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151.
职业生涯中期,是个人生命运行中任务最重,压力最大,也是最能取得事业成功的时期.由于身心特征发生很大变化,职业--家庭--自我事务之间关系难于平衡,往往会出现职业生涯的危机,因此,必须采取得力措施加以应对,才能走出困境,实现自己的职业目标.  相似文献   
152.
偶联剂修饰纳米磁性粒子红外光谱及相关分析   总被引:9,自引:0,他引:9  
以三氯化铁水溶液作前驱体,采用部分还原沉淀法,通过控制一些影响反应的参数,制备纳米磁性粒子(magnetic nanoparticles,MNes),并分别用Z-6020,Z-6030和Z-6040硅烷偶联剂对其进行表面修饰.利用红外光谱、古埃磁天平、可见光分光光度计等手段,对MNPs的表面包覆官能团、磁化率、稳定性等进行表征.红外光谱分析表明,选用不同的偶联剂修饰MNPs,可以在其表面包覆各种活性的有机基团,除都含有大量-OH之外,用Z-6020修饰的MNPs还含有-NH2和-NH;用Z-6030修饰的,还含有-C-O和-C-C;用Z-6040修饰的,还含有-C-O,-C-O-C和-C-OH.同时,用Z-6020修饰的MNPs磁化率最高,稳定性较差;用Z-6040的,磁化率次之,稳定性最好;用Z-6030的,磁化率最低,稳定性最差.  相似文献   
153.
Summary Indoxyl derivatives were detected as minor products among the urinary metabolites of two trial drugs, a benzodiazepine (GP 55 129) and a benzophenone (CGP 11 952). Their structures were elucidated by NMR and mass spectroscopy. Presumably, metabolites containing potential aldehyde functions react spontaneously with endogenous indoxyl. Such derivatives have not hitherto been encountered in drug metabolism.  相似文献   
154.
The melatonin rhythm: both a clock and a calendar   总被引:24,自引:0,他引:24  
The paper briefly reviews the data which shows that the circadian production and secretion of melatonin by the pineal gland can impart both daily, i.e., clock, and seasonal, i.e., calendar, information to the organism. The paper summarizes the 3 patterns of nocturnal melatonin production that have been described. Clearly, regardless of the pattern of nocturnal melatonin production a particular species normally displays, the duration of nightime elevated melatonin is proportional to the duration of the night length. Since daylength under natural conditions changes daily the melatonin rhythm, which adjusts to the photoperiod sends time of year information to the organism. The melatonin receptors which subserve the clock message sent by the pineal gland in the form of a melatonin cycle may reside in the biological clock itself, namely, the suprachiasmatic nuclei (SCN). The melatonin receptors that mediate seasonal changes in reproductive physiology are presumably those that are located on the pars tuberalis cells of the anterior pituitary gland. Besides these receptors which likely mediate clock and calendar information, melatonin receptors have been described in other organs. Interestingly, the distribution of melatonin receptors is highly species-specific. Whereas the clock and calendar information that the melatonin cycle imparts to the organism relies on cell membrane receptors, a fact that is of some interest considering the high lipophilicity of melatonin, recent studies indicate that other functions of melatonin may require no receptor whatsoever.  相似文献   
155.
高职思想品德课的现代案例教学的效果显现化,可以帮助和指导学生思想品德的发展。对思想品德课效果显现化的内容应包括认知目标、情感目标、心因目标,其显现化的手段已不能用简单、传统的“考试”来测评,而应考虑用一些更综合的方式进行。  相似文献   
156.
提出动力学系统守恒定律构成的一般途径 .根据微分方程积分因子的定义研究守恒量存在的必要条件 .建立了Poincar啨 -Chetaev方程的守恒定理及其逆定理 ,并举例说明结果的应用  相似文献   
157.
论述了随着经济的发展,会计信息化在冲击传统会计和会计电算化的同时。也面临着经济环境等因素的制约和影响,只有加强内部控制制度的建设,加强人才的培养,加强财务软件的开发,才能加快会计信息化发展的步伐。  相似文献   
158.
制备泡沫铝的一种新方法:烧结溶解法   总被引:15,自引:0,他引:15  
烧结溶解法是近几年发展起来的一种制造泡沫铝的新工艺,具有可以精确控制孔洞形状,尺寸和孔隙率及其分布等特点,具有较好的质量价格综合指数,是生产均匀或梯度微细开孔中密度泡沫铝的有效方法,所制泡沫铝在吸能,吸音等领域有广泛的应用前景。本文简要介绍烧结溶解法的原理与工艺,所制泡沫铝的组织特征与机械性能,并讨论与其它各类现有方法相比所具有的优势与局限。  相似文献   
159.
A detailed record of sea level changes during the last 2500 years is preserved in the northernwest coast of Fildes Peninsula in Antarctica. Fourteen marine alga layers were deposited in the beach with an altitude of 2.80 m, and one diatom layer deposited in the ancient lake on the terrace with an altitude of 6.84 m. A radiocarbon age of 695±70 aBP was obtained for the modern marine alga, and the age was used in correction for the carbon reservoir effect of the marine alga. Sea level fell 4.98 m from the 4th century B.C. to the early 13th century, at an average of -0.31 cm/a, then rose about 0.78 m during the early 13th to the middle 18th century, at an average of 0.14 cm/a. It has risen about 0.16 m since the middle 18th century, at an average of 0.07 cm/a.  相似文献   
160.
In the 1687 Principia, Newton gave a solution to the direct problem (given the orbit and center of force, find the central force) for a conic-section with a focal center of force (answer: a reciprocal square force) and for a spiral orbit with a polar center of force (answer: a reciprocal cube force). He did not, however, give solutions for the two corresponding inverse problems (given the force and center of force, find the orbit). He gave a cryptic solution to the inverse problem of a reciprocal cube force, but offered no solution for the reciprocal square force. Some take this omission as an indication that Newton could not solve the reciprocal square, for, they ask, why else would he not select this important problem? Others claim that ``it is child's play' for him, as evidenced by his 1671 catalogue of quadratures (tables of integrals). The answer to that question is obscured for all who attempt to work through Newton's published solution of the reciprocal cube force because it is done in the synthetic geometric style of the 1687 Principia rather than in the analytic algebraic style that Newton employed until 1671. In response to a request from David Gregory in 1694, however, Newton produced an analytic version of the body of the proof, but one which still had a geometric conclusion. Newton's charge is to find both ``the orbit' and ``the time in orbit.' In the determination of the dependence of the time on orbital position, t(r), Newton evaluated an integral of the form ∫dx/x n to calculate a finite algebraic equation for the area swept out as a function of the radius, but he did not write out the analytic expression for time t = t(r), even though he knew that the time t is proportional to that area. In the determination of the orbit, θ (r), Newton obtained an integral of the form ∫dx/√(1−x2) for the area that is proportional to the angle θ, an integral he had shown in his 1669 On Analysis by Infinite Equations to be equal to the arcsin(x). Since the solution must therefore contain a transcendental function, he knew that a finite algebraic solution for θ=θ(r) did not exist for ``the orbit' as it had for ``the time in orbit.' In contrast to these two solutions for the inverse cube force, however, it is not possible in the inverse square solution to generate a finite algebraic expression for either ``the orbit' or ``the time in orbit.' In fact, in Lemma 28, Newton offers a demonstration that the area of an ellipse cannot be given by a finite equation. I claim that the limitation of Lemma 28 forces Newton to reject the inverse square force as an example and to choose instead the reciprocal cube force as his example in Proposition 41. (Received August 14, 2002) Published online March 26, 2003 Communicated by G. Smith  相似文献   
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