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引导学生由“程序化水平”迈向“结构化水平”——以“三位数除以一位数”为例
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作者 嵇宪长 《小学教学参考(数学版)》 2015年第2期13-13,共1页
“程序化水平”是指学生按顺序熟练地处理数学问题的能力,“结构化水平”是指学生按原理灵活地处理数学问题的能力.以“三位数除以一位数”教学内容为例分析了引导学生由“程序化水平”升华为“结构化水平”的基本路径.
关键词 程序化水平 结构化水平 算理 算法
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Single cell sequencing: technique, application,and future development 被引量:5
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作者 薛瑞栋 李若岩 白凡 《Science Bulletin》 SCIE EI CAS CSCD 2015年第1期33-42,共10页
The progression of next generation sequencing is continuously changing the landscape of genomic, tran- scriptomic, and epigenomic studies. Particularly, advances in single cell manipulation and amplification technique... The progression of next generation sequencing is continuously changing the landscape of genomic, tran- scriptomic, and epigenomic studies. Particularly, advances in single cell manipulation and amplification techniques bring sequencing technology to the single-cell level. Single cell genome sequencing allows us to study tumor evolu- tion, gamete genesis, somatic mosaicism at genome-wide level; single cell transcriptome sequencing unveils the dynamic gene expression during early embryonic devel- opment, differentiation and reprogramming; single cell methylome sequencing is just taking off and shows great potential in cancer and stem cell studies. Lots of attempts are still being made in other dimensions of sequencing. The increasing need for single cell sequencing requires the future techniques with the following features: (1) high accuracy and fidelity; (2) able to perform multiple omics analyses in one cell; (3) high degree of automation and standardized pipeline. These progresses and improvements will lower the barrier for single cell sequencing to enter ordinary laboratories. The wide application of single cell sequencing techniques will substantially change biomedi- cal research in future. 展开更多
关键词 Single cell isolation Geneticheterogeneity Single cell genome sequencing Single cell transcriptome sequencing Single cellmethylome sequencing
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