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The first track, the academic track, includes four strands which are: Accountancy, Business, and Management (ABM) Humanities and Social Sciences (HUMSS) Science, Technology, Engineering, and Mathematics (STEM) General Academic Strand (GAS) The second track, the technical-vocational-livelihood, specializes in vocational learning.
In differential geometry, a ribbon (or strip) is the combination of a smooth space curve and its corresponding normal vector.More formally, a ribbon denoted by (,) includes a curve given by a three-dimensional vector (), depending continuously on the curve arc-length (), and a unit vector () perpendicular to () at each point. [1]
The STEM strand is under the Academic Track, which also includes other strands like ABM, HUMSS, and GAS. [59] [60] The purpose of the STEM strand is to educate students in the field of science, technology, engineering, and mathematics, in an interdisciplinary and applied approach, and to give students advanced knowledge and application in the ...
For arbitrary stencil points and any derivative of order < up to one less than the number of stencil points, the finite difference coefficients can be obtained by solving the linear equations [6] ( s 1 0 ⋯ s N 0 ⋮ ⋱ ⋮ s 1 N − 1 ⋯ s N N − 1 ) ( a 1 ⋮ a N ) = d !
The classical Pade scheme for the first derivative at a cell with index (′) reads; ′ + ′ + + ′ = +. Where is the spacing between points with index , & +.The equation yields a fourth-order accurate solution for ′ when supplemented with suitable boundary conditions (typically periodic).
An illustration of the five-point stencil in one and two dimensions (top, and bottom, respectively). In numerical analysis, given a square grid in one or two dimensions, the five-point stencil of a point in the grid is a stencil made up of the point itself together with its four "neighbors".
With the implementation of the K to 12 program in 2013, the school has since established the Senior High School department which exclusively offers the Academic Track with the following strands: Science, Technology, Engineering & Mathematics (STEM), Accountancy, Business & Management (ABM), and Humanities & Social Sciences (HUMSS).
The finite difference coefficients for a given stencil are fixed by the choice of node points. The coefficients may be calculated by taking the derivative of the Lagrange polynomial interpolating between the node points, [3] by computing the Taylor expansion around each node point and solving a linear system, [4] or by enforcing that the stencil is exact for monomials up to the degree of the ...