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高中“地理+生物学”学科融合教学设计探析——以“植被”一节为例
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作者 孙谈柱 苗纪春 《新课程教学(电子版)》 2024年第9期42-44,共3页
新时代教育要求学生能将所学的各学科知识合理吸收、内化并融会贯通地进行应用。高中地理学科与生物学学科在学科概念、学科理念、研究对象及课程教学内容上有多个契合点,探究“地理+生物学”的学科融合教学,完全符合学科融合的教育理念... 新时代教育要求学生能将所学的各学科知识合理吸收、内化并融会贯通地进行应用。高中地理学科与生物学学科在学科概念、学科理念、研究对象及课程教学内容上有多个契合点,探究“地理+生物学”的学科融合教学,完全符合学科融合的教育理念,还可以突出地理学科的综合性特征。本文以高中地理“植被”一节教学为例,讨论在高中地理教学中融合生物学学科,构建学科融合式课堂的教育方法。 展开更多
关键词 地理+生物学 学科融合 教学设计 植被
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Geomicrobiological processes in extreme environments: A review 被引量:1
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作者 Hailiang Don BingsongYu 《Episodes》 SCIE 2007年第3期202-216,共15页
关键词 地理生物学 极端环境 环境保护 探险
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Microbial roles equivalent to geological agents of high temperature and pressure in deep Earth 被引量:6
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作者 XIE ShuCheng LIU Deng +2 位作者 QIU Xuan HUANG XianYu Thomas J.ALGEO 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第11期2098-2104,共7页
Microbes not only show sensitive responses to environmental changes but also play important roles in geochemical and geophysical systems. It is well known that microbes have caused major changes in surface environment... Microbes not only show sensitive responses to environmental changes but also play important roles in geochemical and geophysical systems. It is well known that microbes have caused major changes in surface environments and biogeochemical cycles through Earth history. Microbial processes can also induce the synthesis of certain minerals under Earth-surface conditions that previously were believed to form only under high temperatures and pressures in the deep Earth. For example, microbes can promote the conversion of smectite to illite, synthesis of authigenic plagioclase, precipitation of dolomite, and biotransformation of geolipids. These effects of microbes are due to their large surface/volume ratios, enzyme production, and abundant functional groups. Microbial catalyzation of chemical reactions proceeds through reaction-specific enzymes, a decrease in Gibbs' s free energy, and/or break through the dynamics reaction thresholds via their metabolisms and physiology. Microbes can lower the surface free energy of mineral nuclei via biophysical adsorption due to their large surface/volume ratios and abundant functional groups. The mineral precipitation and transformation processes induced by microbes are functionally equivalent to geological processes operating at high temperatures and pressures in the deep Earth, suggesting that microbial processes can serve as analogs to deep abiotic processes that are difficult to observe. 展开更多
关键词 地理生物学 生物引起的功能的组 ILLITIZATION 斜长石 白云石 Geolipids
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