n.[材]微纤维
micrococcus tetragenus genbank───genbank四属微球菌
lastbutnomicro microbiology───微生物学前沿
fastidious microorganism───苛求菌
microscope slides───显微镜载片;显微镜载物片
amphipod airflow microstretch belt───双足气流微蚀刻带
micro pak───微型包装
brass antimicrobial───黄铜抗菌剂
microcosmic o───微观o
microsipmiarnolfo tower───微星塔
Tensile strength is mainly controlled by tracheid length, tracheid strength, microfibril angle and crystalline degree etc.───纹抗拉强度主要受管胞长度、管胞强度、纤丝角度、结晶度等因子的控制。
Genetic variations on tracheid microfibril Angle of 55 Chinese fir clones were investigated.───对55个杉木无性系管胞微纤丝角的遗传变异进行了研究。
The broad sense heritability estimates of clones varied between 0.734 and (0.867), indicating the microfibril angle was under strong genetic control.───广义遗传力变化为0.734~0.867,微纤丝角无性系间的差异受很强的遗传控制;
In the present paper, near infrared (NIR) spectroscopy and X-ray diffractometry were used to rapidly predict the microfibril angle (MFA).───利用近红外光谱和x射线衍射法对木材的微纤丝角进行了快速预测。
The results revealed that microfibril angle had a highly significant difference (among) clones.───结果表明,管胞微纤丝角在无性系间差异极显著;
the other way round, fiber width and microfibril angle have polygene effects of quantitative traits.───纤维宽与微纤丝角表现出较为典型的微效多基因控制的数量性状遗传特点;
The microfibril spiral angle increased in the upper level fruit branches and the outer fruit nodes.───微原纤螺旋角随果枝位变化自下而上略有增加,随果节位变化由里向外略有增加;
Genetic variations on tracheid microfibril angle of 55 Chinese fir clones were investigated.───对55个杉木无性系管胞微纤丝角的遗传变异进行了研究。
a final layer (6) which is also made by hygroscopicity material based on microfibril and acts as a final moisture gathering layer.───最终层(6),也由基于微纤维的吸湿性材料制成,充当最终的水分汇集层。
Genetic variations on tracheid microfibril angle of 55 Chinese fir clones were investigated.
- research reactor">chip───最后一片玉米片
frontiers in microbiology───微生物学前沿
fastidious microorganism───苛求菌
microscope slides───显微镜载片;显微镜载物片
amphipod airflow microstretch belt───双足气流微蚀刻带
micro pak───微型包装
brass antimicrobial───黄铜抗菌剂
microcosmic o───微观o
microsipmiarnolfo tower───微星塔
Tensile strength is mainly controlled by tracheid length, tracheid strength, microfibril angle and crystalline degree etc.───纹抗拉强度主要受管胞长度、管胞强度、纤丝角度、结晶度等因子的控制。
Genetic variations on tracheid microfibril Angle of 55 Chinese fir clones were investigated.───对55个杉木无性系管胞微纤丝角的遗传变异进行了研究。
The broad sense heritability estimates of clones varied between 0.734 and (0.867), indicating the microfibril angle was under strong genetic control.───广义遗传力变化为0.734~0.867,微纤丝角无性系间的差异受很强的遗传控制;
In the present paper, near infrared (NIR) spectroscopy and X-ray diffractometry were used to rapidly predict the microfibril angle (MFA).───利用近红外光谱和x射线衍射法对木材的微纤丝角进行了快速预测。
The results revealed that microfibril angle had a highly significant difference (among) clones.───结果表明,管胞微纤丝角在无性系间差异极显著;
the other way round, fiber width and microfibril angle have polygene effects of quantitative traits.───纤维宽与微纤丝角表现出较为典型的微效多基因控制的数量性状遗传特点;
The microfibril spiral angle increased in the upper level fruit branches and the outer fruit nodes.───微原纤螺旋角随果枝位变化自下而上略有增加,随果节位变化由里向外略有增加;
Genetic variations on tracheid microfibril angle of 55 Chinese fir clones were investigated.───对55个杉木无性系管胞微纤丝角的遗传变异进行了研究。
a final layer (6) which is also made by hygroscopicity material based on microfibril and acts as a final moisture gathering layer.───最终层(6),也由基于微纤维的吸湿性材料制成,充当最终的水分汇集层。
Genetic variations on tracheid microfibril angle of 55 Chinese fir clones were investigated.
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