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Online since: June 2020
Authors: Qing Bao Liu, Zhi You Hu, Xiang Jun Liu, Chang Qiao Yang
Material and Experiment
The test raw materials are industrial pure iron, chromium nitride, manganese nitride, manganese metal, low carbon ferromanganese, low carbon ferrochrome, metallic nickel, etc.
Materials Science & Engineering A, 2001, 311(1-2): 205-210
Materials Science & Engineering A, 2016, 662: 432-442
Journal of Harbin Engineering University, 2015, 36(2): 276-281.
Materials Review, 2015, 29(14): 107-110.
Materials Science & Engineering A, 2001, 311(1-2): 205-210
Materials Science & Engineering A, 2016, 662: 432-442
Journal of Harbin Engineering University, 2015, 36(2): 276-281.
Materials Review, 2015, 29(14): 107-110.
Online since: August 2019
Authors: Hideki Nakajima, Sarayut Tunmee, Darminto Darminto, Diajeng Indraswary Pamungkas, Mukarromah Mukarromah, Budhi Priyanto
By using amorphous carbon we can produce semiconductor material.
Absorbance is the amount of light that absorbed by material.
The more sp2 bonds concentrations of, the greater the electrical conductivity of the material because sp2 bonds are easier to conduct electricity than sp3 bonds. sp2 bonds play a role in the electrical properties of materials while sp3 bonds play a role in mechanical or material hardness.
King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia. (2011)
The Journal of Physical Chemistry C, 111 (2007) 9891-9896
Absorbance is the amount of light that absorbed by material.
The more sp2 bonds concentrations of, the greater the electrical conductivity of the material because sp2 bonds are easier to conduct electricity than sp3 bonds. sp2 bonds play a role in the electrical properties of materials while sp3 bonds play a role in mechanical or material hardness.
King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia. (2011)
The Journal of Physical Chemistry C, 111 (2007) 9891-9896
Online since: September 2011
Authors: Xin Long Jiao
(See Table 1)
Table1 Comprehensive Evaluation Index System of Port urban Logistics competitiveness
Object Hierarchy
Rule Hierarchy (Main Factors)
Index Hierarchy (Sub-Factors)
Weight
Comprehensive
Evaluation
of
Port urban Logistics Performance
u
Hardware Level u1(1)
ω1=0.3239
Cargo throughput u11(2)
Container throughput u12(2)
Deep water berth number u13(2)
Berth throughput u14(2)
Quantity of port urban fixed asset u15(2)
Number of employees u16(2)
0.1972
0.1598
0.2362
0.1953
0.1131
0.0984
Operation and Management Level u2(1)
ω2=0.4376
Warehouse cost u21(2)
Material handling cost u22(2)
Yard collecting and dispatching u23(2)
Yard capacity turnover u24(2)
Handling machinery carrying capacity u25(2)
Level of port urban information u26(2)
Cargo throughput growth rate u27(2)
Container throughput growth rate u28(2)
0.0938
0.0727
0.2013
0.0895
0.1296
0.1561
0.1373
0.1197
Customer Satisfaction u3(1)
ω3=0.2385
Clear pricing u31(
Deep-water berth number u13=0.9, cargo throughput growth rate u27=0.9 and container throughput growth rate u28=0.9 which all are highest, the material shows that cargo throughput and container throughput of Shanghai has been keeping the biggest rate of increase amplitude for years [12].
Journal of Southwest Jiaotong University (Social Sciences), 2007,(4):15-16
Chinese Journal of Ergonomics. 2007,(2):19
Journal of Safety and Environment, 2004,4(2):54-56
Deep-water berth number u13=0.9, cargo throughput growth rate u27=0.9 and container throughput growth rate u28=0.9 which all are highest, the material shows that cargo throughput and container throughput of Shanghai has been keeping the biggest rate of increase amplitude for years [12].
Journal of Southwest Jiaotong University (Social Sciences), 2007,(4):15-16
Chinese Journal of Ergonomics. 2007,(2):19
Journal of Safety and Environment, 2004,4(2):54-56
Online since: November 2012
Authors: Jiang Sun, Qi Xiao
For instance, we have had two provincial excellent courses “Machine Design” and “Test Technology”, one school excellent course “Engineering Materials” and we will refine some other courses, such as “Mechanical Manufacturing”, “Mechanical Graphing”, “Mechanical CAD/CAM”, “Numerical Control Processing” and “Modern Mechanical Design Method”, into excellent courses.
From those practical materials, student further refined some students’ research projects.
Alasair: Problem-based Learning Initial Teacher Education, Journal of Educational Enquiry, 2002(1), p. 60-78
Ma: innovation Ability Education from Mechanism Curriculum Design, Journal of Sandong Education College, Vol. 4 (2006), p. 23-25
Fang: Discussion on Mechanism Practical Teaching Reform for Educating Students’ Innovation Ability, Journal of North Jiaotong University (Social Edition), Vol. 2 (2003), p.63-66
From those practical materials, student further refined some students’ research projects.
Alasair: Problem-based Learning Initial Teacher Education, Journal of Educational Enquiry, 2002(1), p. 60-78
Ma: innovation Ability Education from Mechanism Curriculum Design, Journal of Sandong Education College, Vol. 4 (2006), p. 23-25
Fang: Discussion on Mechanism Practical Teaching Reform for Educating Students’ Innovation Ability, Journal of North Jiaotong University (Social Edition), Vol. 2 (2003), p.63-66
Online since: May 2011
Authors: Zhi Yong Zhang, He Gao
From the viewpoint of the military, the daily life and material support of the frontier guards, the storage of the frontiers forces personnel, equipment and materials, transportation and training scheduling, emergency rescue and disaster relief, armed conflicts and combat terrorism will generate traffic demands.
[2] Qiang Zheng: Shanxi Science & Technology of Communications.
[3] Wei Liu, Shunying Zhu, Jianxu Zhang: Journal of Chongqing Jiaotong University.
(In Chinese) [5] Liege Hu, Liqin Cheng: Journal of Railway Science and Engineering.
(In Chinese) [6] Liang Xuanyu: Hunan Communication Science and Technology.
[2] Qiang Zheng: Shanxi Science & Technology of Communications.
[3] Wei Liu, Shunying Zhu, Jianxu Zhang: Journal of Chongqing Jiaotong University.
(In Chinese) [5] Liege Hu, Liqin Cheng: Journal of Railway Science and Engineering.
(In Chinese) [6] Liang Xuanyu: Hunan Communication Science and Technology.
Online since: April 2017
Authors: Gbeminiyi M. Sobamowo, Bayo Y. Ogunmola, Gaius Nzebuka
Chen .A decomposition method for solving the convectice longitudinal fins with variable thermal conductivity, International Journal of Heat and Mass Transfer 45(2002), 2067-2075
Communication in Nonlinear Science and Numerical Simulation 14(2009), 489-499
Comparison of homotopy analysis method and homotopy-permutation method for purely nonlinear fin-type problems, Communications in Nonlinear Science and Numerical Simulation ,14(2009), 371-378
International Journal of Nonlinear Science, 14(2012), 2, 201-210
Investigation of effect thermal conductivity on straight fin performance with DTM, International Journal of Engineering and Applied Sciences (IJEAS), 1(2011), 42 -54 [25] S.
Communication in Nonlinear Science and Numerical Simulation 14(2009), 489-499
Comparison of homotopy analysis method and homotopy-permutation method for purely nonlinear fin-type problems, Communications in Nonlinear Science and Numerical Simulation ,14(2009), 371-378
International Journal of Nonlinear Science, 14(2012), 2, 201-210
Investigation of effect thermal conductivity on straight fin performance with DTM, International Journal of Engineering and Applied Sciences (IJEAS), 1(2011), 42 -54 [25] S.
Online since: September 2012
Authors: Pin Jiang Li, Li Juan Sun, Xin Bing Zhu, Yan Ge Zhang, Zhen Hua Zhang, Li Bo Fan, Peng Wang
China
3 Institute of Chemistry and Chemical Engineering, Xuchang University, Xuchang 461000, China.
4 School of Physical Engineering, Zhengzhou University, No. 100 of Science Road, Zhengzhou, 450001, China.
1College of Electrical and Information Engineering, Xuchang University, Xuchang 461000, China.
2Institute of Surface Micro and Nano Materials, Xuchang University, Xuchang 461000, China.
This result is different from our former works in which inorganic and organic hybrid materials could be obtained. [16-18] Fig. 2.
Combining the two materials into one solar cell, we made the device of Al/P3HT:PbS/CdS/PEDOT:PSS/ITO/Glass, which has a FF of 0.360.26.
Herna´ ndez-Borja, Y.V.Vorobiev n, R.Ramı´rez-Bon, Solar Energy Materials & Solar Cells, Vol. 95 (2011), P.1882 [9] I.
Halliday, Journal of Crystal Growth Vol. 197 (1999), P. 733 [11] N.
This result is different from our former works in which inorganic and organic hybrid materials could be obtained. [16-18] Fig. 2.
Combining the two materials into one solar cell, we made the device of Al/P3HT:PbS/CdS/PEDOT:PSS/ITO/Glass, which has a FF of 0.360.26.
Herna´ ndez-Borja, Y.V.Vorobiev n, R.Ramı´rez-Bon, Solar Energy Materials & Solar Cells, Vol. 95 (2011), P.1882 [9] I.
Halliday, Journal of Crystal Growth Vol. 197 (1999), P. 733 [11] N.
Online since: July 2014
Authors: Yun Hui Yang
In 1996, China's National Natural Science Foundation formally included the "green building system research" as the key funding issues of the "Ninth Five-Year" plan.
China’s green building certification system takes much more reference of the LEED certification system, which is much similar to LEED, evaluates and certifies building environmental performance with a variety of prerequisites in six categories of land savings and outdoor environment, energy savings, water savings, materials savings, indoor environmental quality, operations and management.
Contractors establish indoor air quality control measures during construction and follow detailed specifications to meet sustainable the characteristics of “green” materials requirements.17 As of May, 2008, there were 41 state-level policies and incentives for green building enacted in 23 states and 141 local level incentives enacted in 32 states (USGBC, 2008c).
China’s green building rating system tends to focus on simpler and cheaper solutions for energy efficiency less on advanced technology, while LEED has a much stronger preference for high tech solutions and materials.
[28] Li Tao, Liu Conghong, Comparison study of LEED and Green Building Evaluation Standard framework, Architectural Journal, Mar, 2011
China’s green building certification system takes much more reference of the LEED certification system, which is much similar to LEED, evaluates and certifies building environmental performance with a variety of prerequisites in six categories of land savings and outdoor environment, energy savings, water savings, materials savings, indoor environmental quality, operations and management.
Contractors establish indoor air quality control measures during construction and follow detailed specifications to meet sustainable the characteristics of “green” materials requirements.17 As of May, 2008, there were 41 state-level policies and incentives for green building enacted in 23 states and 141 local level incentives enacted in 32 states (USGBC, 2008c).
China’s green building rating system tends to focus on simpler and cheaper solutions for energy efficiency less on advanced technology, while LEED has a much stronger preference for high tech solutions and materials.
[28] Li Tao, Liu Conghong, Comparison study of LEED and Green Building Evaluation Standard framework, Architectural Journal, Mar, 2011
Online since: January 2022
Authors: Dmitry Utkin
Such materials, according to numerous studies, include fiber-reinforced concrete and composite materials [4 ... 10].
Materials with increased plastic properties in the elastic-plastic and plastic stages of operation have a significant advantage in the perception of dynamic loads.
An analytical description of the values of the dynamic hardening coefficients for materials is obtained on the basis of logarithmic dependences of Professors Yu.
Further, the stresses in each of these materials are calculated based on certain values of deformations.
Scientific and technical journal « Earthquake-resistant construction.
Materials with increased plastic properties in the elastic-plastic and plastic stages of operation have a significant advantage in the perception of dynamic loads.
An analytical description of the values of the dynamic hardening coefficients for materials is obtained on the basis of logarithmic dependences of Professors Yu.
Further, the stresses in each of these materials are calculated based on certain values of deformations.
Scientific and technical journal « Earthquake-resistant construction.