Results 11 to 20 of about 6,133,725 (300)

Integral inequalities via fractional quantum calculus

open access: yesJournal of Inequalities and Applications, 2016
In this paper we prove several fractional quantum integral inequalities for the new q-shifting operator Φ q a ( m ) = q m + ( 1 − q ) a ${_{a}}\Phi_{q}(m) = qm + (1-q)a$ introduced in Tariboon et al. (Adv. Differ. Equ.
Weerawat Sudsutad   +2 more
doaj   +1 more source

‘Prediction of the Transient Response Sensitivity of High Order Linear Systems Using Low Order Models’

open access: yesMeasurement + Control, 1970
It is shown that low order models can be used to predict adequately the transient response sensitivity of high order linear systems, thus leading to a great reduction in time and complexity during analogue or digital computation, as well as facilitating ...
D. R. Towill MSc, CEng   +1 more
doaj   +1 more source

Positive solutions for Hadamard differential systems with fractional integral conditions on an unbounded domain

open access: yesOpen Mathematics, 2017
In this paper, we investigate the existence of positive solutions for Hadamard type fractional differential system with coupled nonlocal fractional integral boundary conditions on an infinite domain. Our analysis relies on Guo-Krasnoselskii’s and Leggett-
Jessada Tariboon   +3 more
doaj   +1 more source

Testing an optimality-based model of rooting zone water storage capacity in temperate forests [PDF]

open access: yesHydrology and Earth System Sciences, 2018
Rooting zone water storage capacity Sr is a crucial parameter for modeling hydrology, ecosystem gas exchange and vegetation dynamics. Despite its importance, this parameter is still poorly constrained and subject to high uncertainty.
M. J. R. Speich   +5 more
doaj   +1 more source

System of fractional differential equations with Erdélyi-Kober fractional integral conditions

open access: yesOpen Mathematics, 2015
In this paper we study existence and uniqueness of solutions for a system consisting from fractional differential equations of Riemann-Liouville type subject to nonlocal Erdélyi-Kober fractional integral conditions.
Thongsalee Natthaphong   +3 more
doaj   +1 more source

Data path analysis for dynamic circuit specialisation [PDF]

open access: yes, 2014
Dynamic Circuit Specialisation (DCS) is a method that exploits the reconfigurability of modern FPGAs to allow the specialisation of FPGA circuits at run-time. Currently, it is only explored as part of Register-transfer level design.
Davidson, Tom, Stroobandt, Dirk
core   +2 more sources

Fractional Integral Inequalities via Hadamard’s Fractional Integral

open access: yesAbstract and Applied Analysis, 2014
We establish new fractional integral inequalities, via Hadamard’s fractional integral. Several new integral inequalities are obtained, including a Grüss type Hadamard fractional integral inequality, by using Young and weighted AM-GM inequalities.
Weerawat Sudsutad   +2 more
doaj   +1 more source

Back analysis of dynamic parameters of high earth-rock dam materials under weak earthquakes

open access: yesYantu gongcheng xuebao, 2020
In the case of weak earthquakes, a back analysis model considering interaction and radiation damping effects is proposed for dynamic parameters of earth-rock dams.
WANG Mao-hua 1, 2, CHI Shi-chun 1, 2, XIANG Biao 3, ZHOU Xiong-xiong 1, 2
doaj   +1 more source

Boundary Value Problems for Fractional Differential Equations with Fractional Multiterm Integral Conditions

open access: yesJournal of Applied Mathematics, 2014
We discuss the existence and uniqueness of solutions for boundary value problems involving multiterm fractional integral boundary conditions. Our study relies on standard fixed point theorems. Illustrative examples are also presented.
Jessada Tariboon   +2 more
doaj   +1 more source

Henry-Gronwall Integral Inequalities with “Maxima” and Their Applications to Fractional Differential Equations

open access: yesAbstract and Applied Analysis, 2014
Some new weakly singular Henry-Gronwall type integral inequalities with “maxima” are established in this paper. Applications to Caputo fractional differential equations with “maxima” are also presented.
Phollakrit Thiramanus   +2 more
doaj   +1 more source

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