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Materials Science

D-Index
59
Citations
13760
World Ranking
7324
National Ranking
1816

Overview

Jenn-Ming Yang is affiliated with the University of California, Los Angeles in the United States. Their research primarily focuses on Environmental Science, with a substantial body of work contributing to multiple related subfields including Plant Science, Ecology, Materials Chemistry, Global and Planetary Change, and Nature and Landscape Conservation.

Their recent research output comprises studies published in various academic journals, covering diverse topics such as energy optimization, urban forestry, and remote sensing. Selected papers include:

  • A Survey of Energy Optimization Approaches for Computational Task Offloading and Resource Allocation in MEC Networks (2023) published in Electronics
  • The woody plant diversity and landscape pattern of fine-resolution urban forest along a distance gradient from points of interest in Qingdao (2021) published in Ecological Indicators
  • Allometric Growth of Common Urban Tree Species in Qingdao City of Eastern China (2023) published in Forests
  • Assessing the Performance of Handheld Laser Scanning for Individual Tree Mapping in an Urban Area (2024) published in Forests

The scientist has collaborated frequently with other researchers, including Huicui Lu, Xiao Guo, Shimei Li, Haifang Li, and Tong Wang. These collaborations have contributed to the depth and breadth of their work.

Jenn-Ming Yang's publications appear most often in venues such as SSRN Electronic Journal, Research Square, Forests, International Journal of Gaming and Computer-Mediated Simulations, and Preprints.org.

Their work covers several main research topics, including:

  • Coastal wetland ecosystem dynamics
  • Land Use and Ecosystem Services
  • Urban Green Space and Health
  • Ecology and Vegetation Dynamics Studies
  • IoT and Edge/Fog Computing
  • Age of Information Optimization
  • Remote Sensing and Land Use

Best Publications

  • Synthesis of Ultra-Incompressible Superhard Rhenium Diboride at Ambient Pressure

    Hsiu-Ying Chung;Michelle B. Weinberger;Jonathan B. Levine;Abby Kavner

  • Processing and properties of magnesium containing a dense uniform dispersion of nanoparticles

    Lian-Yi Chen;Jia-Quan Xu;Hongseok Choi;Marta Pozuelo

  • Materials for ultrahigh temperature structural applications

    K Upadhya;J.-M Yang;W. P Hoffman

  • Fiber Inclination Model of Three-Dimensional Textile Structural Composites

    Jenn-Ming Yang;Chang-Long Ma;Tsu-Wei Chou

  • The mechanical behavior of GLARE laminates for aircraft structures

    Guocai Wu;J. M. Yang

  • Improving the surface quality and mechanical properties by shot-peening of 17-4 stainless steel fabricated by additive manufacturing

    Bandar AlMangour;Jenn-Ming Yang

  • Tensile properties of ultrahigh strength PAN-based, ultrahigh modulus pitch-based and high ductility pitch-based carbon fibers

    Kimiyoshi Naito;Yoshihisa Tanaka;Jenn-Ming Yang;Yutaka Kagawa

  • Rapid fabrication of bulk-form TiB2/316L stainless steel nanocomposites with novel reinforcement architecture and improved performance by selective laser melting

    Bandar AlMangour;Dariusz Grzesiak;Jenn-Ming Yang

  • Correlation between hardness and elastic moduli of the ultraincompressible transition metal diborides RuB2, OsB2, and ReB2

    Hsiu-Ying Chung;Michelle B. Weinberger;Jenn-Ming Yang;Sarah H. Tolbert

  • Scanning strategies for texture and anisotropy tailoring during selective laser melting of TiC/316L stainless steel nanocomposites

    Bandar AlMangour;Dariusz Grzesiak;Jenn-Ming Yang

  • In-situ formation of novel TiC-particle-reinforced 316L stainless steel bulk-form composites by selective laser melting

    Bandar AlMangour;Bandar AlMangour;Dariusz Grzesiak;Jenn-Ming Yang

  • Densification behavior, microstructural evolution, and mechanical properties of TiC/316L stainless steel nanocomposites fabricated by selective laser melting

    Bandar AlMangour;Dariusz Grzesiak;Tushar Borkar;Jenn-Ming Yang

  • Laser shock peening on fatigue behavior of 2024-T3 Al alloy with fastener holes and stopholes

    J.-M. Yang;Y.C. Her;Nanlin Han;Alan Clauer

  • Biomechanical Evaluation of Osseous Implants Having Different Surface Topographies in Rats

    T. Ogawa;S. Ozawa;J. H. Shih;K. H. Ryu

  • Nanocrystalline TiC-reinforced H13 steel matrix nanocomposites fabricated by selective laser melting ☆

    Bandar AlMangour;Dariusz Grzesiak;Jenn-Ming Yang

  • Elastic stiffness of three-dimensional braided textile structural composites

    Chang-Long Ma;Jenn-Ming Yang;Tsu-Wei Chou

  • Enhanced intrinsic biomechanical properties of osteoblastic mineralized tissue on roughened titanium surface

    Kazuo Takeuchi;Lei Saruwatari;Hiromi K. Nakamura;Jenn‐Ming Yang

  • Microstructural development of a Cf/ZrC composite manufactured by reactive melt infiltration

    Linhua Zou;Natalie Wali;Jenn-Ming Yang;Narottam P. Bansal

  • Selective laser melting of TiB2/316L stainless steel composites: The roles of powder preparation and hot isostatic pressing post-treatment

    Bandar AlMangour;Dariusz Grzesiak;Jenn-Ming Yang

  • Effect of thermal exposure on strength of ZrB2-based composites with nano-sized SiC particles

    Shu-Qi Guo;Jenn-Ming Yang;Hidehiko Tanaka;Yutaka Kagawa;Yutaka Kagawa

  • Mechanical and physical behavior of spark plasma sintered ZrC–ZrB2–SiC composites

    Shu-Qi Guo;Yutaka Kagawa;Yutaka Kagawa;Toshiyuki Nishimura;Dowhan Chung

Frequent Co-Authors

Yutaka Kagawa
Yutaka Kagawa Tokyo University of Technology
Kimiyoshi Naito
Kimiyoshi Naito National Institute for Materials Science
Andrew M. Minor
Andrew M. Minor University of California, Berkeley
H. Thomas Hahn
H. Thomas Hahn University of California, Los Angeles
King-Ning Tu
King-Ning Tu City University of Hong Kong
Sarah H. Tolbert
Sarah H. Tolbert University of California, Los Angeles
Richard B. Kaner
Richard B. Kaner University of California, Los Angeles
Tsu-Wei Chou
Tsu-Wei Chou University of Delaware
Wenyuan Shi
Wenyuan Shi ADA Forsyth Institute
Nasr M. Ghoniem
Nasr M. Ghoniem University of California, Los Angeles

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