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1.
刘庆华 《化学教育》2022,43(11):81-87
核心素养视域下的初中化学课堂教学需要有一个深入学科本质的教学模式。“四重四步”教学模式通过教师的“四步教学”和学生的基础性认知、本质性认知、结构性认知、价值性认知的“四重认知”实现了由基于知识点的教学到基于化学学科核心素养发展的教、学、评一体化的转变,达成学科育人的要求。  相似文献   

2.
张淑贤  商晓绪 《化学教育》2021,42(13):28-33
以“设计净水系统”为项目主题,介绍了项目教学主题选取、项目目标确定、项目规划、实施与评价策略。项目教学中,关注学生认知与思维发展,随着净水系统的设计、制作、测试和再设计项目学习活动的展开,引导学生综合运用化学、物理、数学等多学科知识方法分析解决问题,促进学生提炼真实情境下“物质分离与提纯”解决思路,发展化学学科核心素养,同时体验和感受完整的工程设计过程。  相似文献   

3.
设计了“铁盐和亚铁盐”的单元教学,以“探究硫酸亚铁的性质”和“线路板腐蚀液的研究”为核心任务,把铁盐与亚铁盐的性质、Fe2+和Fe3+的相互转化等核心知识贯穿其中,建立从物质类别、元素价态视角研究物质性质及转化的思路方法,促进多维度化学学科核心素养的融合发展。经过多轮次教学改进,结合教学实践过程及其教学效果抽提出“注重应用无机物的认识模型,重点把握研究物质性质的角度和思路”“抓住典型活动,培养学生的关键能力”“设计开放性任务,通过有效的师生对话进行诊断,外显问题解决思路”等教学策略。  相似文献   

4.
蔡玲玲  林海斌 《化学教育》2021,42(21):47-51
有机融合学生生活中的经验与体验和化学学习中的认知与思维,可优化课堂进程,提高学习效率,让化学知识建构的过程同时成为化学学科核心素养发展提升的过程。在“铁及其化合物的应用”的教学中,以“笔·墨”为情境生成真实问题,在互动、探究、体验中整合物质性质,建构思维模型,并应用模型解决问题,发展科学探究、证据推理、模型认知等化学学科核心素养。  相似文献   

5.
朱鹏飞  陈敏  陈凯 《化学教育》2018,39(23):37-42
以高中化学“离子反应”概念教学为例,阐述了发展学生化学学科核心素养的课例研究思路和教学活动设计。围绕离子反应概念、离子方程式书写、离子反应发生条件等知识内容,挖掘教学内容与学科核心素养内涵的联系,创设真实且富有价值的问题情境,开设高水平的实验探究活动,注重微观分析过程,将离子反应概念的学习与从微观离子角度分析水溶液中反应的认识思路进行整合,力求发展学生的化学学科核心素养,帮助学生形成对“离子反应”概念的整体认识。  相似文献   

6.
以“菲律宾能源救星”创设探究情境,以“水动力”盐水灯发光之谜展开项目式学习探究设计之旅,在项目任务推进中对“水动力”盐水灯的原理和影响因素展开深入探究,重建学生对原电池的模型认知;设计并制作“家庭版”水动力灯,最终回归到指导抗震减灾等社会场景中去,加强学科与真实情境的结合与应用,锻炼和提升学生的科学精神与社会责任感,发展学生的化学学科核心素养。  相似文献   

7.
冯金洪 《化学教育》2022,43(3):74-80
通过以真实问题为情境,以化学知识结构化与化学核心观念为基础,以问题的探究为路径,以乙醇教学为例,建构了课程思政视角下的化学思维型课堂即“两思课堂”的基本教学模型,探索了“两思课堂”的评价方法与内容。通过分析学生表现可知两思课堂能同步实现核心价值培育与化学学科核心素养培养,有效实现化学学科的育人价值。  相似文献   

8.
林琼 《化学教育》2022,43(17):32-39
以探寻二氧化碳的工业捕集方案为项目主题,开展初中化学二氧化碳的性质及其转化的教学。学生通过“建立价类二维模型并设计二氧化碳的理想转化路径”“实验探究二氧化碳的实际转化”“解决二氧化碳的工业转化”等3个项目子任务理解了物质“组成、性质、变化”之间的关系,运用手持技术数字化实验探究了二氧化碳在不同碱溶液中的吸收效率,发展了实验探究能力,构建了物质转化在化工生产领域的认知模型,提高了思维迁移的能力。从“碳捕集”到“碳利用”的进阶解决问题模式,有利于学生化学学科核心素养的内化。  相似文献   

9.
模型认知是重要的思维方法。基于模型认知进行教学设计,能促使教师从关注知识转向关注核心素养,从而使教学活动有效地促进学生思维能力的发展。在对模型及模型认知理解的基础上,以典型的符号模型“化学方程式”为例,阐明了教学思路和教学活动与学科观念的关系,形成了发展学生模型认知核心素养的教学设计。  相似文献   

10.
金剑锋 《化学教育》2021,42(1):31-35
以“常见物质的检验”的教学为例,运用化学史料帮助学生自主建构知识体系,促进学生追寻知识本原,实现思维进阶,发展核心素养,并阐述运用化学史料构建高中化学生命课堂的实施策略。  相似文献   

11.
The bonding geometry of sulfur in the cations of the title compounds, C8H11S+·CF3SO3? and C13H13S+·CF3SO3?, respectively, is similar and is independent of the ratio of the Me/Ph substituents. As expected, in both cations, the S—Ph bonds are somewhat shorter than the S—Me bonds. In both crystal structures, the interaction between cations and anions is similar.  相似文献   

12.
In 2,4‐di­hydroxy­benz­aldehyde 2,4‐di­nitro­phenyl­hydrazone N,N‐di­methyl­form­amide solvate {or 4‐[(2,4‐di­nitro­phenyl)­hydrazono­methyl]­benzene‐1,3‐diol N,N‐di­methyl­form­amide solvate}, C13H10N4O6·C3H7NO, (X), 2,4‐di­hydroxy­aceto­phenone 2,4‐di­nitro­phenyl­hydrazone N,N‐di­methyl­form­am­ide solvate (or 4‐{1‐[(2,4‐di­nitro­phenyl)hydrazono]ethyl}benzene‐1,3‐diol N,N‐di­methyl­form­amide solvate), C14H12N4O6·C3H7NO, (XI), and 2,4‐di­hydroxy­benzo­phenone 2,4‐di­nitro­phenyl­hydrazone N,N‐di­methyl­acet­amide solvate (or 4‐­{[(2,4‐di­nitro­phenyl)hydrazono]phenyl­methyl}benzene‐1,3‐diol N,N‐di­methyl­acet­amide solvate), C19H14N4O6·C4H9NO, (XII), the molecules all lack a center of symmetry, crystallize in centrosymmetric space groups and have been observed to exhibit non‐linear optical activity. In each case, the hydrazone skeleton is fairly planar, facilitated by the presence of two intramolecular hydrogen bonds and some partial N—N double‐bond character. Each molecule is hydrogen bonded to one solvent mol­ecule.  相似文献   

13.
14.
The title compound, poly­[[di­aqua­di­bromo­cadmium‐μ‐(1,3,5,7‐tetra­aza­tri­cyclo[3.3.1.13,7]decane‐N1:N5)‐aqua­cad­mium‐di‐μ‐bromo‐aqua­cadmium‐μ‐(1,3,5,7‐tetra­aza­tri­cyclo[3.3.1.13,7]decane‐N1:N5)‐di‐μ‐bromo] dihydrate], [Cd3­Br6­(C6­H12­N4)2­(H2O)4]·­2H2O, is made up of two‐dimensional neutral rectangular coordination layers. Each rectangular subunit is enclosed by a pair of Cd32‐Br)6(H2O)3 fragments and a pair of (μ2‐hmt)Cd(H2O)2Br22‐hmt) fragments as sides (hmt is hexa­methyl­enetetr­amine). The unique CdII atom in the Cd2Br2 ring in the Cd32‐Br)6(H2O)3 fragment is in a slightly distorted octahedral CdNOBr4 geometry, surrounded by one hmt ligand [2.433 (5) Å], one aqua ligand [2.273 (4) Å] and four Br atoms [2.6409 (11)–3.0270 (14) Å]. The CdII atom in the (μ2‐hmt)Cd(H2O)2Br22‐hmt) fragment lies on an inversion center and is in a highly distorted octahedral CdN2O2Br2 geometry, surrounded by two trans‐related N atoms of two hmt ligands [2.479 (5) Å], two trans‐related aqua ligands [2.294 (4) Å] and two trans‐related Br atoms [2.6755 (12) Å]. Adjacent two‐dimensional coordination sheets are connected into a three‐dimensional network by hydrogen bonds involving lattice water mol­ecules, and the aqua, bromo and hmt ligands belonging to different layers.  相似文献   

15.
Summary Specific heats on the single crystals of Sr2Nb2O7, Sr2Ta2O7 and (Sr1-xBax)2Nb2O7 were measured in a wide temperature range of 2-600 K. Heat anomalies of a λ-type were observed at the incommensurate phase transition of TINC (=495 K) on Sr2Nb2O7 and at the super-lattice phase transition of TSL (=443 K) on Sr2Ta2O7; the transition enthalpies and the transition entropies were estimated. Furthermore, a small heat anomaly was observed at the low temperature ferroelectric phase transition of TLOW (=95 K) on Sr2Nb2O7. The transition temperature TLOW decreases with increasing Ba content x and it vanishes for samples of x>2%.  相似文献   

16.
A physicochemical study of glasses based on the MO-Bi2O3-B2O3 and SrO-Bi2O3-B2O3 systems was performed. Glass formation regions were found. The structural and optical properties, as well as the thermal behavior of the glasses, were studied.  相似文献   

17.
The title compound, C10H18N2S2, acts as an important precursor for the synthesis of the pharmaceutically important di­amine­di­thiol ligand system. The mol­ecule has a local twofold axis and the arrangement of the S2N2 donor atoms in the macrocycle is anticlinal.  相似文献   

18.
The whole mol­ecule of the title compound, C19H14N4O2, is essentially planar, with a highly conjugated π system. In the crystal, the mol­ecules are packed as chains along the [011] direction connected by O—H?N intermolecular hydrogen bonds.  相似文献   

19.
In the title compound, [Sb(CH3)(C6H5)3]BF4, there are four independent cations and anions in the asymmetric unit. The geometry around the Sb atom is distorted tetrahedral, with Sb—C distances in the range 2.077 (4)–2.099 (10) Å and angles at the Sb atom in the range 103.3 (3)–119.0 (4)°.  相似文献   

20.
The molecular structures of the title compounds, 2,4,6‐tri­chloro­phenyl­iso­nitrile (IUPAC name: 2,4,6‐tri­chloro­phenyl isocyanide), C7H2Cl3N, and 2,4,6‐tri­chloro­benzo­nitrile, C7H2Cl3N, are normal. The two structures are not isomorphous, but do contain similar two‐dimensional layers in which pairs of mol­ecules are held together by pairs of Cl?CN [3.245 (3) Å] or Cl?NC [3.153 (2) Å] interactions. The two‐dimensional isomorphism is lost through different layer‐stacking modes.  相似文献   

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