
Explore constructing vectors from coordinates and determining their magnitudes and unit vectors in MATLAB and GeoGebra. Learn to normalize directions and apply these concepts to practical vector problems.
Discover how to compute the magnitude of a vector from its components. Define the unit vector by dividing the vector by its magnitude and understand the vector's direction.
Learn to add and subtract vectors by combining their x and y components, perform scalar multiplication, and determine the resulting vector length within electromagnetic tutorials using MATLAB and GeoGebra.
Explore vector addition and subtraction using MATLAB and GeoGebra, illustrating component-wise operations and scalar multiplication, with examples of combining vectors A and B and analyzing directions.
Compute the distance between two points by forming the vector difference q minus b and taking its magnitude using the x and y components.
Compute the vector projection of a onto b using dot products, and decompose a into tangent component along b and a component perpendicular to b, with MATLAB and GeoGebra.
Explore cross products in MATLAB and GeoGebra by computing the cross product of vectors A and B and using its magnitude to find the area of the parallelogram.
Compute the scalar triple product a · (b × c) to obtain the volume of the parallelepiped formed by vectors a, b, and c, and take its absolute value.
Addition and Subtraction of Vectors, Magnitude and Unit Vector
Compute the distance between two points using coordinates, derive the distance vector from t to s in the same direction as the reference position vector, and determine its magnitude.
Explore how to compute the angle between vectors using dot products, magnitudes, and cosine relations, with a 90-degree example.
Transform a point from cartesian coordinates to cylindrical coordinates by projecting onto the xy plane to obtain its length and the angle from the x-axis, with z unchanged.
Electromagnetic tutorial to learn how to use mathematical skills for solving Electromagnetic problems from Coulomb's Law to Maxwell's equations ,
this is the first course out of 9 Parts, ( all from sadiku book: elements of electromagnetic)
CH 1: Vector Algebra
CH 2: Coordinate Systems and Transformations
CH 3: Vector Calculus
CH 4: Electro Static Fields
CH 5: Electric Fields in Material Space
CH 6: Electro Static Boundary-Value Problems
CH 7: Magneto Static Fields
CH 8: Magnetic Forces Materials and Devices
CH 9: Maxwell’s Equations