1) (μ+λ) evolutionary strategy
(μ+λ)演化策略
2) micron; mu
μ
3) μ-calpain
μ-calpain
1.
Effect of Ischemic Postconditioning on μ-Calpain Expression in Rat Hepatic Tissues;
缺血后处理对再灌注早期肝组织μ-calpain活性的影响
2.
Review on One Component of Calpain System: μ-calpain;
钙蛋白酶组分μ-calpain的研究进展
3.
The analysis of casein zymography revealed that the potential proteolytic activities of μ-calpain differed significantly among individual muscles,while those of m-calpain did not differ.
酪蛋白底物酶原分析表明,不同肌肉的μ-calpain潜在酶活性存在很大差异,而m-calpain潜在酶活性差异不大。
4) μ phase
μ相
1.
The results indicate that μ phase, a harmful phase which makes a sharply decreasing of impact tough ness and ductility of the alloy,precipitates with small amount aging at temperat ure of 750℃ for 1500h.
结果表明 :合金在 75 0℃时效 15 0 0h时析出 μ相 ,冲击性能显著降低 ,不超过 5 0 0h时效则有利于强度和延性的配合 ,75 0℃时效随时效时间延长冲击韧性呈线性降低。
2.
And decreased carbon content leads to the formation of μ phase and causes the alloy embrittlement.
10%时,合金的室温塑性和持久寿命均有很大降低,降低的原因主要是形成晶界膜;合金中的碳降低时,还可以促进μ相形成,导致合金脆化。
5) μ-HPLC
μ-HPLC
6) μTAS
μ-TAS
参考词条
μ-synthesis
μ率
μ-PCD
A/μ律
RBMO(μ)
μ子
Lp(μ)
μ-套
μ值
μ Clinux
μ基
μ+μ-对撞机
μ-堇青石
μ相析出
μ-芳酰基
微管微丝交联因子1
起口横列
补充资料:演化
演变:星体的演化|生物的演化。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。