the 3 key conditions to draw a Gaussian surface around a charge (in this case, a point and line charge). 1) The charge must be at the center of the Gaussian surface. 2) The electric field must

From playlist PHYSICS 37.1 GAUSS'S LAW EXPLAINED

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Physics 37.1 Gauss's Law Understood (18 of 29) Spherical Insulator

Visit http://ilectureonline.com for more math and science lectures! In this video I will find the electric fields inside and outside E(inside)=? E(outside)=? a spherical INSULATOR where the positive charges resides evenly within the volume of the sphere. Next video in this series can be

From playlist PHYSICS 37.1 GAUSS'S LAW EXPLAINED

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Conductors in Electrostatic Equilibrium - Review for AP Physics C: Electricity and Magnetism

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From playlist AP Physics C: Electricity & Magnetism Review

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From playlist All of AP Physics C: Electricity & Magnetism!

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Visit http://ilectureonline.com for more math and science lectures! In this lecture we'll cover the electric field once again with the addition of Gauss's Law.

From playlist PHYSICS - ELECTRICITY AND MAGNETISM 3

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Electric field Due to an Insulating Sphere

In this video, we explore the electric field due to a charged insulating sphere with a known and constant volume charge density. We show that you can use Gauss' law to find the electric field, and we work out what exactly the electric field is both inside and outside the sphere. To suppor

From playlist Introductory Electromagnetism

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From playlist 1998 AP Physics C Exam Solutions - Mechanics and Electricity & Magnetism

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Physics 37 Gauss's Law (12 of 16) Cubic Gaussian Surface

Visit http://ilectureonline.com for more math and science lectures! In this video I will find the electric field using the cubic Gaussian surface.

From playlist PHYSICS - ELECTRICITY AND MAGNETISM 3

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From playlist Introductory Electromagnetism

Related pages

Gauss's law for gravity | Perpendicular | Surface area | Symmetry | Differential of a function | Surface integral | Parallel (geometry) | Circular symmetry | Vector calculus | Electric charge | Line (geometry) | Divergence theorem | Gauss's law | Flux | Vector area | Gauss's law for magnetism | Field line | Sphere | Charge density | Spherical shell | Area | Plane (geometry) | Vector field | Disk (mathematics)