A Method Inspired by One-Dimensional Discrete-Time Quantum Walks for Influential Node Identification. [PDF]
Liang W, Wang Y, Liu Q, Zhang W.
europepmc +1 more source
Advancing diabetes prediction with a progressive self-transfer learning framework for discrete time series data. [PDF]
Lim H, Kim G, Choi JH.
europepmc +1 more source
Liquid crystalline inverted lipid phases and reverse micelles are self‐assembled lipid nanostructures that enhance the solubility, stability, and delivery of diverse therapeutics. This review integrates their physicochemical principles, formulation strategies, drug loading mechanisms, and biomedical applications, highlighting their growing ...
Numan Eczacioglu +3 more
wiley +1 more source
Robust Stability and Robust Stabilization of Discrete-Time Markov Jump Linear Systems Under a Class of Stochastic Structured Nonlinear Uncertainties. [PDF]
Dragan V, Aberkane S.
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Block Copolymers: Emerging Building Blocks for Additive Manufacturing
This review addresses how block copolymer (BCP) physics and rheology have led to the widespread use of BCPs in advanced additive manufacturing techniques, with particular emphasis on the untapped potential of these nanostructured materials toward achieving multi‐scale architected materials with unique, programmable material properties.
Alice S. Fergerson +3 more
wiley +1 more source
Approximate Solutions of a General Stochastic Velocity-Jump Model Subject to Discrete-Time Noisy Observations. [PDF]
Ceccarelli A, Browning AP, Baker RE.
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Organic electrochemical transistors based on a Near‐Infrared (NIR)‐responsive polymer p(C4DPP‐T) and iodide electrolyte exhibit optically programmable negative differential transconductance. NIR illumination triggers an iodine‐mediated redox process, enabling a transition from binary to ternary conductance states within a single‐layer device.
Debdatta Panigrahi +7 more
wiley +1 more source
Design and analysis of combined discrete-time zeroing neural network for solving time-varying nonlinear equation with robot application. [PDF]
Ma Z, Huang S.
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Designing Asymmetric Memristive Behavior in Proton Mixed Conductors for Neuromorphic Applications
Protonic devices that couple ionic and electronic transport are demonstrated as bioinspired neuromorphic elements. The devices exhibit rubber‐like asymmetric memristive behavior with slow voltage‐driven conductance increase and rapid relaxation, enabling simplified read–write operation.
Nada H. A. Besisa +6 more
wiley +1 more source
Equivalence of Stock-Recruitment Functions and Parent-Progeny Relationships in Discrete-Time Multi-Stage Models. [PDF]
Schaarschmidt U, Frank ASJ, Subbey S.
europepmc +1 more source

