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查看斯高帕斯 (Scopus) 概要
鍾 志昂
教授
機械工程學系
電子郵件
cachung
cc.ncu.edu
tw
網站
https://www.me.ncu.edu.tw/Faculty/faculty-more.php?id=36
h-index
1088
引文
16
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1999
2024
每年研究成果
概覽
指紋
網路
研究計畫
(10)
研究成果
(45)
類似的個人檔案
(5)
指紋
查看啟用 Chih-Ang Chung 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
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按字母排序
Keyphrases
Binary Alloy
22%
Bioreactor
32%
Boyden Chamber
37%
Boyden Chamber Assay
27%
Canister
29%
Cartilage Tissue Engineering
47%
Cell Diffusion
33%
Cell Growth
93%
Cell Migration
32%
Cell Motility
20%
Cell Scaffold
28%
Cell Sedimentation
29%
Chondrocytes
77%
Collagen
33%
Cone-and-plate
37%
Construct Development
20%
Convection
70%
Dehydriding
25%
Directional Solidification
42%
Flow Effect
22%
Haptotaxis
23%
Heat pipe
29%
Heat Transfer Enhancement
22%
Hydrides
37%
Hydrostatic Pressure
37%
Induced Flow
44%
Instability Mode
21%
Linear Stability Analysis
28%
Metal Hydride Hydrogen Storage
29%
Mitomycin C
29%
Morphological Instability
37%
Mullins-Sekerka
29%
Multipotent Cells
22%
Mush
55%
Mushy Layer
35%
Oxygen Concentration
22%
Perfusion
22%
Placenta
22%
Plume
23%
Precession
25%
Puddling
22%
Random Walk
27%
Shear Stress
31%
Subharmonic Modes
29%
Time-periodic
22%
Tissue Engineering
39%
Tissue Engineering Construct
37%
Tissue Scaffolds
29%
Type II Collagen
34%
Urothelial Carcinoma Cell
29%
Engineering
Applied Pressure
19%
Binary Alloy
29%
Binary Solution
37%
Bioreactor
37%
Boundary Layer
19%
Cartilage Tissue Engineering
19%
Casting Process
14%
Cell Number
16%
Cell Volume
14%
Computational Fluid Dynamics
19%
Concentration Ratio
14%
Conservation of Mass
18%
Culture Condition
14%
Direction Perpendicular
21%
Directional Solidification
44%
Dissociation Constant
14%
Engineered Cartilage
29%
Engineering Application
15%
Filter Surface
14%
Glucose Concentration
22%
Growth Kinetics
18%
Heat Pipes
29%
Hydride Tank
22%
Hydrogen Absorption
14%
Hydrogen Charge
14%
Hydrogen Gas
17%
Hydrogen Storage
51%
Hydrogenation
22%
Induced Velocity
24%
Instability Mode
42%
Layer Model
14%
Linear Stability Analysis
42%
Liquid Metal
17%
Longitudinal Mode
21%
Mathematical Model
52%
Microfluidic Platform
14%
Morphological Instability
37%
Nanoparticle
14%
Nonlinear Analysis
14%
Number Density
14%
Oxygen Concentration
25%
Parallel Flow
19%
Perfusion Culture
14%
Periodic Time
33%
Porous Scaffold
23%
Shear Flow
27%
Simulation Result
19%
Thermal Fluid
18%
Thermal Gradient
22%
Tissue Regeneration
100%