Results 11 to 20 of about 166,780,780 (65)

Realization of Fractance Device using Continued Fraction Expansion Method [PDF]

open access: yes, 2021
The realization of fractional-order circuits is an emerging area of research for people working in the areas of control systems, signal processing and other related fields. In this paper, an attempt is made to realize fractance devices.
Krishna, Battula Tirumala
core   +3 more sources

Fungal Mem-fractance

open access: yes, 2020
Raw data for analysis of the mem-fractance of grey oyster ...
Alexander Beasley (8723529)
core   +2 more sources

Physical Therapist Management of Patients With Suspected or Confirmed Osteoporosis: A Clinical Practice Guideline From the Academy of Geriatric Physical Therapy [PDF]

open access: yes, 2022
A clinical practice guideline on physical therapist management of patients with suspected or confirmed osteoporosis was developed by a volunteer guideline development group (GDG) that was appointed by the Academy of Geriatric Physical Therapy (APTA ...
Hartley, Gregory W.   +19 more
core   +1 more source

Tacit Dimensions of Pedagogy

open access: yes, 2012
Within  the field of pedagogy there is a controversy concerning the relationship between theory and praxis  Solutions currently on offer are based on different concepts concerning the question as to what is regarded as scientific theory.
Wulf, Christoph,   +3 more
core   +9 more sources

An Operational Matrix Based on Legendre Polynomials for Solving Fuzzy Fractional‐Order Differential Equations

open access: yesAbstract and Applied Analysis, Volume 2013, Issue 1, 2013., 2013
This paper deals with the numerical solutions of fuzzy fractional differential equations under Caputo‐type fuzzy fractional derivatives of order α ∈ (0,1). We derived the shifted Legendre operational matrix (LOM) of fuzzy fractional derivatives for the numerical solutions of fuzzy fractional differential equations (FFDEs).
Ali Ahmadian   +3 more
wiley   +1 more source

White Book on Physical and Rehabilitation Medicine (PRM) in Europe. Chapter 1. Definitions and concepts of PRM [PDF]

open access: yes, 2018
In the context of the White Book of Physical and Rehabilitation Medicine (PRM) in Europe, this paper deals with the definitions and concepts relevant for PRM.
Ceravolo Maria Gabriella   +1 more
core   +1 more source

Fractional Order Calculus: Basic Concepts and Engineering Applications

open access: yesMathematical Problems in Engineering, Volume 2010, Issue 1, 2010., 2010
The fractional order calculus (FOC) is as old as the integer one although up to recently its application was exclusively in mathematics. Many real systems are better described with FOC differential equations as it is a well‐suited tool to analyze problems of fractal dimension, with long‐term “memory” and chaotic behavior.
Ricardo Enrique Gutiérrez   +3 more
wiley   +1 more source

Recent applications of fractional calculus to science and engineering

open access: yesInternational Journal of Mathematics and Mathematical Sciences, Volume 2003, Issue 54, Page 3413-3442, 2003., 2003
This paper deals with recent applications of fractional calculus to dynamical systems in control theory, electrical circuits with fractance, generalized voltage divider, viscoelasticity, fractional‐order multipoles in electromagnetism, electrochemistry, tracer in fluid flows, and model of neurons in biology.
Lokenath Debnath
wiley   +1 more source

ФРАКТОР КАК ОБОБЩЕНИЕ КЛАССИЧЕСКИХ ЭЛЕМЕНТОВ ЭЛЕКТРИЧЕСКИХ ЦЕПЕЙ [PDF]

open access: yes, 2011
Рассмотрен сопоставительный анализ математических моделей классических двухполюсных элементов электрических цепей и фрактального двухполюсного элемента. Показано, что такой элемент является обобщением классических элементов.
Симак, Лилия Алексеевна   +2 more
core   +1 more source

Active and Passive Realization of Fractance Device of Order 1/2

open access: yes, 2008
Active and passive realization of Fractance device of order 1/2 is presented. The crucial point in the realization of fractance device is finding the rational approximation of its impedance function.
B. T. Krishna, K. V. V. S. Reddy
core   +1 more source

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