Practical time‐stepping schemes, by W. L. Wood, Oxford Applied Mathematics and Com‐puting Science Series, Clarendon Press, Oxford, 1990. Price: E17.50. ISBN: 8596774. No. pages: 373 pp [PDF]
I. M. Smith
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In this work, melt electrowriting is used to fabricate a 3D printed scaffold design that generates engineered cardiac tissues with in‐plane contraction, mimicking natural myocardium. It is shown that these tissues display advanced maturation and functionality.
Olalla Iglesias‐García+23 more
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Cognitive network spectrum access for emergency communications
A wireless cognitive network opportunistic spectrum accessing scheme which provided delay guarantee for emergency communications was proposed.Primary user (PU) and secondary users (SU) shared the spectrum resources according to the discrete time two ...
Zheng GUAN, Wen-hua QIAN, Mei-le YU
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Modeling of Burner-Stabilized Hydrogen/Air Flames Using Mathematically Reduced Reaction Schemes [PDF]
R. L G. M. EGGLES, L.P.H. de Goey
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From mathematical models to policy design: Predicting greywater reuse scheme effectiveness and water reclamation benefits based on individuals’ preferences [PDF]
Gloria Amaris+4 more
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Probabilistic Infinite Secret Sharing
The study of probabilistic secret sharing schemes using arbitrary probability spaces and possibly infinite number of participants lets us investigate abstract properties of such schemes.
Csirmaz, László
core
This work investigates modifying interfacial contacts in realizing giant‐performance semiconductor nanomembrane optoelectronics. Strategies, including surface reaction and buffer layer work‐function modulation, are explored to boost the Schottky barrier. An emerging material of YbOx is utilized for near‐ideal Ohmic contact.
Yibo Zhang+5 more
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The Finite Difference Scheme for 3d Mathematical Modeling of a Wood Drying Process [PDF]
Raimondas Čiegis+1 more
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Travelling Wave Solutions of Nonlinear Evolution Problem Arising in Mathematical Physics through (G′/G)-Expansion Scheme [PDF]
Siyuan Fan+3 more
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Electric Pulse Regulated MXene Based Nanozymes for Integrative Bioelectricity Immuno‐Cancer Therapy
MXenzyme‐mediated bioelectricity cancer therapy (MXenzyme‐BECT) enhances cancer cell death through irreversible depolarization, ion channel disruption, ROS generation, and immunogenic cell death. Computational simulations reveal the electrical mechanisms by which MXenzyme acts on single cells and support to predict treatment parameters. Next‐generation
Sanghee Lee+6 more
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