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NIME Proceedings Template for LaTeX
NIME Proceedings Template for LaTeX
This paper provides a sample of a LATEX document for the NIME conference series. It conforms, somewhat loosely, to the formatting guidelines for ACM SIG Proceedings. It is an alternate style which produces a tighter-looking paper and was designed in response to concerns expressed, by authors, over page-budgets. It complements the document Author’s (Alternate) Guide to Preparing ACM SIG Proceedings Using LATEX2ε and BibTEX. This source file has been written with the intention of being compiled under LATEX2ε and BibTeX.
john harding (uploader)
My GEO2010 P2 template
My GEO2010 P2 template
TU Delft MSc Geomatics template for the "P2 document".
Hugo Ledoux
On the quantum differentiation of smooth real-valued functions
On the quantum differentiation of smooth real-valued functions
Calculating the value of Ck ∈ {1, ∞} class of smoothness real-valued function's derivative in point of R+ in radius of convergence of its Taylor polynomial (or series), applying an analog of Newton's binomial theorem and q-difference operator. (P,q)-power difference introduced in section 5. Additionally, by means of Newton's interpolation formula, the discrete analog of Taylor series, interpolation using q-difference and p,q-power difference is shown.
Kolosov Petro
Forced Van Der Pol's Equation
Forced Van Der Pol's Equation
This work is going to analyze the Forced Van Der Pol's Equation which is used to analyze the electric circuit. In 1927, Balthasar Van Der Pol observed the stable oscillation and heard some irregular noise in vacuum tube circuit. He then proposed the Forced Van Der Pol's Equation to analyze the circuit and suggested the concept of limit cycle and Chaos to explain his observation. In this work, We would like to analyze behavior of the model by observing the phase space, time series, bifurcation diagram and power spectrum. Those points in the figures are calculated by Runge-Kutta Method with the aid of MATLAB. For a better understanding, the RLC circuit, which is a electric circuit consisting the a resistor, an inductor and a capacitor, will be used as an example for explaining the properties. Apart from electric circuit, the Forced Van Der Pol's Equation can be applied to dynamic systems in different aspect, such as the artificial heart, economic market and so on. Therefore, we suggest this work to all students since the Forced Van Der Pol's Equation can be applied to many majors, like Mathematics, Physics, Economics, Sociology, Biology, Engineering and so on.
Wallace, Homer
CS 155 HW 9
CS 155 HW 9
CS 155 HW 9
Gabe
El Laberinto en la Metodologia de la Diferencia Temporal
El Laberinto en la Metodologia de la Diferencia Temporal
La solucion a un problema dado consiste en encontrar un camino desde un nodo representando el estado inicial, hasta el estado final deseado.
grupos5j
UU Delrapport Kandidatarbete
UU Delrapport Kandidatarbete
ES2017 delrapportsmall
Johan Skrealid
Cairo University, Faculty of Engineering Thesis Template
Cairo University, Faculty of Engineering Thesis Template
Copyright(C) 2013 by Mohsen Mahroos, PhD Assistant Professor Electronics and Electrical Communications Engineering Department Faculty of Engineering Cairo University Giza, EGYPT 12613 Cairo University, Faculty of Engineering Thesis Template
Mohsen Mahroos, PhD