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浅谈精加略模式下的语文教学
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作者 刘洁 《课外语文(下)》 2015年第4期76-76,共1页
在跨越式课堂教学理念的指导下,我把《武陵春》《望江南》这两首诗词采用精加略的教学模式,在相对较短的时间内高效解决了教学内容,培养了学生的诗词欣赏能力,有效地激活了语文课堂。
关键词 精加略 语文教学 高效课堂
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运用“精加略”教学模式打造小学中年级语文高效课
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作者 余土亮 《成功》 2018年第14期237-237,共1页
随着新课程改革的不断推进,为了进一步提高小学语文的教学质量,在教学的过程中尝试运用“精加略”的教学模式来提高小学语文的教学质量。精加略的课堂模式就是把相关的两篇文章(一篇精读、一篇略读)来结合在一起进行教学,这种教学模式... 随着新课程改革的不断推进,为了进一步提高小学语文的教学质量,在教学的过程中尝试运用“精加略”的教学模式来提高小学语文的教学质量。精加略的课堂模式就是把相关的两篇文章(一篇精读、一篇略读)来结合在一起进行教学,这种教学模式能够提高学生的学习兴趣,而且对于小学中年级阶段的学生,老师的教学重点已经由单纯的识字教学转变为对于语文的阅读和写作的训练,注重培养学生对于语文基础素养的进一步运用,在教学过程中强调识字、阅读、写作三位一体的教学。精加略的教学模式在确保学生达到基本教学目标的同时,对于他们进行阅读和写作的训练。这种教学模式需要在较短的时间之内向学生完成大量知识的输入,这说明在一堂课时间内是很难完成的,这就要求老师如何做好两节课的完美融合,对于学生进行一个全方位的教学。 展开更多
关键词 精加略 教学模式 小学中年级 高效课堂
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Fully Integrated Machine Control for Ultra Precision Machining
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《Journal of Mechanics Engineering and Automation》 2013年第8期465-472,共8页
To meet the demands for highly advanced components with ultra precise contour accuracy and optical surface quality arising in the fields of photonics and optics, automotive, medical applications and biotechnology, con... To meet the demands for highly advanced components with ultra precise contour accuracy and optical surface quality arising in the fields of photonics and optics, automotive, medical applications and biotechnology, consumer electronics and renewable energy, more advanced production machines and processes have to be developed. As the complexity of machine tools rises steadily, the automation of manufacture increases rapidly, processes become more integrated and cycle times have to be reduced significantly, challenges of engineering efficient machine tools with respect to these demands expand every day. Especially the manufacture of freeform geometries with non-continuous and asymmetric surfaces requires advanced diamond machining strategies involving highly dynamic axes movements with a high bandwidth and position accuracy. Ultra precision lathes additionally equipped with Slow Tool and Fast Tool systems can be regarded as state-of-the-art machines achieving the objectives of high quality optical components. The mechanical design of such ultra precision machine tools as well as the mechanical integration of additional highly dynamic axes are very well understood today. In contrast to that, neither advanced control strategies for ultra precision machining nor the control integration of additional Fast Tool systems have been sufficiently developed yet. Considering a complex machine setup as a mechatronic system, it becomes obvious that enhancements to further increase the achievable form accuracy and surface quality and at the same time decrease cycle times and error sensitivity can only be accomplished by innovative, integrated control systems. At the Fraunhofer Institute for Production Technology IPT a novel, fully integrated control approach has been developed to overcome the drawbacks of state-of-the-art machine controls for ultra precision processes. Current control systems are often realized as decentralized solutions consisting of various computational hardware components for setpoint generation, machine control, HMI (human machine interface), Slow Tool control and Fast Tool control. While implementing such a distributed control strategy, many disadvantages arise in terms of complex communication interfaces, discontinuous safety structures, synchronization of cycle times and the machining accuracy as a whole. The novel control approach has been developed as a fully integrated machine control including standard CNC (computer numerical control) and PLC (programmable logic controller) functionality, advanced setpoint generation methods, an extended HMI as well as an FPGA (field programmable gate array)-based controller for a voice coil driven Slow Tool and a piezo driven Fast Tool axis. As the new control system has been implemented as a fully integrated platform using digital communication via EtherCAT, a continuous safety strategy could be realized, the error sensitivity and EMC susceptibility could be significantly decreased and the overall process accuracy from setpoint generation over path interpolation to axes movements could be enhanced. The novel control at the same time offers additional possibilities of automation, process integration, online data acquisition and evaluation as well as error compensation methods. 展开更多
关键词 Ultra precision machining fully integrated control highly dynamic axes FPGA EtherCAT.
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