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| 1 | Hermite variational implicit surface reconstruction显示文摘We propose a new technique for reconstructing surfaces from a large set of unorganized 3D data points and their associated normal vectors. The surface is represented as the zero level set of an implicit vol-ume model which fits the data points and normal constraints. Compared with variational implicit sur-faces,we make use of surface normal vectors at data points directly in the implicit model and avoid of introducing manufactured off-surface points. Given n surface point/normal pairs,the proposed method only needs to solve an n×n positive definite linear system. It allows fitting large datasets effectively and robustly. We demonstrate the performance of the proposed method with both globally supported and compactly supported radial basis functions on several datasets. | PAN RongJiang MENG XiangXu WHANGBO TaegKeun | 2009 | Science in China(Series F)2009,52,2: | 5 |
| 2 | Material research from the viewpoint of functional motifs显示文摘As early as 2001,the need for the‘functional motif theory’was pointed out,to assist the rational design of functional materials.The properties of materials are determined by their functional motifs and how they are arranged in the materials.Uncovering functional motifs and their arrangements is crucial in understanding the properties of materials and rationally designing new materials of desired properties.The functional motifs of materials are the critical microstructural units(e.g.constituent components and building blocks)that play a decisive role in generating certain material functions,and can not be replaced with other structural units without the loss,or significant suppression,of relevant functions.The role of functional motifs and their arrangement in materials,with representative examples,is presented.The microscopic structures of these examples can be classified into six types on a length scale smaller than∼10 nm with maximum subatomic resolution,i.e.crystal,magnetic,aperiodic,defect,local and electronic structures.Functional motif analysis can be employed in the function-oriented design of materials,as elucidated by taking infrared non-linear optical materials as an example.Machine learning is more efficient in predicting material properties and screening materials with high efficiency than high-throughput experimentation and high-throughput calculations.In order to extract functional motifs and find their quantitative relationships,the development of sufficiently reliable databases for material structures and properties is imperative. | Xiao-Ming Jiang Shuiquan Deng Myung-Hwan Whangbo Guo-Cong Guo | 2022 | National Science Review2022,9,7: | 2 |
| 3 | Skin pores detection for image- based skin analysis显示文摘 | Qian Zhang Taegkeun Whangbo | 2008 | Lecture Notes Comput Sci2008,5326,1: | 1 |
| 4 | Enhancing the thermoelec- tric properties of layered transition-metal dichalcogenides 2H- MQz (M= Mo, W Q= S, Se, Te) by layer mixing density func- tional investigation显示文摘 | Lee C Hong J Whangbo M H | 2013 | Chemistry of Materials2013,25,18: | 1 |
| 5 | 显示文摘 | Seo D K Whangbo M H | 1997 | J Solid State Chem1997,129,: | 1 |
| 6 | Spin-OrbitCoupling and Ion Displacements in Multiferroic TbMn03显示文摘 | Xiang H J’Wei S H Whangbo M H | 2008 | Phys Rev Lett2008,101,03: | 1 |
| 7 | Spin-Orbit Coupling and Ion Displacements in Multiferroic TbMnO3显示文摘 | Xiang H J Su-Huai Wei Whangbo M H | 2008 | Phys Rev Lett2008,101,03: | 1 |
| 8 | Electronic band structure study of the anomalous electrical and superconducting properties of hexagonal alkali tungsten bronzes AxWO3 (A =K, Rb, Cs) 显示文摘 | Lee K S Seo D K Whangbo M H | 1997 | J Am Cbem Soc1997,119,: | 1 |
| 9 | Characteristics of Y 2 O 3 films on Si(111) grown by oxygen-ion beam-assisted deposition显示文摘 | M.-H. Cho D.-H. Ko J.G. Seo S.W. Whangbo K. Jeong I.W. Lyo C.N. Whang D.Y. Noh H.J. Kim | 2001 | Thin Solid Films2001,,1: | 1 |
| 10 | On the phosphorescence mechanism in SrAlaO4:Eu^2+ and its codoped derivatives 显示文摘 | Frederic Clabau Xavier Rocquefelte Stephane Jobic Philippe Deniard Myung-Hwan Whangbo Alain Garcia Thierry Le Mercier | 2007 | Solid State Science2007,9,: | 1 |
| 11 | Phase Imaging and Stiffness in Tapping-mode Atomic force Microscopy显示文摘 | Magonov S N Elings V Whangbo M H | 1997 | Surface Science1997,375,: | 1 |
| 12 | Experimental and Theoretical Characterization of the Optical Properties of CeO2,SrCeO3 and Sr2CeO4 containing Ce 4 + (f0) ions显示文摘 | GOUBIN F ROCQUEFELTE X WHANGBO M H | 2004 | Chem Mater2004,16,4: | 1 |
| 13 | Symmetric stretching vibrations of two-coordinate oxygen bridges as a cause for negative thermal expansion in ZrVx P2 - xO7 and AW2O8 ( A= Zr,Hf) at high temperature显示文摘 | Seo D K Whangbo M H | 1997 | J Solid State Chem1997,129,: | 1 |
| 14 | Electronicband structure study of the anomalous electrical and su-perconducting properties of hexagonal alkali tungstenbronzes AxWO3(A=K,Rb,Cs)显示文摘 | LEE K S SEO D K WHANGBO M H | 1997 | Journal of theAmerican Chemical Society1997,119,17: | 1 |
| 15 | Symmetric stretching vibrations of two-coordinate oxygen bridges as a cause for negative thermal expansion in ZrVxP2-xO7 and AW2O8 (A=Zr,Hf) at high temperature显示文摘 | WHANGBO M H | 1997 | J Solid State Chem1997,129,: | 1 |
| 16 | Characterization of the morphologies and nanostructures of blends of poly (styrene)-block-poly(ethene-co-but-l-ene)-block-poly (styrene) with isotactic and atactic polypropylenes by tapping-mode atomic force microscopy显示文摘 | BAR G THOMANN Y WHANGBO M H | 1998 | Langmuir1998,14,5: | 1 |
| 17 | Electronic band structure study of the anomalous electrical and superconducting properties of hexagonal alkali tungsten bronzes AxWO3 (A = K,Rb,Cs)显示文摘 | Lee K S Seo D K Whangbo M H | 1997 | J Am Chem Soc1997,119,40: | 1 |
| 18 | 查看详情显示文摘 | Zhang Y Xiang H J Whangbo M H | | 0,,: | 1 |
| 19 | Environmental RNA interference显示文摘 | Whangbo J S Hunter C P | 2008 | Trends in genetics2008,24,: | 1 |
| 20 | Magnetic superstructures of cupric oxide CuO as ordered arrangements of one-dimensional antiferromagnetic chains 显示文摘 | Koo H J Whangbo M H | 2003 | Inorganic Chemistry2003,42,: | 1 |