Results 71 to 80 of about 711 (259)
A simple analysis of thermodynamic properties for classical plasmas: I. theory
By eliminating the short range negative divergence of the Debye–Hückel pair distribution function, but retaining the exponential charge screening known to operate at large interparticle separation, the thermodynamic properties of one-component plasmas of
Nordholm, Sture, +5 more
core +1 more source
A compostable PGS soft surgical robot with interchangeable modules integrates transient Mo tactile and Si thermal sensors for dual feedback. The device preserves its function after clinical‐grade sterilization, demonstrates stable actuation and cardiac tissue grasping with real‐time in vivo pulsatile monitoring, and biodegrades post‐use with soil‐safe,
Minseong Chae +27 more
wiley +1 more source
A fractional Fokker-Planck model for anomalous diffusion
In this paper, we present a study of anomalous diffusion using a Fokker-Planck description with fractional velocity derivatives. The distribution functions are found using numerical means for varying degree of fractionality of the stable Lévy ...
Anderson, Johan +9 more
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InSb, a narrow‐bandgap semiconductor with high carrier mobility, is promising for thermoelectric energy conversion but suffers from high lattice thermal conductivity and strong bipolar conduction. Here, in situ interface engineering using Co2O3 nanoprecursors forms hierarchical CoSbx/In2O3/CoSb3 heterostructures that enhance phonon scattering and ...
Jiwu Xin +10 more
wiley +1 more source
This study demonstrates that memristors can replace conventional 2T–1C driving circuits with simplified 1T–1 m architectures by exploiting resistance switching. With ultra‐low switching voltages (< ±0.2 V) and multi‐level resistance states, the memristors precisely control the current injected into organic light‐emitting diodes (OLEDs).
Dong Hyun Kim +6 more
wiley +1 more source
The Gyrokinetic Description of Microturbulence in Magnetized Plasmas
Nonlinear gyrokinetics is the major formalism used for both the analytical and numerical descriptions of low-frequency microturbulence in magnetized plasmas.
John A. Krommes
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Cyclic Olefin Copolymers as Versatile Materials for Advanced Engineering Applications
Cyclic olefin copolymers (COCs) are presented as highly versatile materials combining tunable synthesis, excellent optical properties, and mechanical robustness. Their potential spans microfluidics, bioengineering, and advanced electronics, while emerging self‐healing and sustainable solutions highlight future opportunities.
Giulia Fredi +3 more
wiley +1 more source
Investigation of dynamic properties of non-ideal one component plasmas by the method of moments [PDF]
Investigation of dynamic properties of non-ideal one-component plasmas by the method of moments Dynamic characteristics of strongly coupled one-component plasmas are studied within the moment approach with local constraints by an algorithm similar to ...
Askaruly, Abdiadil
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An original method is presented for producing artificial spider silk fibers with magnetic and magnetomechanical responsiveness, which consists in coating them with a nanometer‐thick layer of FeCo alloy by sputtering deposition. The challenge of combining organic materials and inorganic magnetic nanostructures is addressed, thus taking a step forward ...
Filippo Lanaro +5 more
wiley +1 more source
Statistical theory of subcritically-excited strong turbulence in inhomogeneous plasmas
A statistical description is developed for self-sustained subcritical turbulence of interchange mode in inhomogeneous plasmas. Langevin equation for a dressed test mode, in which coherent and incoherent nonlinear interactions are kept as renormalized ...
Itoh, S.I. (Kyushu Univ., Fukuoka (Japan). Research Inst. for Applied Mechanics) +2 more
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