1.
COMPUTER SIMULATIAN OF FLUX PINNING IN THE HIGH TEMPERATURE SUPERCONDUCTORS YBCO

高T_c超导体YBCO磁通钉扎的计算机模拟研究
2.
Study on the Mechanical Relaxation Pears in High-TC Superconductor;

高T_C超导体的力学耗散峰的机理研究
3.
Study on Flux Pinning in the High Critical Temperature Superconductors Y System and Bi System
高T_C超导体Y系和Bi系的磁通钉扎研究
4.
Measuring the properties of high-T_c super conductors using self-made device

实用的高T_c超导特性测试仪的研制
5.
λ、θ_D each other separation in the high T_c superconductivity

高T_c超导电性中λ与θ_D的相互分离
6.
polymer semiconductors, conductors and superconductors

高聚物半导体、导体、超导体
7.
Study on Quench Protection of High Temperature SMES Magnet in Power Network

电网用高温超导储能磁体的失超保护研究
8.
Electromagnetic Design Research on HTS Magnets by Bi-2223/Ag Tape;

Bi系高温超导磁体的电磁设计研究
9.
Application of the ARPES on the High-temperature Cuprate Superconductors;

ARPES在铜氧化物高温超导体中的应用
10.
Superconductor YBa_2Cu_3O_7 -δ preparation in air atmosphere;

空气气氛高温超导体YBa_2Cu_3O_(7-δ)的制备
11.
SCALING BEHAVIOR OF ANOMALOUS Hall EFFECT IN THE HIGH TEMPERATURE SUPERCONDUCTROS

高温超导体反常霍尔效应的标度行为
12.
The optimal design of 300MJ HTS superconducting magnetic energy storage system

300MJ环状高温超导储能磁体的优化设计
13.
Electromagnetic and Thermal Analysis on Conduction-cooled High Temperature Superconducting Energy Storage Magnet;
传导冷却高温超导储能磁体的电磁热综合分析
14.
DESIGN OF CRYOSTAT FOR CONDUCTION-COOLED HIGH TEMPERATURE SUPERCONDUCTING MAGNET IN MAGNETIC SEPARATION SYSTEM
传导冷却磁分离用高温超导磁体的杜瓦设计
15.
Multiple superconducting gaps and anisotropic spin fluctuations in iron-pnictides revealed by nuclear magnetic resonance
铁基高温超导体的超导能隙和自旋涨落:核磁共振研究
16.
Study on the Characteristics of Magnetic Relaxation in High Tc Superconductivity YBCO and the Characteristics of Lower Temperature Liquid HeII;
高Tc超导体YBCO磁弛豫及低温液体HeII特性研究
17.
~(99m)Tc DTPA dnamic imaging for analysis of renal function of live donors

~(99m)T_C-DTPA肾动态显像对活体供肾者余肾功能的监测意义
18.
Unlike the low temperature superconductors, heat accumulation in a specific volume is more likely the main cause of quenches for the high temperature superconductive (HTS) coils.
不同于低温超导体,在高温超导线圈中,一定体积内的热积累是造成失超的较主要原因。