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1

Xiao, Penghao, Daniel Sheppard, Jutta Rogal, and Graeme Henkelman. "Solid-state dimer method for calculating solid-solid phase transitions." Journal of Chemical Physics 140, no. 17 (2014): 174104. http://dx.doi.org/10.1063/1.4873437.

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2

Affat, Sajda S., and Saad Shahad Mohammed. "Photocatalytic Degradation of Polyethylene Plastics Using MgAl2O4 Nanoparticles Prepared by Solid State Method." Chemistry & Chemical Technology 17, no. 3 (2023): 503–9. http://dx.doi.org/10.23939/chcht17.03.503.

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Анотація:
In this study, MgAl2O4 nanoparticles with different calcination times were synthesized for photocatalytic applications. Different analyses techniques such as XRD, SEM, EDX, UV-visible, and FTIR were performed to investigate the structural, chemical, optical, and mor-phological properties of the synthesized nanoparticles. XRD analysis revealed the formation MgAl2O4 spinel structure. UV-Visible measurements indicate that MgAl2O4-2 nanoparticles had a narrower energy gap compared to MgAl2O4-1 and MgAl2O4-3. Results of SEM analysis revealed that the synthesized MgAl2O4 nanoparticles consist of sma
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3

Liu, Junnan, Henrik Lyder Andersen, Othman K. Al Bahri, et al. "Electrochemically activated solid synthesis: an alternative solid-state synthetic method." Dalton Transactions 47, no. 41 (2018): 14604–11. http://dx.doi.org/10.1039/c8dt02946f.

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4

McDonald, J. C., F. N. Eichner, K. A. Stahl, and S. D. Miller. "Optical Readout Method for Solid State Dosemeters." Radiation Protection Dosimetry 17, no. 1-4 (1986): 329–31. http://dx.doi.org/10.1093/oxfordjournals.rpd.a079834.

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5

McDonald, J. C., F. N. Eichner, K. A. Stahl, and S. D. Miller. "Optical Readout Method for Solid State Dosemeters." Radiation Protection Dosimetry 17, no. 1-4 (1986): 329–31. http://dx.doi.org/10.1093/rpd/17.1-4.329.

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6

Shmelev, V. M., A. D. Margolin, N. Ya Vasilik, V. G. Krupkin, V. T. Volov, and D. B. Volov. "Nonelectrical method of pumping solid-state lasers." Technical Physics 43, no. 9 (1998): 1069–71. http://dx.doi.org/10.1134/1.1259133.

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7

Enikolopian, N. S., N. G. Danielian, and K. G. Kazarian. "Method of Coating Application by Solid State Reactions." Materials Science Forum 88-90 (January 1992): 163–66. http://dx.doi.org/10.4028/www.scientific.net/msf.88-90.163.

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8

Pan, Yi, and Lei Qiu. "Automated Method for Solid State Nuclear Track Measurements." Journal of Physics: Conference Series 1952, no. 3 (2021): 032038. http://dx.doi.org/10.1088/1742-6596/1952/3/032038.

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9

Su, Tingting, Heng Jiang, Hong Gong, and Shaoyong Duan. "Preparation of Pyrochlore K2Ta2O6 by Solid-State Method." Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 45, no. 10 (2015): 1602–6. http://dx.doi.org/10.1080/15533174.2015.1031045.

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10

Sheppard, Daniel, Penghao Xiao, William Chemelewski, Duane D. Johnson, and Graeme Henkelman. "A generalized solid-state nudged elastic band method." Journal of Chemical Physics 136, no. 7 (2012): 074103. http://dx.doi.org/10.1063/1.3684549.

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11

Rahayu, I., S. Hidayat, A. R. Noviyanti, D. Rakhmawaty, and E. Ernawati. "Synthesisofc-lifepo4 composite by solid state reaction method." Journal of Physics: Conference Series 812 (February 2017): 012094. http://dx.doi.org/10.1088/1742-6596/812/1/012094.

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12

Lee, Yun Sung, Yang Kook Sun, Koichi Kobayakawa, and Yuichi Sato. "Preparation of Nano-Crystalline LiFe0.97Co0.03O1.95Cl0.05by Solid-State Method." Chemistry Letters 31, no. 6 (2002): 642–43. http://dx.doi.org/10.1246/cl.2002.642.

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13

Dryden, J. R., D. M. Shinozaki, A. S. Deakin, and A. Klauzner. "Solid state extrusion as a mechanical test method." Materials Science and Engineering: A 188, no. 1-2 (1994): 81–90. http://dx.doi.org/10.1016/0921-5093(94)90358-1.

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14

Chukudi Sylvester, Ogwezi. "Methods of Solid Waste Management Practices in Selected Towns in Delta State, Nigeria." Himalayan Journal of Education and Literature 03, no. 02 (2022): 1–7. https://doi.org/10.47310/hjel.2022.v03i02.010.

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Анотація:
Waste management is a global challenge affecting both developed and developing countries, with its effects felt more in developing countries like Nigeria. There are several methods of waste management across the states in Nigeria, particularly Delta State. However, these methods have not been able to yield a positive result in reducing the volume of solid waste found across major towns in Delta State. This is why this paper examines methods of waste management practices in selected towns in Delta State. The paper used the descriptive research design, with the aid of survey method that used the
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15

Huggins, Robert A. "Solid State Ionics." MRS Bulletin 14, no. 9 (1989): 18–21. http://dx.doi.org/10.1557/s0883769400061698.

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Анотація:
This issue of the MRS BULLETIN contains three articles relating to the general field that has come to be known as Solid State Ionics. The central feature of this area of science and emerging technology is the rapid transport of atomic or ionic species within solids, and the various phenomena, of both scientific and technological interest, that are related to it.Attention to this area has grown greatly in recent years because of the rapidly increasing recognition of the possibility of a wide range of interesting technological applications. One example already widespread is the use of an oxygen-
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16

Ruiyuan Tang, Ruiyuan Tang, Junhui Hao Junhui Hao, Kai Liu Kai Liu, Yingyun Qiao Yingyun Qiao, and Juntao Zhang and Yuanyu Tian Juntao Zhang and Yuanyu Tian. "Synthesis of High Surface Area Calcium Aluminate (Ca12Al14O33) with Carbon Template by Solid State Calcination Method." Journal of the chemical society of pakistan 41, no. 4 (2019): 664. http://dx.doi.org/10.52568/000768/jcsp/41.04.2019.

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High surface area calcium aluminate is synthetized within a short time by using a carbon template solid state calcination method which involved addition of carbon black into the CaCO3 and Al2O3 powders, calcination, and carbon removal by steam. Vary carbon black dosage changed the textural properties of the calcium aluminate, such as the surface area. By varying carbon black dosage from 0 to 10.0 wt%, the calcium aluminate with a surface area ranging from 21.5 to 41.2 m2and#183;g–1 are successfully synthesized within 14.0 h. Furthermore, the nanometer sized CaCO3 and Al2O3 powders comprising c
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17

Ankoj, P. i. "Structural Analysis of CaLaAlO4 Powder via Solid State Method." International Journal for Research in Applied Science and Engineering Technology 6, no. 3 (2018): 213–16. http://dx.doi.org/10.22214/ijraset.2018.3034.

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18

Xu, Haiyan, Binyao Li, and Chifei Wu. "Polymer Grafting onto Carbon Black by Solid State Method." Polymer Journal 38, no. 8 (2006): 807–13. http://dx.doi.org/10.1295/polymj.pj2005248.

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19

Mkrtchyan, A. R., A. H. Mkrtchyan, H. A. Aslanyan, et al. "New method of solid state structural and composition analysis." Acta Crystallographica Section A Foundations of Crystallography 61, a1 (2005): c435. http://dx.doi.org/10.1107/s0108767305081663.

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20

Bongkarn, Theerachai, and Chiraporn Thiangchit. "Preparation of PBZT Ceramics via Solid State Reaction Method." Ferroelectrics 383, no. 1 (2009): 78–83. http://dx.doi.org/10.1080/00150190902876348.

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21

Kirsanov, Yu A., A. Yu Kirsanov, and A. E. Yudakhin. "Method of Measuring Thermal Relaxation in the Solid State." High Temperature 56, no. 3 (2018): 425–32. http://dx.doi.org/10.1134/s0018151x18030112.

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22

Considine, P. J., R. J. Buckley, T. O. Griffin, M. G. Tuohy, and M. P. Coughlan. "A simple and inexpensive method of solid-state cultivation." Biotechnology Techniques 3, no. 2 (1989): 85–90. http://dx.doi.org/10.1007/bf01875558.

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23

Li, Shuiping, Qisheng Wu, Chun Zhang, et al. "Synthesis of LiNiO2 by two-step solid-state method." Materials Science-Poland 36, no. 1 (2018): 107–11. http://dx.doi.org/10.1515/msp-2018-0015.

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Анотація:
AbstractLiNiO2 was prepared through two-step solid-state reaction by mechanochemical method and heat treatment, using LiOH (Li2CO3) and Ni(OH)2 as starting materials. The influence of grinding speed and time, heat treatment time, and starting materials on the structure of LiNiO2 was studied. The as-milled samples and products were characterized by scanning electron microscope (SEM) and X-ray diffraction (XRD). The results show that uniform as-milled samples can be obtained at grinding speed of 580 rpm for 0.5 h, using LiOH and Ni(OH)2 as raw materials. Perfect crystal LiNiO2 has been prepared
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24

Chung-We Pan, Jung-Chuan Chou, Tai-Ping Sun, and Shen-Kan Hsiung. "Solid-state urea biosensor based on the differential method." IEEE Sensors Journal 6, no. 2 (2006): 269–75. http://dx.doi.org/10.1109/jsen.2006.870160.

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25

Burum, Douglas, and Anthony J. Bielecki. "5245284 Method for editing CPMAS solid-state NMR spectra." Magnetic Resonance Imaging 12, no. 5 (1994): XVII. http://dx.doi.org/10.1016/0730-725x(94)92268-3.

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26

Zhao, Jiruo, Ying Feng, Gang Ma, and Guifang Chao. "Chlorinated Polyethylene Elastomer Synthesized by A Solid State Method." Chinese Journal of Applied Chemistry 14, no. 1 (1997): 41–44. http://dx.doi.org/10.3724/j.issn.1000-0518.1997.1.41.

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27

Zhao, Jiruo, Ying Feng, Gang Ma, and Guifang Chao. "Chlorinated Polyethylene Elastomer Synthesized by A Solid State Method." Chinese Journal of Applied Chemistry 14, no. 1 (1997): 41–44. http://dx.doi.org/10.3724/j.issn.1000-0518.1997.1.4144.

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28

Szurkowska, Katarzyna, Łukasz Szeleszczuk, and Joanna Kolmas. "Effects of Synthesis Conditions on the Formation of Si-Substituted Alpha Tricalcium Phosphates." International Journal of Molecular Sciences 21, no. 23 (2020): 9164. http://dx.doi.org/10.3390/ijms21239164.

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Powders of α-TCP containing various amounts of silicon were synthesized by two different methods: Wet chemical precipitation and solid-state synthesis. The obtained powders were then physico–chemically studied using different methods: Scanning and transmission electron microscopy (TEM and SEM), energy-dispersive X-ray spectroscopy (EDS), powder X-ray diffractometry (PXRD), infrared and Raman spectroscopies (FT-IR and R), and solid-state nuclear magnetic resonance (ssNMR). The study showed that the method of synthesis affects the morphology of the obtained particles, the homogeneity of crystall
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29

Shao, Weiguo, and Qi Wang. "Partial exfoliation and layer expansion of vermiculite layer in solid state by solid state shear milling (S3M) method." Journal of Applied Polymer Science 101, no. 3 (2006): 1806–9. http://dx.doi.org/10.1002/app.23561.

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30

Málek, Jiří, Takefumi Mitsuhashi, and José Manuel Criado. "Kinetic analysis of solid-state processes." Journal of Materials Research 16, no. 6 (2001): 1862–71. http://dx.doi.org/10.1557/jmr.2001.0255.

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Анотація:
A simple method for kinetic analysis of solid-state processes has been developed. A criteria capable of classifying different processes is explored here with a view toward visualizing the complexity of solid-state kinetics. They provide a useful tool for the determination of the most suitable kinetic model. The method has been applied to the analysis of crystallization processes in amorphous ZrO2 and RuO2. It is found that the crystallization kinetics of as-prepared sample exhibits a complex behavior under nonisothermal conditions. This is probably due to an overlapping of the nucleation- and
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31

YAN, MIN, JIANYE YIN, BAOPING SUN, and XIAO MA. "GRANULE HYDRODYNAMICS METHOD: A DISCRETE ELEMENT METHOD ON FLUID MOTIONS." International Journal of Computational Methods 09, no. 01 (2012): 1240023. http://dx.doi.org/10.1142/s0219876212400233.

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A granule hydrodynamics method is proposed in studying complex dynamic behavior of wind-blown movement system. Fluid in the wind-blown movement system is discretized into elastic fluid granules in a certain scale of time and space. It is considered that fluid motion is caused by fluid granules collision and fluid density difference (or pressure difference). Based on the essential properties of fluid, the constitutive relations of fluid granules are well established in the proposed granule hydrodynamics method, fluid state equation, and fluid sound velocity derivative state equation are adopted
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32

Tugelbayeva, A., F. Sultanov, B. Tatykayev, A. Belgibayeva, Z. Shalabayev, and E. Nurgaziyeva. "Synthesis and characterization of LLZTO solid electrolyte via the solid-state ball-milling method." Горение и плазмохимия 23, no. 2 (2025): 163–71. https://doi.org/10.18321/cpc23(2)163-171.

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The rapid advancement of electronic devices and energy storage systems demands the development of safe, durable, and high-performance battery components. One of the key challenges in this field is replacing flammable liquid electrolytes with more stable and reliable inorganic solid electrolytes. Among various candidates, garnet-type lithium lanthanum zirconium tantalum oxide Li₆.₄La₃Zr₁.₄Ta₀.₆O₁₂ (LLZTO) has emerged as a promising material due to its excellent chemical stability and high ionic conductivity. In this study, we present the synthesis and characterization of LLZTO solid electrolyte
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33

Onffroy, Philip R., Nathan T. Herrold, Harrison G. Goehrig, Kalie Yuen, and Katsuyuki Wakabayashi. "Polylactic Acid Chemical Foaming Assisted by Solid-State Processing: Solid-State Shear Pulverization and Cryogenic Milling." Polymers 14, no. 21 (2022): 4480. http://dx.doi.org/10.3390/polym14214480.

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A chemical foaming process of polylactic acid (PLA) was developed via the solid-state processing methods of solid-state shear pulverization (SSSP) and cryogenic milling. Based on the ability of solid-state processing to enhance the crystallization kinetics of PLA, chemical foaming agents (CFA) are first compounded before foaming via compression molding. Specifically, the effects of the pre-foaming solid-state processing method and CFA concentration were investigated. Density reduction, mechanical properties, thermal behavior, and cell density of PLA foams are characterized. Solid-state process
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34

W., G. Devi, K. Manihar Singh A., and Bhattacharya Manabesh. "On the error involved in the determination of activation energy of solid state reactions by using Coats-Redfern method." Journal of Indian Chemical Society Vol. 77, Jul 2000 (2000): 341–43. https://doi.org/10.5281/zenodo.5867519.

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Анотація:
Department of Chemsitry, T. S. Paul Manipur Women&#39;s College, Monsangei, Imphal-795 008, India&nbsp; Department of Chemistry, School of Sctence, Manipur University, Canchipur, Imphal-795 003. India Department of Physics, Krishnath College, Berhampore-742 101, Murshidabad, India <em>Manuscript received 20 April 1999, accepted March 2000</em> An attempt has&nbsp;been made to find out precisely the error involved in the determination of activation energy by Coats&nbsp;and Redfern method. We also consider the case of temperature dependent frequency factor. The findings have been tcsted by evalu
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35

Murakami, Yuichiro, Kenji Miwa, Masayuki Kito, Takashi Honda, and Naoki Omura. "Development of Slurry Preparation Method by Applying Mechanical Vibration." Solid State Phenomena 285 (January 2019): 333–38. http://dx.doi.org/10.4028/www.scientific.net/ssp.285.333.

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The preparation of a semi-solid slurry with fine and spherical solid particles dispersed in the liquid phase is a key technology for the semi-solid process. In this study, we have developed the slurry preparation method by applying mechanical vibration for JIS AC4CH (equivalent to A356 in the ASTM standard) and ADC12 (equivalent to A383 in the ASTM standard) aluminum alloys. In this method, the mechanical vibration was applied to the aluminum alloys during cooling from a liquid state to semi-solid state. The shape of the particle was varied by controlling vibration conditions. Therefore, we in
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36

Song, Jin-Sol, Ji-Soo Kim, Barry Mather, and Chul-Hwan Kim. "Hosting Capacity Improvement Method Using MV–MV Solid-State-Transformer." Energies 14, no. 3 (2021): 622. http://dx.doi.org/10.3390/en14030622.

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Анотація:
As a large number of distributed generations are connected to the distribution system, research on the hosting capacity is actively being conducted. In particular, various methods, such as smart inverter functionality, co-located energy storage systems (ESS), and the use of on-load tap changers (OLTC), have been proposed to improve the hosting capacity. In this paper, a method to improve the hosting capacity by utilizing a solid-state transformer (SST) and its unique control capability is proposed. Lastly, the proposed method is verified in the distribution system of the Republic of Korea usin
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37

Baade, Paul, and Vanessa Wood. "Ultra-high throughput manufacturing method for composite solid-state electrolytes." iScience 24, no. 2 (2021): 102055. http://dx.doi.org/10.1016/j.isci.2021.102055.

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38

Wen, Jin Song, Tie Cheng Lu, Jian Qi Qi, et al. "Preparation of Aluminum Oxynitride Powder by Solid State Reaction Method." Key Engineering Materials 368-372 (February 2008): 435–37. http://dx.doi.org/10.4028/www.scientific.net/kem.368-372.435.

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Анотація:
Single-phase aluminum oxynitride powders were obtained by varying the holding temperature (T) and the weight percentage of α-Al2O3 in Al2O3 (X) with nano-sized Al2O3 and AlN powders as raw materials. Influences of T and X on the phase composition of obtained powders were studied. The results showed that the content of aluminum oxynitride increased with increasing T or X. When X was 50% and T was 1750°C, obtained powders had better properties than those of others.
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39

Dyartanti, Endah R., Anisa R. Nurohmah, Ike P. Lestari, Muhamad I. Putra, Shofirul S. Nisa, and Ulfa I. Pratiwi. "Kinetics Study of LiFePO4 Synthesis Reaction with Solid State Method." Energy Storage Technology and Applications 1, no. 1 (2021): 1. http://dx.doi.org/10.20961/esta.v1i1.56797.

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Анотація:
Lithium Ferro Phosphate (LiFePO&lt;sub&gt;4&lt;/sub&gt;) is a cathode that has the advantage of abundant raw material, inexpensive and easily upgraded compared to other cathode. The method commonly used for LiFePO&lt;sub&gt;4&lt;/sub&gt; synthesis is solid state. It is important to study kinetics in this process for product optimization. There are two methods in determining the kinetics of product formation including Thermogravimetric Differential Thermal Analysis (TG-DTA) and X-ray Diffraction (XRD). Meanwhile, Cyclic Voltammetry (CV) and Electrochemical Impedance Spectroscopy (EIS). Meanwhil
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40

García-Gómez, Pablo, Santiago Royo, Noel Rodrigo, and Josep R. Casas. "Geometric Model and Calibration Method for a Solid-State LiDAR." Sensors 20, no. 10 (2020): 2898. http://dx.doi.org/10.3390/s20102898.

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Анотація:
This paper presents a novel calibration method for solid-state LiDAR devices based on a geometrical description of their scanning system, which has variable angular resolution. Determining this distortion across the entire Field-of-View of the system yields accurate and precise measurements which enable it to be combined with other sensors. On the one hand, the geometrical model is formulated using the well-known Snell’s law and the intrinsic optical assembly of the system, whereas on the other hand the proposed method describes the scanned scenario with an intuitive camera-like approach relat
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41

Park, Hye-Jung, Sun-Min Park, Gwang-Chul Roh, and Cheong-Hwa Han. "Electrochemical Performances of LiMn2O4:Al Synthesized by Solid State Method." Journal of the Korean Ceramic Society 48, no. 6 (2011): 531–36. http://dx.doi.org/10.4191/kcers.2011.48.6.531.

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42

Evi, J., Y. Tiandho, R. A. Rafsanjani, and F. Afriani. "Purification of silica from tin tailings through solid-state method." IOP Conference Series: Earth and Environmental Science 353 (October 31, 2019): 012025. http://dx.doi.org/10.1088/1755-1315/353/1/012025.

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43

OGINUMA, Hideki, Eiji Yuasa, and Katsuyoshi KONDOH. "Surface improvement of magnesium alloy using solid-state reaction method." Proceedings of the JSME annual meeting 2003.1 (2003): 401–2. http://dx.doi.org/10.1299/jsmemecjo.2003.1.0_401.

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44

Kuroda, R., and R. Sekiya. "Changing solid-state reaction stereochemistry: heavy-atom co-crystal method." Acta Crystallographica Section A Foundations of Crystallography 67, a1 (2011): C362. http://dx.doi.org/10.1107/s010876731109088x.

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Gaponov, Yu A., N. Z. Lyakhov, B. P. Tolochko, S. E. Baru, G. A. Savinov, and M. A. Sheromov. "Station for studying solid‐state chemical reactions by Laue method." Review of Scientific Instruments 60, no. 7 (1989): 2429–31. http://dx.doi.org/10.1063/1.1140737.

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