Literatura académica sobre el tema "Nonmagnetic material"

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Artículos de revistas sobre el tema "Nonmagnetic material"

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Shafrir, Shai N., John C. Lambropoulos, and Stephen D. Jacobs. "Toward Magnetorheological Finishing of Magnetic Materials." Journal of Manufacturing Science and Engineering 129, no. 5 (2007): 961–64. http://dx.doi.org/10.1115/1.2738540.

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Magnetorheological finishing (MRF) is a precision optical finishing process traditionally limited to processing only nonmagnetic materials, e.g., optical glasses, ceramics, polymers, and metals. Here we demonstrate that MRF can be used for material removal from magnetic material surfaces. Our approach is to place an MRF spot on machined surfaces of magnetic WC-Co materials. The resulting surface roughness is comparable to that produced on nonmagnetic materials. This spotting technique may be used to evaluate the depth of subsurface damage, or deformed layer, induced by earlier manufacturing st
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Abotar, E., J. B. Dankwah, P. Koshy, and J. R. Dankwah. "Production of Metallic Iron from the Pudo Magnetite Ore using End-of-Life Rubber Tyre as Reductant: The Role of an Underlying Ankerite Ore as a Fluxing Agent on Productivity." Ghana Mining Journal 20, no. 2 (2020): 36–42. http://dx.doi.org/10.4314/gm.v20i2.5.

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This research work investigated the nature of a nonmagnetic ore from Pudo in the Upper West Region of Ghana and its fluxing effect on the extent of reduction of the Pudo titaniferous magnetite ore using pulverised samples of charred carbonaceous materials generated from end-of-life vehicle tyres (ELT) as reductants. Reduction studies were conducted on composite pellets of the Pudo titaniferous magnetite iron ore containing fixed amounts of charred ELT and varying amounts (0%, 10%, 15%, 20%, 30%, 40% and 50%) of the nonmagnetic fluxing material in a domestic microwave oven and the extent of red
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Onofrei, Daniel, and Andrew E. Thaler. "Anomalous Localized Resonance Phenomena in the Nonmagnetic, Finite-Frequency Regime." Advances in Mathematical Physics 2016 (2016): 1–28. http://dx.doi.org/10.1155/2016/4156072.

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The phenomenon of anomalous localized resonance (ALR) is observed at the interface between materials with positive and negative material parameters and is characterized by the fact that when a given source is placed near the interface, the electric and magnetic fields start to have very fast and large oscillations around the interface as the absorption in the materials becomes very small while they remain smooth and regular away from the interface. In this paper, we discuss the phenomenon of anomalous localized resonance (ALR) in the context of an infinite slab of homogeneous, nonmagnetic mate
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Pamungkas, Mauludi Ariesto, Vinsa Kharisma Rofiqo Sari, Irwansyah, Setiawan Ade Putra, Abdurrouf, and Muhammad Nurhuda. "Tuning Electronic Structure and Magnetic Properties of Flat Stanene by Hydrogenation and Al/P Doping: A First Principle DFT Study." Coatings 11, no. 1 (2021): 47. http://dx.doi.org/10.3390/coatings11010047.

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A Stanene, is a two-dimensional material composed of tin atoms arranged in a single hexagonal layer, in a manner similar to graphene. First principle studies based on density functional theory were performed to investigate the effects of hydrogenation and Al/P doping on electronic structure and magnetic properties of stanene. Hydrogenation opens the bandgap of stanene and changes it from nonmagnetic to the ferromagnetic material through H 1s states and Sn 5p states hybridization. Al/P atom at hollow site prevent electrons of adjacent Sn atoms to connect so that inducing unpaired electrons. The
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SANTAMARIA, JACOBO, JAVIER GARCIA-BARRIOCANAL, ZOUHAIR SEFRIOUI, and CARLOS LEON. "INDUCED MAGNETISM AT OXIDE INTERFACES." International Journal of Modern Physics B 27, no. 19 (2013): 1330013. http://dx.doi.org/10.1142/s0217979213300132.

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Interfaces between correlated oxides are attracting great interest. Electron correlations give rise to novel forms of couplings between electronic ground states at both sides of the interface. The bonding discontinuity at the interface between magnetic and nonmagnetic oxides is at the origin of a form of low dimensional magnetism in the otherwise nonmagnetic material. Its origin is the splitting of its bands due to the hybridization with the exchange split bands of the magnetic material. This induced magnetism could find interesting functionalities in devices with operation controlled by the i
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McDonald, Ian. "Magnetic phenomena from the confines of a nonmagnetic material." MRS Bulletin 41, no. 07 (2016): 508–9. http://dx.doi.org/10.1557/mrs.2016.145.

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Priyadharshini, S., M. Sundareswari, and E. Viswanathan. "First principles band structure investigation of cubic spinel CuMn2Te4Compound for thermoelectric applications." Journal of Physics: Conference Series 2070, no. 1 (2021): 012037. http://dx.doi.org/10.1088/1742-6596/2070/1/012037.

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Abstract Spinel CuMn2Te4 material is investigated for its nonmagnetic and ferromagnetic phases by first principles calculation using the FP-LAPW method. Exchange and correlation are treated with GGA. T otal energy calculations reveal that CuMn2T e4 compound tend to stabilise at ferromagnetic phase. Non vanishing bands at the Fermi Energy level illustrates the metallic nature of CuMn2Te4at both of its nonmagnetic and ferromagnetic phases. Transport properties are studied using the BoltzTraP code at 325K. Thermo power of -26.22μv/k is estimated for nonmagnetic CuMn2Te4. At ferromagnetic phase, t
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Pazukha, I. M., D. O. Shuliarenko, S. R. Dolgov-Gordiichuk, and L. V. Odnodvorets. "Magnetoresistive Properties of Multilayer Film Systems Based on Permalloy and Silver." Physics and Chemistry of Solid State 22, no. 1 (2021): 175–79. http://dx.doi.org/10.15330/pcss.22.1.175-179.

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In this paper, the experimental investigation focuses on the magnetoresistive properties of nanosized film systems. Their structure changes from layered to granular due to transition from bilayer FM/NM (FM is a ferromagnetic material, NM is a nonmagnetic material) to [FM/NM]n multilayer film at a constant total thickness of samples. As ferromagnetic and nonmagnetic materials were chosen permalloy Ni80Fe20 (Py) and Ag, respectively. It was demonstrated that the shape of the field dependences of magnetoresistance depends on the number of bilayer Py/Ag. For as-deposited [Py/Ag]n/S at n = 8, 16, t
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Kang, Gui Wen, and Fei Hu Zhang. "Research on Material Removal Mechanism of Magnetorheological Finishing." Materials Science Forum 532-533 (December 2006): 133–36. http://dx.doi.org/10.4028/www.scientific.net/msf.532-533.133.

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Magnetorheological finishing (MRF) is a novel precision optical machining technology. MRF utilizes magnetic particles, nonmagnetic polishing abrasives in carrier fluid, and a magnetic field to finish optical materials. Owing to its flexible finishing process, MRF eliminates subsurface damage, corrects surface figure errors and the finishing process can be easily controlled by computer. To achieve deterministic finishing, it’s necessary to know the mechanism of material removal. Different magnetorheological fluids are used to finish optical glass on the same machining condition. The material re
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Borovikov, V. S., and V. I. Peresada. "Specific features of the low temperature properties of doped magnetic materials with an anisotropic exchange interaction." Soviet Journal of Low Temperature Physics 11, no. 10 (1985): 607–9. https://doi.org/10.1063/10.0031380.

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It is shown theoretically that the anisotropy of the exchange interaction in a ferromagnetic material can be effectively determined from the characteristic phenomena caused by the presence in the system of a small concentration of nonmagnetic substitutional impurities.
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Tesis sobre el tema "Nonmagnetic material"

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Пазуха, Ірина Михайлівна, Ирина Михайловна Пазуха, Iryna Mykhailivna Pazukha, and K. S. Levchenko. "Magnetoresistive Properties of Py/Ag/Co Pseudo Spin-valves." Thesis, Sumy State University, 2018. http://essuir.sumdu.edu.ua/handle/123456789/67956.

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The pseudo spin-valve (PSV) structures based on soft magnetic permalloy Ni80Fe20 (Py) and hard magnetic Co, separated by a layer of nonmagnetic material (Ag) belong to the pseudo spin-valve structures, in which independent magnetization reversal of magnetic layers is gained by diverse coercive forces of magnetic layers.
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Fan, Yichun. "Optical Characterization of Magnetism in Magnetic/Nonmagnetic Heterostructures." W&M ScholarWorks, 2013. https://scholarworks.wm.edu/etd/1539623362.

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This thesis focuses on the study of the static and dynamic magnetic interactions in ferromagnetic/nonmagnetic heterostructures using interface-specific and time-resolved optical techniques. The goal of this thesis is to elucidate the interface exchange coupling, magnetic anisotropy, and coherent spin dynamics in these advanced material systems, crucial to the realization of high performance spintronic devices.;First, a pronounced exchange bias (EB) phenomenon is observed in Fe/MgO (001) by magnetic second harmonic generation. The bulk magnetization does not, in marked contrast to typical syste
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HUANG, ZHI-XIAN, and 黃智賢. "Effects of the nonmagnetic dopants on the spin fluctuation of two-dimentional magnetic materials and high Tc superconductors." Thesis, 1991. http://ndltd.ncl.edu.tw/handle/95797894087070453931.

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Libros sobre el tema "Nonmagnetic material"

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Suzuki, Y. Spin torque in uniform magnetization. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198787075.003.0020.

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This chapter discusses the effects of a spin current injected into a uniformly magnetized ferromagnetic cell. The junction consists of two ferromagnetic layers separated by a nonmagnetic metal interlayer or insulating barrier layer. With a nonmagnetic metal interlayer, the junction is called a giant magnetoresistive nanopillar, and with an insulating barrier layer a magnetic-tunnel junction. When charge current is passed through this device, the electrons are first spin polarized by the fixed layer and spin-polarized current is then injected into the free layer through the nonmagnetic interlay
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Takahashi, S., and S. Maekawa. Spin Hall Effect. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198787075.003.0012.

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This chapter discusses the spin Hall effect that occurs during spin injection from a ferromagnet to a nonmagnetic conductor in nanostructured devices. This provides a new opportunity for investigating AHE in nonmagnetic conductors. In ferromagnetic materials, the electrical current is carried by up-spin and downspin electrons, with the flow of up-spin electrons being slightly deflected in a transverse direction while that of down-spin electrons being deflected in the opposite direction; this results in an electron flow in the direction perpendicular to both the applied electric field and the m
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Capítulos de libros sobre el tema "Nonmagnetic material"

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Hibma, Tjipke, and Maurits W. Haverkort. "Antiferromagnetic Oxide Films on Nonmagnetic Substrates." In Magnetic Properties of Antiferromagnetic Oxide Materials. Wiley-VCH Verlag GmbH & Co. KGaA, 2010. http://dx.doi.org/10.1002/9783527630370.ch4.

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Radovanović, J., V. Milanović, Z. Ikonić, and D. Indjin. "Design Considerations for Nonmagnetic Semiconductor-Based Spin Filters." In Materials Science Forum. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-441-3.41.

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Nawrocki, W., and M. Wawrzyniak. "Conductance Quantization in Magnetic and Nonmagnetic Metallic Nanostructures." In Nanostructured Magnetic Materials and their Applications. Springer Netherlands, 2004. http://dx.doi.org/10.1007/978-1-4020-2200-5_30.

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Shulga, S. V., and S. L. Drechsler. "Bcs Analysis of The Physical Properties of Nonmagnetic Borocarbides." In High-Tc Superconductors and Related Materials. Springer Netherlands, 2001. http://dx.doi.org/10.1007/978-94-010-0758-0_8.

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Nohara, K., U. Nishiike, K. Kobayashi, and T. Akita. "Strength, Ductility/Toughness and Fine-Blanking of Nonmagnetic High Mn Steel and Its Accelerator Superconducting Magnets Application." In Advances in Cryogenic Engineering Materials. Springer US, 1998. http://dx.doi.org/10.1007/978-1-4757-9056-6_17.

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Ratnam Dhayalan, Kuamr Anish, and Bhagi Purna Chandra Rao. "Time Domain Finite Element Modelling of Pulsed Meander Coil Electromagnetic Acoustic Transducer." In Studies in Applied Electromagnetics and Mechanics. IOS Press, 2018. https://doi.org/10.3233/978-1-61499-836-5-246.

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This work describes development of a pulsed meander coil Electromagnetic Acoustic Transducer (EMAT) that simultaneously generates Rayleigh, longitudinal waves and shear vertical waves. A two stage finite element model of Meander coil EMAT transmitter is developed to study the propagation of these sound waves in nonmagnetic material. First, a 2D electromagnetic model is developed for calculating the Lorentz force density, which is the driving force for sound wave generation within the material. Second, the calculated force at each point in the material is utilized as the input for generating so
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Tsai, C., J. Chang, C. Wu, and T. Hsu. "Using cold-pressing technique to recycle nonmagnetic material from de-sulferization slag as coarse aggregate." In Advances in Energy Equipment Science and Engineering. CRC Press, 2015. http://dx.doi.org/10.1201/b19126-536.

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"Nanomagnetism in Otherwise Nonmagnetic Materials." In Handbook of Nanophysics. CRC Press, 2010. http://dx.doi.org/10.1201/9781420075410-35.

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Gratz, E. "Magnetoresistance: Magnetic and Nonmagnetic Intermetallics." In Encyclopedia of Materials: Science and Technology. Elsevier, 2001. http://dx.doi.org/10.1016/b0-08-043152-6/00884-6.

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Baruah, Jejiron Maheswari, and Jyoti Narayan. "Dilute Magnetic Semiconducting Quantum Dots: Smart Materials for Spintronics." In Nonmagnetic and Magnetic Quantum Dots. InTech, 2018. http://dx.doi.org/10.5772/intechopen.73286.

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Actas de conferencias sobre el tema "Nonmagnetic material"

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Hao, Bingjie, Kok-Meng Lee, and Kun Bai. "Eddy-Current Dynamic Model for Simultaneous Geometrical and Material Parameter Measurements of Magnetic Materials." In ASME 2018 Dynamic Systems and Control Conference. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/dscc2018-9211.

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This paper presents a distributed current source (DCS) method for modeling the dynamic responses of eddy current density (ECD) induced in electrical conductors and its corresponding magnetic flux density (MFD); both nonmagnetic and weakly magnetized conductors are considered. Unlike conventional numerical methods such as finite element analysis (FEA), the DCS method, which accounts for the eddy-current and magnetization effects by means of equivalent volume and surface current-sources, derives closed-form solutions to the ECD and MFD fields in state-space representation. The model has been exp
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Devyatov, Eduard. "JOSEPHSON CURRENT TRANSFER BY WEYL TOPOLOGICAL SEMIMETALS SURFACE STATES." In International Forum “Microelectronics – 2020”. Joung Scientists Scholarship “Microelectronics – 2020”. XIII International conference «Silicon – 2020». XII young scientists scholarship for silicon nanostructures and devices physics, material science, process and analysis. LLC MAKS Press, 2020. http://dx.doi.org/10.29003/m1583.silicon-2020/145-149.

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Experiments on the study of topological surface states of magnetic and nonmagnetic Weyl semimetals charge transfer are presented. For surface states contribution the stationary and nonstationary Josephson effect realized at superconductortopological semi-metal-superconductor hybrid structures is applied.
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Kumamaru, Hiroshige, Fuma Sakata, Akira Ohue, Kazuhiro Itoh, and Yuji Shimogonya. "Studies on Micropump/Minipump Using Rotational Motion of Magnetic Material Balls." In ASME 2013 11th International Conference on Nanochannels, Microchannels, and Minichannels. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/icnmm2013-73160.

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Experiments and numerical analyses have been performed on micropumps/minipumps using rotational motion of magnetic material balls. In the pumps, magnetic material balls and nonmagnetic materials balls rotate in a closed channel loop, and a part of the balls acts as a piston and the remaining part of the balls serves as a valve. Experiments have been carried out on two pumps, i.e. a smaller pump and a larger pump with channel cross-sections of ∼1 mm and ∼2 mm inner diameter, respectively. The maximum flow rate achieved and the maximum pump head obtained are ∼500 μl/min and ∼70 Pa, respectively,
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Kim, Su-Hun, Jin-Hyun Choi, and Se-Hee Lee. "Shape and dynamic behavior of nonmagnetic material immersed in magnetic nanofluid due to magnetic surface and body force density." In 2016 IEEE Conference on Electromagnetic Field Computation (CEFC). IEEE, 2016. http://dx.doi.org/10.1109/cefc.2016.7816391.

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Lu, Lu, Jinlin Song, Kun Zhou, and Qiang Cheng. "Near-Field Radiative Heat Transfer Between Mie Resonance-Based Metamaterials Made of Coated Nonmagnetic Particles." In ASME 2019 6th International Conference on Micro/Nanoscale Heat and Mass Transfer. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/mnhmt2019-3998.

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Abstract Near-field radiative heat transfer between Mie resonance-based metamaterials composed of SiC/d-Si (silicon carbide and doped silicon) core/shell particles immersed in aligned nematic liquid crystals are numerically investigated. The metamaterials composed of core/shell particles exhibit superior performances of enhanced heat transfer and obvious modulation effect when compared to that without shell. The underlying mechanism can be explained that the excitation of Fröhlich mode and epsilon-near-zero (ENZ) resonances both contribute to the total heat flux. Modulation of near-field radia
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Khan, Z. "Analyzing the electromagnetic forming process of SS304 sheet using AA6061-T6 driver through a fully coupled numerical model and experimentally validation." In Advanced Topics in Mechanics of Materials, Structures and Construction. Materials Research Forum LLC, 2023. http://dx.doi.org/10.21741/9781644902592-81.

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Abstract. Driver-based electromagnetic forming (EMF) is a process that uses electromagnetic forces to form metal components into a desired shape. The process involves the use of a conducting driver metal, which is driven by an electromagnetic coil that generates a high-frequency, high-amplitude current. The driver sheet pushes the nonmagnetic sheet metal workpiece against a die causing it to be deformed into the desired shapes. EMF is particularly useful for forming complex shapes and for creating precise forms with minimal material loss. Applications of EMF include the formation of aerospace
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Liang, Haipeng, Hongguang Li, Dimitri Kessler, Tristan Barrett, and Zion Tsz Ho Tse. "A Pneumatic-Driven Robot for MR-Guided Prostate Therapy." In The Hamlyn Symposium on Medical Robotics. The Hamlyn Centre Imperial College London, 2024. http://dx.doi.org/10.31256/hsmr2024.30.

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With the capability of providing images of suspicious lesions inside soft tissues including the prostate, brain, and breast, Magnetic Resonance Imaging (MRI) has been widely used for cancer diagnosis and treatment. Traditional methods of cancer treatment require physicians to site a needle into the target area for biopsy, ablation, or brachytherapy. However, this has potential disadvantages including low accuracy, long procedure and postoperative recovery time, and low detection rates. In contrast, the utilisation of robots that can work in the Magnetic Resonance (MR) environment enhances MR-g
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Shaw, S., P. Sibanda, and P. V. S. N. Murthy. "Mathematical Model on Magnetic Drug Targeting in a Permeable Microvessel." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-66606.

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A mathematical model is presented for predicting magnetic targeting of multifunctional carrier particles that deliver therapeutic agents to malignant tissue in vivo. These particles consist of a nonmagnetic core material that contains embedded magnetic nanoparticles and therapeutic agents such as photodynamic sensitizers. For in vivo therapy, the particles are injected into the micro vascular system upstream from malignant tissue, and captured at the tumor using an applied magnetic field. In this paper, a mathematical model is developed for predicting noninvasive magnetic targeting of therapeu
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Lan, Yinhui, Cuizhu He, Yuangang Duan, and Feihua Liu. "Analysis of Reasons for Non-Conformance of the Movable Latch Lock Plunger Releasing Current of Control Rod Drive Mechanism and Improvement Measures." In 2017 25th International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/icone25-67878.

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As one of the most important equipment for reactivity control, Control Rod Drive Mechanism (CRDM), which is widely used in pressurized water reactor (PWR) nuclear power plant, has a series of important security functions. As an important component of the claw part in CRDM, the nonmagnetic shim materials have big influence on the movable latch lock plunger releasing current of CRDM. When cutting off the coil power, the nonmagnetic shim materials can block the magnetic circuit between the pole and latch lock plunger effectively and reduce the remanence suction force between magnetic pole and lat
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Nakamura, Hiroki, and Masahiko Machida. "Effects of Magnetic Ordering on the Ground-State Energy of Plutonium Dioxide: A Study Using Adiabatic Connection Fluctuation-Dissipation Theory." In 2024 31st International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 2024. http://dx.doi.org/10.1115/icone31-134660.

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Abstract Efficiency and safety improvements in nuclear fuel development demand a comprehensive understanding of the thermophysical properties of plutonium dioxide. Because of the experimental difficulty of directly measuring these properties at high temperatures, they have been supplemented by numerical simulations, such as density functional theory (DFT). While DFT struggles to accurately replicate the nonmagnetic insulating ground state of plutonium dioxide, a method called DFT+U can reproduce nonmagnetic insulating state. However, the obtained state remains more unstable than magnetic state
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