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In 1991, a young Italian scientist, Walter Fontana , showed mathematically that a linear sequence of function A producing function B producing function C could be very easily circled around and closed in a cybernetic way into a self-generating loop, so that the last function was coproducer of the initial function.

1991年,一个年轻的意大利科学家沃尔特·方塔纳从数学角度阐述了功能A产生功能B,B再产生C这样的线性序列很容易环绕,并以控制论的方式构成自生的闭环,这样最后的功能就参与初始功能的产生。

In 1991, a young Italian scientist, Walter Fontana, showed mathematically that a linear sequence of function A producing function B producing function C could be very easily circled around and closed in a cybernetic way into a self-generating loop, so that the last function was coproducer of the initial function.

1991年,一个年轻的意大利科学家沃尔特丰塔纳从数学角度阐述了功能A产生功能 B ,B再产生C这样的线性序列很容易环绕,并以控制论的方式构成自生的闭环,这样最后的功能就参与初始功能的产生。

In 1991, a young Italian scientist, Walter Fontana , showed mathematically that a linear sequence of function A producing function B producing function C could be very easily circled around and closed in a cybernetic way into a self-generating loop, so that the last function was coproducer of the initial function.

1991年,一个年轻的意大利科学家沃尔特·方塔纳从数学角度阐述了功能A产生功能B,B再产生C这样的线性序列很容易被绕成圈,并以控制论的方式封闭为自生的环,这样最后的功能就成为初始功能的共同生者。

In 1991, a young Italian scientist, Walter Fontana , showed mathematically that a linear sequence of function A producing function B producing function C could be very easily circled around and closed in a cybernetic way into a self-generating loop, so that the last function was coproducer of the initial function.

1991年,年轻的意大利科学家沃尔特·方塔纳从数学角度阐述了功能A产生功能B,B再产生C这样的线性序列很容易被绕成圈,并以控制论的方式封闭为自生的环,这样最后的功能就成为初始功能的共同生者。

According to the electrical diffraction of the conglomeration, the particles are A-zeolite crystals. In the surface of micro-crystal of A-zeolite, the cuboidal nano-crystal A-zeolite grows, so A-zeolite crystal steps can be observed with TEM.

同时,在A型沸石的晶化初期,样品的TEM照片中可见许多团聚体,部分团聚体表现为A型沸石所具有的立方体形态,根据电子衍射测定,构成团聚体的颗粒为大量的纳米晶体。

To provide a non-toxic, zero-residue and effective approach to prevent the parasitical Ascaris suum, the effect of kaempferol-3-a-L-(4-O-acetyl)-rhamnose-7-a-L-rhamnoside,extracted from Cyrtomium yunnanense, on the the animals infected with A. suum was studied.

为猪蛔虫病的防治提供无毒、无残留,对人体无害的高效防治方法,利用云南贯众分离得到的化合物山奈酚-3-a-L-(4-O-乙酰基)鼠李糖基-7-a-L-鼠李糖苷作为试验用药,对感染猪蛔虫的动物进行了药效试验研究。

200IU BTX-A was dissolved in 8ml normal saline, and the solution of BTX-A was injected into 8 different points in urinary sphincter using a flexible cystoscopic needle, with each point of 1ml solution. The effects was evaluated and followed up. Result: One month after injection, the hydronephrosis decreased from 3.9±1.2cm to 1.1±0.8cm and PUV did so from 187±58ml to 54±18ml in all patients.

对逼尿肌-外括约肌协同失调的13例患者,将200IU BTX-A溶解于8ml生理盐水,在膀胱尿道镜下分点注射于外括约肌内;对DESD合并逼尿肌-膀胱颈协同失调的6例患者,将200IU BTX-A溶解于12ml生理盐水,分点注射于膀胱颈及外括约肌内。1个月后复查上述检查指标。

Compared with prozyme A, alkali enzyme was a powerful enzyme for the hydrolysis of corn protein, but it could result deamidation, that was another reason for selecting prozyme A as the first enzyme.

与复合酶A相比,碱性蛋白酶也能较好地作用于黄粉蛋白,但它对酰胺基有较强的水解作用,这是选择复合酶A作为第一次水解用酶的又一个主要原因。

Different kinds of flocculants have different capabilities. The flocculants produced by Aspergillus parasiticus is not steady for heat. The flocculating effect is best at acid conditions, and it is not acute for Ca〓. The flocculant can decolorize soluble dyestuff, even the active gorgeous red X-3B which is difficult to be decolorized, the decolor rate is 62. 1%. The flocculant produced by A-9 is steady for heat. It can flocculate Gaolin suspension well without synergistic effects of CaCl〓, and the dose is only 0.05ml/L. The obvious character of A-9's medium cultured for 3days is very viscosity, and viscosity is a mark for microorganism producing microbial flocculants.

不同的微生物絮凝剂具有不同的性能,寄生曲霉产生的絮凝剂对热不稳定,在酸性条件下絮凝效果好,对Ca〓不敏感,该絮凝剂对可溶性染料具有良好的脱色性能,即使是最难脱色的活性艳红X-3B,脱色率也达到62.1%。A-9产生的絮凝剂对热稳定,絮凝高岭土悬浮液时用量小,仅为0.05ml/L,且不需添加CaCl〓等助凝剂,明显优于其它微生物絮凝剂。A-9菌株培养3天的培养液的明显特征是粘性高,试验发现培养液的粘性与微生物絮凝剂性能有较好的对应关系,因此培养液的粘性可以作为微生物产生絮凝剂的重要标志。

In this thesis, we focus on finding A-optimal and efficient Type-S designs in diallel cross experiments for comparing test lines with a control line under the model of completely randomized designs.

本论文主要研究在完全随机设计的模型下,找出对照与试验处理比较之diallel cross实验的A-最适以及有效率的设计,我们利用A-最适设计和A-效率设计的定义及电脑程式来找出A-最适以及有效率的Type-S 设计。

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Yang yinshu、Wang xiangsheng、Li decang,The first discovery of haemaphysalis conicinna.

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第三章汉藏语&的&字结构的类型划分。