Artículos de revistas sobre el tema "Tip Characterizer"
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Itoh, Hiroshi, Toshiyuki Fujimoto y Shingo Ichimura. "Tip characterizer for atomic force microscopy". Review of Scientific Instruments 77, n.º 10 (octubre de 2006): 103704. http://dx.doi.org/10.1063/1.2356855.
Texto completoWu, Ziruo, Yingfan Xiong, Lihua Lei, Wen Tan, Zhaohui Tang, Xiao Deng, Xinbin Cheng y Tongbao Li. "Sub-5 nm AFM Tip Characterizer Based on Multilayer Deposition Technology". Photonics 9, n.º 9 (17 de septiembre de 2022): 665. http://dx.doi.org/10.3390/photonics9090665.
Texto completoTakenaka, Hisataka, Masatoshi Hatayama, Hisashi Ito, Tadayuki Ohchi, Akio Takano, Satoru Kurosawa, Hiroshi Itoh y Shingo Ichimura. "AFM Tip Characterizer fabricated by Si/SiO2 multilayers". e-Journal of Surface Science and Nanotechnology 9 (2011): 293–96. http://dx.doi.org/10.1380/ejssnt.2011.293.
Texto completoXu, Min, Ziqi Zhou, Thomas Ahbe, Erwin Peiner y Uwe Brand. "Using a Tip Characterizer to Investigate Microprobe Silicon Tip Geometry Variation in Roughness Measurements". Sensors 22, n.º 3 (8 de febrero de 2022): 1298. http://dx.doi.org/10.3390/s22031298.
Texto completoOrji, Ndubuisi G., Hiroshi Itoh, Chumei Wang, Ronald G. Dixson, Peter S. Walecki, Sebastian W. Schmidt y Bernd Irmer. "Tip characterization method using multi-feature characterizer for CD-AFM". Ultramicroscopy 162 (marzo de 2016): 25–34. http://dx.doi.org/10.1016/j.ultramic.2015.12.003.
Texto completoInaba, Takumi, Jianping Xie, Ryohei Sugiyama y Yoshikazu Homma. "Tip characterizer for atomic force microscopy using singly suspended carbon nanotube". Surface and Interface Analysis 44, n.º 6 (12 de diciembre de 2011): 690–93. http://dx.doi.org/10.1002/sia.4813.
Texto completoAbu Quba, Abd Alaziz, Gabriele E. Schaumann, Mariam Karagulyan y Doerte Diehl. "Quality control of direct cell–mineral adhesion measurements in air and liquid using inverse AFM imaging". RSC Advances 11, n.º 10 (2021): 5384–92. http://dx.doi.org/10.1039/d1ra00110h.
Texto completoHAN, GUOQIANG, YUQIN CHEN y BINGWEI HE. "BIAXIALLY ORIENTED POLYPROPYLENE FILM FOR AFM TIP CHARACTERIZATION". Nano 09, n.º 03 (abril de 2014): 1450029. http://dx.doi.org/10.1142/s1793292014500295.
Texto completoVillarrubia, J. S. "Blind Estimation of Tip Geometry in Scanned Probe Microscopy". Microscopy and Microanalysis 3, S2 (agosto de 1997): 1259–60. http://dx.doi.org/10.1017/s1431927600013180.
Texto completoWang, Chunmei, Hiroshi Itoh, Yoshikazu Homma, Jielin Sun, Jun Hu y Shingo Ichimura. "Geometric Characterization of Carbon Nanotubes by Atomic Force Microscopy in Conjunction with a Tip Characterizer". Japanese Journal of Applied Physics 47, n.º 7 (18 de julio de 2008): 6128–33. http://dx.doi.org/10.1143/jjap.47.6128.
Texto completoSkårman, Björn, L. Reine Wallenberg, Sissel N. Jacobsen, Ulf Helmersson y Claes Thelander. "Evaluation of Intermittent Contact Mode AFM Probes by HREM and Using Atomically Sharp CeO2Ridges as Tip Characterizer". Langmuir 16, n.º 15 (julio de 2000): 6267–77. http://dx.doi.org/10.1021/la000078t.
Texto completoXu, Mingsheng, Daisuke Fujita y Keiko Onishi. "Reconstruction of atomic force microscopy image by using nanofabricated tip characterizer toward the actual sample surface topography". Review of Scientific Instruments 80, n.º 4 (abril de 2009): 043703. http://dx.doi.org/10.1063/1.3115182.
Texto completovan Kooten, Maaike A. M., Sam Ragland, Rebecca Jensen-Clem, Yinzi Xin, Jacques-Robert Delorme y J. Kent Wallace. "On-sky Reconstruction of Keck Primary Mirror Piston Offsets Using a Zernike Wavefront Sensor". Astrophysical Journal 932, n.º 2 (1 de junio de 2022): 109. http://dx.doi.org/10.3847/1538-4357/ac6ba2.
Texto completoCui, Hai Long, Zhong Min Zhao, Long Zhang y Xue Gang Huang. "Microstructure and Fracture Behavior of the Joint of Solidified TiB2 Ceramic with Ti-6Al-4V Achieved by Reaction Fusion Bonding in Ultrahigh-Gravity Field". Key Engineering Materials 591 (noviembre de 2013): 90–94. http://dx.doi.org/10.4028/www.scientific.net/kem.591.90.
Texto completoVillarrubia, J. S. "Scanned probe microscope tip characterization without calibrated tip characterizers". Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures 14, n.º 2 (1 de marzo de 1996): 1518. http://dx.doi.org/10.1116/1.589130.
Texto completoLuo, Ping, Shi Jie Dong, Zhang Qiang Mei y Zhi Xiong Xie. "Strengthening Mechanism of TiB2-TiC Complex Phases Coated Electrode". Advanced Materials Research 433-440 (enero de 2012): 251–55. http://dx.doi.org/10.4028/www.scientific.net/amr.433-440.251.
Texto completoMareanukroh, Methporn, R. K. Eby, R. J. Scavuzzo, Gary R. Hamed y Judith Preuschen. "Use of Atomic Force Microscope as a Nanoindenter to Characterize Elastomers". Rubber Chemistry and Technology 73, n.º 5 (1 de noviembre de 2000): 912–25. http://dx.doi.org/10.5254/1.3547629.
Texto completoHigashida, K., N. Narita, M. Tanaka, T. Morikawa, Y. Miura y R. Onodera. "Crack tip dislocations in silicon characterized by highvoltage electron microscopy". Philosophical Magazine A 82, n.º 17-18 (20 de noviembre de 2002): 3263–73. http://dx.doi.org/10.1080/01418610210141307.
Texto completoDai, Gaoliang, Xiukun Hu y Johannes Degenhardt. "Bottom-up approach for traceable calibration of tip geometry of stylus profilometer". Surface Topography: Metrology and Properties 10, n.º 1 (8 de febrero de 2022): 015018. http://dx.doi.org/10.1088/2051-672x/ac4f36.
Texto completoHigashida, K., N. Narita, M. Tanaka, T. Morikawa, Y. Miura y R. Onodera. "Crack tip dislocations in silicon characterized by high-voltage electron microscopy". Philosophical Magazine A 82, n.º 17-18 (noviembre de 2002): 3263–73. http://dx.doi.org/10.1080/01418610208240439.
Texto completoCvetković, Vesna S., Nataša M. Vukićević, Ksenija Milićević-Neumann, Srećko Stopić, Bernd Friedrich y Jovan N. Jovićević. "Electrochemical Deposition of Al-Ti Alloys from Equimolar AlCl3 + NaCl Containing Electrochemically Dissolved Titanium". Metals 10, n.º 1 (4 de enero de 2020): 88. http://dx.doi.org/10.3390/met10010088.
Texto completoGRANT, C. D., B. D. KAY, P. H. GROENEVELT, G. E. KIDD y G. W. THURTELL. "SPECTRAL ANALYSIS OF MICROPENETROMETER DATA TO CHARACTERIZE SOIL STRUCTURE". Canadian Journal of Soil Science 65, n.º 4 (1 de noviembre de 1985): 789–804. http://dx.doi.org/10.4141/cjss85-083.
Texto completoHan, Guoqiang, Shuguang Cao, Xiumei Wang, Bo Lin y Yuqin Chen. "Blind evaluation of AFM tip shape by using optical glass surface with irregular nanostructures as a tip characteriser". Micro & Nano Letters 12, n.º 12 (diciembre de 2017): 916–19. http://dx.doi.org/10.1049/mnl.2017.0200.
Texto completoTakenaka, Hisataka, Masatoshi Hatayama, Hisashi Ito, Tadayuki Ohchi, Akio Takano, Satoru Kurosawa, Hiroshi Itoh y Shingo Ichimura. "Development of Si/SiO2 Multilayer Type AFM Tip Characterizers". Journal of Surface Analysis 17, n.º 3 (2011): 264–68. http://dx.doi.org/10.1384/jsa.17.264.
Texto completoAloi, Laura E. y Robert S. Cherry. "Cellular response to agitation characterized by energy dissipation at the impeller tip". Chemical Engineering Science 51, n.º 9 (mayo de 1996): 1523–29. http://dx.doi.org/10.1016/0009-2509(95)00307-x.
Texto completoCui, Hai Long, Zhong Min Zhao y Long Zhang. "Composite of TiC-TiB2 Ceramic with Ti-6Al-4V Alloy Prepared by Combustion Synthesis in Ultrahigh Gravity Field". Applied Mechanics and Materials 341-342 (julio de 2013): 134–38. http://dx.doi.org/10.4028/www.scientific.net/amm.341-342.134.
Texto completoChen, Yuqin, Guoqiang Han y Bingwei He. "Atomic force microscopy tip characteriser based on the fabrication of nanorod array structures". Micro & Nano Letters 8, n.º 12 (diciembre de 2013): 861–64. http://dx.doi.org/10.1049/mnl.2013.0577.
Texto completoO'Dowd, N. P. y C. F. Shih. "Family of crack-tip fields characterized by a triaxiality parameter—II. Fracture applications". Journal of the Mechanics and Physics of Solids 40, n.º 5 (julio de 1992): 939–63. http://dx.doi.org/10.1016/0022-5096(92)90057-9.
Texto completoMyalska-Głowacka, Hanna, Bartosz Chmiela, Marcin Godzierz y Maria Sozańska. "Residual Stress Induced by Addition of Nanosized TiC in Titanium Matrix Composite". Materials 15, n.º 7 (29 de marzo de 2022): 2517. http://dx.doi.org/10.3390/ma15072517.
Texto completoMuller, Markus P. y Michele Pastena. "A Generalization of Majorization that Characterizes Shannon Entropy". IEEE Transactions on Information Theory 62, n.º 4 (abril de 2016): 1711–20. http://dx.doi.org/10.1109/tit.2016.2528285.
Texto completoSung, Si Young, Bong Jae Choi y Young Jig Kim. "Synthesis and Forming of Titanium Matrix Composites by Casting Route". Key Engineering Materials 334-335 (marzo de 2007): 297–300. http://dx.doi.org/10.4028/www.scientific.net/kem.334-335.297.
Texto completoO'Dowd, N. P. y C. F. Shih. "Family of crack-tip fields characterized by a triaxiality parameter—I. Structure of fields". Journal of the Mechanics and Physics of Solids 39, n.º 8 (enero de 1991): 989–1015. http://dx.doi.org/10.1016/0022-5096(91)90049-t.
Texto completoMakwiza, Chikondi y Heinz Erasmus Jacobs. "Sound recording to characterize outdoor tap water use events". Journal of Water Supply: Research and Technology-Aqua 66, n.º 6 (17 de julio de 2017): 392–402. http://dx.doi.org/10.2166/aqua.2017.120.
Texto completoYeh, Tze Yang y Kuo Yuan Peng. "Characterization of Simultaneously Gas Atomized Ti/TiC Composite Powders". Key Engineering Materials 704 (agosto de 2016): 302–7. http://dx.doi.org/10.4028/www.scientific.net/kem.704.302.
Texto completoZhang, Xin Ge, Wei Xiang Jiang, Han Wei Tian, Zheng Xing Wang, Qiang Wang y Tie Jun Cui. "Pattern-Reconfigurable Planar Array Antenna Characterized by Digital Coding Method". IEEE Transactions on Antennas and Propagation 68, n.º 2 (febrero de 2020): 1170–75. http://dx.doi.org/10.1109/tap.2019.2938678.
Texto completoMak, Jonathon, Richard Wuhrer, Greg Heness, J. Qin, W. Lu, D. Zhang y Wing Yiu Yeung. "Microstructural Analysis on Ti-6Al-4V and 10 Vol.% (TiB+TiC)/Ti-6Al-4V Metal Matrix Composites". Advanced Materials Research 32 (febrero de 2008): 115–18. http://dx.doi.org/10.4028/www.scientific.net/amr.32.115.
Texto completoAndo, Bruno, Pietro Giannone y Salvatore Graziani. "A Low-Cost Experimental Setup to Characterize Piezoelectric Cantilever Bimorphs". IEEE Transactions on Instrumentation and Measurement 57, n.º 1 (enero de 2008): 10–18. http://dx.doi.org/10.1109/tim.2007.909409.
Texto completoBlijdorp, Charles J., Omar A. Z. Tutakhel, Thomas A. Hartjes, Thierry P. P. van den Bosch, Martijn H. van Heugten, Juan Pablo Rigalli, Rob Willemsen et al. "Comparing Approaches to Normalize, Quantify, and Characterize Urinary Extracellular Vesicles". Journal of the American Society of Nephrology 32, n.º 5 (29 de marzo de 2021): 1210–26. http://dx.doi.org/10.1681/asn.2020081142.
Texto completoApaydin, Hulya, Gulçin Benbir y Andrew Lees. "A stimulus-sensitive tic disorder characterized by echophenomena and coprolalia". Movement Disorders 27, n.º 1 (13 de septiembre de 2011): 159–60. http://dx.doi.org/10.1002/mds.23952.
Texto completoJung, Yohan, Minsuk Choi, Seonghwan Oh y Jehyun Baek. "Effects of a Nonuniform Tip Clearance Profile on the Performance and Flow Field in a Centrifugal Compressor". International Journal of Rotating Machinery 2012 (2012): 1–11. http://dx.doi.org/10.1155/2012/340439.
Texto completoHedayati, Fares y Peter L. Bartlett. "Exchangeability Characterizes Optimality of Sequential Normalized Maximum Likelihood and Bayesian Prediction". IEEE Transactions on Information Theory 63, n.º 10 (octubre de 2017): 6767–73. http://dx.doi.org/10.1109/tit.2017.2735799.
Texto completoZhao, Zhong Min, Long Zhang, Shuan Jie Wang y Min Quan Wang. "Multiscale and Multilevel Composite of Solidified TiC-TiB2 with Ti-6Al-4V Achieved by Fusion Bonding in High-Gravity Field". Advanced Materials Research 833 (noviembre de 2013): 136–41. http://dx.doi.org/10.4028/www.scientific.net/amr.833.136.
Texto completoGonzález, Marta, J. Peña, Jose Maria Manero y F. J. Gil. "Influence of Cold Work in the Elastic Modulus of the Ti-16.2Hf-24.8Nb-1Zr Alloy Characterized by Instrumented Nanoindentation". Key Engineering Materials 423 (diciembre de 2009): 113–18. http://dx.doi.org/10.4028/www.scientific.net/kem.423.113.
Texto completoZhao, Li Ping, Zong De Liu, Song Wang y Jun Peng Liu. "Research on the Microstructure and High Temperature Creep Behavior of In Situ TiC/Ni Composite". Applied Mechanics and Materials 79 (julio de 2011): 151–54. http://dx.doi.org/10.4028/www.scientific.net/amm.79.151.
Texto completoPukhova, Valentina, Francesco Banfi y Gabriele Ferrini. "Energy dissipation in multifrequency atomic force microscopy". Beilstein Journal of Nanotechnology 5 (17 de abril de 2014): 494–500. http://dx.doi.org/10.3762/bjnano.5.57.
Texto completoZhang, Guitao, Xi Chen, Weihe Xu, Wei-Dong Yao y Yong Shi. "Piezoelectric property of PZT nanofibers characterized by resonant piezo-force microscopy". AIP Advances 12, n.º 3 (1 de marzo de 2022): 035203. http://dx.doi.org/10.1063/5.0081109.
Texto completoLu, Yirui, Lei Yan, Shafqat Hussain, Mengtao Sun, Zhenglong Zhang y Hairong Zheng. "Interlayer Coulomb interaction in twisted bilayer graphene nanofragments characterized by the vibrational mode of Gr+ band". Applied Physics Letters 120, n.º 8 (21 de febrero de 2022): 083103. http://dx.doi.org/10.1063/5.0082541.
Texto completoDAVIES, KERRIE A., WEIMIN YE, GARY S. TAYLOR, SONJA SCHEFFER, F. BARTHOLOMAEUS y ROBIN M. GIBLIN-DAVIS. "Nematodes from galls on Myrtaceae. XI. Descriptions of five new species of Fergusobia from Australia". Zootaxa 4399, n.º 1 (20 de marzo de 2018): 1. http://dx.doi.org/10.11646/zootaxa.4399.1.1.
Texto completoMuscari, Roberto, Giulio Dubbioso y Andrea Di Mascio. "Analysis of the flow field around a rudder in the wake of a simplified marine propeller". Journal of Fluid Mechanics 814 (9 de febrero de 2017): 547–69. http://dx.doi.org/10.1017/jfm.2017.43.
Texto completoViana, Ana Cecília Diniz, Maria Guiomar de Azevedo Bahia y Vicente Tadeu Lopes Buono. "Comparison between the Flexibility of Three Different Types of Rotary NiTi Endodontic Instruments". Materials Science Forum 643 (marzo de 2010): 61–68. http://dx.doi.org/10.4028/www.scientific.net/msf.643.61.
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