TN386.5 2001032015线阵CCD光积分时间的外部信号新型控制技术及其应用=Advanced external signal control technologyof CCD integral time and its application[刊,中]/王贵甫,陈桂林,陈雨良(中科院上海技物所.上海(200083))∥半导体...TN386.5 2001032015线阵CCD光积分时间的外部信号新型控制技术及其应用=Advanced external signal control technologyof CCD integral time and its application[刊,中]/王贵甫,陈桂林,陈雨良(中科院上海技物所.上海(200083))∥半导体技术.-2000,25(6).-51-53,56介绍了一种线阵CCD新型驱动电路及设计方法。展开更多
Individuals with higher intelligence are found to be able to concentrate their attention more effectively and have stronger memory than the average ones do. However, a puzzle haunting scientists is: how the brain'...Individuals with higher intelligence are found to be able to concentrate their attention more effectively and have stronger memory than the average ones do. However, a puzzle haunting scientists is: how the brain's neural activity can support or sustain them to perform these cognitive tasks? A study conducted by researchers with the CAS Institute of Psychology may add new dimensions to the understanding of the mechanism underlying the course to process auditory signals in intellectually gifted children. Their work has been published in a recent issue of Neuro-science.展开更多
文摘TN386.5 2001032015线阵CCD光积分时间的外部信号新型控制技术及其应用=Advanced external signal control technologyof CCD integral time and its application[刊,中]/王贵甫,陈桂林,陈雨良(中科院上海技物所.上海(200083))∥半导体技术.-2000,25(6).-51-53,56介绍了一种线阵CCD新型驱动电路及设计方法。
文摘Individuals with higher intelligence are found to be able to concentrate their attention more effectively and have stronger memory than the average ones do. However, a puzzle haunting scientists is: how the brain's neural activity can support or sustain them to perform these cognitive tasks? A study conducted by researchers with the CAS Institute of Psychology may add new dimensions to the understanding of the mechanism underlying the course to process auditory signals in intellectually gifted children. Their work has been published in a recent issue of Neuro-science.