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张某是中国改革开放后从美国获得MBA学位者之一。完成学业回国后,他被一家国有企业聘用,并被安排在重要的领导职位上。进入工作岗位不久,张某就发现,该企业在运营过程中存在许多问题。例如,经营缺乏主动性,市场经济意识不强,对政府主管部门有较强的依赖性;管理方法落后,人浮于事,经济效益低下,等等。针对企业的现状,张某首先对企业进行了调查研究。在此基础上,他不计个人得失,坚持不懈地对企业进行了多年的改革,使企业的面貌焕然一新。张某也因此受到上级主管部门和本企业干部群众的好评。十多年来,张某凭着高度的事业心和责任感,以科学的理论为指导,尤其是适应市场经济的要求实施战略管理;以其理智、随机应变和敏捷的思维,勇于探索,不断开创发展新局面。企业职工一致认为,在战略制胜的时代,惟有张某这样的企业战略家,才能把企业带向成功之路。问题:通过以上案例背景资料,指出张某已具备了企业战略家的哪些基本素质。

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正确答案:

1、能力方面:思想敏捷,视野开阔,机智而又能随机应变,表现出超群的能力。

2、品德方面:事业心、责任感,不满足现状,不计个人得失,勇于探索,表现出高尚的品德素质。

3、知识方面:理论功底扎实,知识面宽,知识渊博,能运用理论指导实践。

4、个性方面:取于坚持个人观点,从科学的态度对待问题,表现出优异的个人素质。

答案解析:

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1 There's a dimmer switch inside the sun that causes its brightness to rise and fall on timescales of around 100,000 years - exactly the same period as between ice ages on Earth. So says a physicist who has created a computer model of our star's core. 2 Robert Ehrlich of George Mason University in Fairfax, Virginia, modelled the effect of temperature fluctuations in the sun's interior. According to the standard view, the temperature of the sun's core is held constant by the opposing pressures of gravity and nuclear fusion. However, Ehrlich believed that slight variations should be possible. 3 He took as his starting point the work of Attila Grandpierre of the Konkoly Observatory of the Hungarian Academy of Sciences. In 2005, Grandpierre and a collaborator, Gábor ágoston, calculated that magnetic fields in the sun's core could produce small instabilities in the solar plasma. These instabilities would induce localised oscillations in temperature. 4 Ehrlich's model shows that whilst most of these oscillations cancel each other out, some reinforce one another and become long-lived temperature variations. The favoured frequencies allow the sun's core temperature to oscillate around its average temperature of 13.6 million kelvin in cycles lasting either 100,000 or 41,000 years. Ehrlich says that random interactions within the sun's magnetic field could flip the fluctuations from one cycle length to the other. 5 These two timescales are instantly recognisable to anyone familiar with Earth's ice ages: for the past million years, ice ages have occurred roughly every 100,000 years. Before that, they occurred roughly every 41,000 years. 6 Most scientists believe that the ice ages are the result of subtle changes in Earth's orbit, known as the Milankovitch cycles. One such cycle describes the way Earth's orbit gradually changes shape from a circle to a slight ellipse and back again roughly every 100,000 years. The theory says this alters the amount of solar radiation that Earth receives, triggering the ice ages. However, a persistent problem with this theory has been its inability to explain why the ice ages changed frequency a million years ago. 7 "In Milankovitch, there is certainly no good idea why the frequency should change from one to another," says Neil Edwards, a climatologist at the Open University in Milton Keynes, UK. Nor is the transition problem the only one the Milankovitch theory faces. Ehrlich and other critics claim that the temperature variations caused by Milankovitch cycles are simply not big enough to drive ice ages. 8 However, Edwards believes the small changes in solar heating produced by Milankovitch cycles are then amplified by feedback mechanisms on Earth. 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