研究生: |
何明昇 Ming.Sheng.Ho |
---|---|
論文名稱: |
國中與國小學生體積概念之診斷與教學 Evaluation and Teaching of Students' Volume Concept from 4th to 9th Grades |
指導教授: |
黃寶鈿
Hwang, Bao-Tyan |
學位類別: |
碩士 Master |
系所名稱: |
化學系 Department of Chemistry |
畢業學年度: | 87 |
語文別: | 中文 |
論文頁數: | 111 |
中文關鍵詞: | 體積概念 、體積守恆 、體積置換守恆 、認知發展 、密度概念 、概念教學 、學習環 |
英文關鍵詞: | volume concept, volume conservation, displacement volume conservation, cognitive development, density concept, concept teaching, learning cycle |
論文種類: | 學術論文 |
相關次數: | 點閱:412 下載:0 |
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體積守恆概念的獲得是進入形式操作期的第一步,具有此概念後,學生才有能力去學習抽象概念,如密度概念、莫耳概念、化學反應概念等。本研究的目的是探討國小四、五、六年級及國中一、二、三年級學生體積概念的發展,以了解學生認知發展層次,並經過教學活動,了解是否可以促進學生體積概念的獲得。並且探討國中學生體積概念與密度概念的關係,以瞭解學生體積概念的教學是否會影響其密度概念的學習。
本研究的對象有國中學生751位與國小學生655位。研究的工具有體積概念診斷測驗、認知階層診斷測驗與體積概念教學活動及後測。
主要研究發現如下︰
一、 具有體積概念的學生人數百分比,都隨著年級的增加,而逐步成長 ,並且在國二時呈現大幅度的成長。未具有體積概念的學生經由教 學活動,獲得成熟體積概念的人數百分比也隨著年級的增加而逐 漸增加。
二、以學習環為理論基礎的「體積概念教學活動」,可以使多數的學生 獲得體積守恆概念與體積置換守恆概念。
三、對未具有體積概念的學生,若有正確重量概念經由教學活動,學習 體積概念的效果比沒有正確重量概念的學生好。
四、體積概念發展與密度概念學習的相關性,有達到統計上的顯著水準 ,因此體積概念教學,對密度概念的獲得有影響。
The acquisition of conservation concept of volume is the first step into formal operational stage. Students with this concept have the reasoning ability to learn abstract concepts, such as density, mole and chemical reations concepts.
This study was to investigate the development of students' volume concept, to explore the effect of acquisition of volume concept through appropriate teaching activities, to find the relationships between students' development of volume concept and achievement of density concept, and to probe into whether this instruction could improve student conceptual change of density. The volume concept included volume conservation concept and conservation of displacement volume.
Tortally 1406 students from grade 4th to 9th were involved in this paper.The instruments used in this research were as following:(1)diagnostic test of volume concept , (2)diagnostic test of cognitive development , (3)teaching activities of volume concept , and (4) post-test .
The main findings of this paper were︰(1)The percentage of students with correct volume concept increased from grade 4th to 9th gradually. The proportion was increasing largely at the grade 8th. For students without volume concept, the percentage of students who acquired volume concept also increased with grade.(2)The teaching activities based on learnimg cycle could promote the acquisition of volume conservation concept and conservation of displacement volume . (3)For students without volume concept, if they had correct weight concept, they would acquire better volume concept through teaching activities . (4)There was a significant correlation statistically between the development of volume concept and the achievement of density concept. The teaching activities of volume concept could help some students acquire correct density concept.
參考文獻
中文部份:
王文科(民78):認知發展理論與教育。台北市:五南圖書出版公司。
江新合(民79):台灣南區5-9年級學生在不同地理環境下之推理能力成長的比較研究。 高師大學報, 1, 175-187。
杜聲鋒(民86): 皮亞傑及其思想。台北市:遠流出版事業股份有限公司。
郭生玉(民85):心理與教育研究法。台北市:精華書局。
國立編譯館(民87):國民小學數學第八冊。台北市:台灣書店。
國立編譯館(民87):國民中學理化第一冊。台北市:台灣書店。
國立編譯館(民85):國民小學自然科學第一冊至第十二冊。台北市:台灣書店。
教育部(民87):國民小學課程標準。教育部編印。
黃寶鈿(民88):以教學促進認知發展與科學概念改變(Ⅱ)。國科會計畫第三年度成果報告。
黃湘武、江新合、劉謹輔、陳忠志、杜鴻模、陸業堯(民74):國中學生質量守恆,重量守恆、外體積概念、與比例推理之抽樣調查與研究。中等教育, 36(1), 44-65。
黃寶鈿、王碧鴻(民87):探究高職化工科學生之莫耳概念。國立台灣師範大學化學研究所碩士論文。
黃寶鈿、李昌汶(民86):國中學生密度概念的診斷與探討。國立台灣師範大學化學研究所碩士論文。
黃寶鈿、黃湘武(民75a):示範群測法對我國學生重量與體積守恆推理能力發展之研究。七十四年度科學教育學術研討會論文彙編。
黃寶鈿、黃湘武(民75b):學生莫耳概念發展的研究:不同物態的莫耳概念。七十四年度科學教育學術研討會論文彙編。
黃寶鈿、黃湘武(民75c):學生推理能力與概念發展之研究。認知與學習研討會專集(第一次)。行政院國科會出版。
黃寶鈿、陳幸如、李宇浚(民75):示範群測法研究學生的守恆概念:排水體積守恆。七十四年度科學教育學術研討會論文彙編。
英文部份:
Adey, P., & Shayer, M. (1988). Strategies for meta-learning in physics. Physics Science, 23, 98-104.
Barman, C. R., & Allard, D. W. The leaning cycle and college science teaching. Paper presented at the Annual International Conference of the National Institute for Staff and Organizational Development on Teaching Excellence and Conference of Administrators (15th, Austin, TX, May 23-29, 1993).
Beeth, M. E. (1998a). Teaching for conceptual change: using status as a metacognitive tool. Science Education, 82, 343-356.
Beeth, M. E. (1998b). Teaching in fifth grade:instructional goals that support conceptual changel. Journal of Research in Science Teaching, 35(10), 1091-1101.
Bilbo, E. T., & Milkent. M. M. (1978). A comparison of two different approaches for teaching volume units of the metric system. Journal of Research in Science Teaching, 15, 53-57.
Cantu, L. L.,& Herron, J. D. (1978). Concrete and formal Piagetian stages and science concept attaintment. Journal of Research in Science Teaching, 15(2), 135-143.
Cavallo, A. M. I., & Laubach, T. A. (1998). Defining Density. The Science Teacher, 65(7), 45-48.
Charles, R. W., & Herron, J. D. (1980). Helping students understand formal chimical concepts. Journal of Research in Science Teaching, 17(5), 387-400.
Dagher. Z. R. (1994). Does the use of analogies contribute to conceptual change. Science Education, 78(6), 601-614.
DeLuca, F. P. (1981). Application of cluster analysis to the study of Piagetian stages of intellectual development. Journal of Research in Science Teaching, 18(1), 51-59.
Dreyfus, A., Jungwirth, E., & Eliovitch, R. (1990). Applying the "cognitive conflict" strategy for conceptual chang---some implications , difficulties , and problem. Science Education, 74(5), 555-569.
Edward, D., Scanlon, E., & West, D. (1993). Teaching learning and assess-ment in science education. London:Paul Chapman Publishing Ltd.
Freedman, M. P. (1997). Relationship among laboratory instruction , attitude toward science , and achievement in science knowledge. Journal of Research in Science Teaching, 34(4), 343-357.
Gabel, D. L., & Enochs, L. G. (1987). Different approaches for volume and student's visualization ability. Science Education, 71(4), 592-597.
Geelan, D. R. (1997). Epistemological anarchy and the many forms of constructivism. Science & Education, 6, 15-28.
Grayson, D. J. (1996). Conception substitution:a strategy for promoting conceptual change. In D. F. Treagust, R. Duit, & B. J. Fraser (Eds.), Improving Teaching and Learning in Science and Mathematics (pp. 151-161). New York:Teachers Colledge.
Haidar, A. H. (1997). Prospective chemistry teachers' conceptions of conservation of matter and related concepts. Journal of Research in Science Teaching, 34(2), 181-197.
Hart, K. M. (1981). Volume of a cuboid. In D. Johnson (ED). Children's Mathematical Frameworks (pp.8-13). Berkshire︰NFER-Nelson.
Henry, J. A. (1978). The transition from pre-operation to concre-operation thinking:the effect of discrimination and classification activities. Journal of Research in Science Teaching, 15(2), 145-152.
Hewson, P. W. (1981). A conceptural chang approach to learning science. European Journal of Science Education, 4, 61-78.
Hewson, M. G., & Hewson, P. W. (1983). Effect of instruction using student's prior knowledge and conceptural chang strategies on science learning. Journal of Research in Science Teaching, 20(8), 731-743.
Hewson, P. W. (1996). Teaching for conceptual change. In D. F. Treagust, R. Duit, & B. J. Fraser (Eds.), Improving Teaching and Learning in Science and Mathematics (pp. 131-140). New York:Teachers Colledge.
Howe, A. C. (1974). The acquisition and growth of the concept of conservation of liquid. Journal of Research in Science Teaching, 11, 105-112.
Hwang, B. T., & Liu, Y. S. (1994, March). A study of proportional reasoning and self-regulation instruction on student's conceptual change in conceptions of solution.Paper presented at the annual meeting of the National Association for Research in Science Teaching, Anaheim, CA.
Inhelder, B.(Eds.). (1974). Concepts of conservation of continuous quantities:from observation to inference. Learning and the development of cognition. Lodon:Routledge & Kegan Paul Ltd.
Johnson, J. K., & Howe, A. C. (1978). The use of cognitive conflict to promote conservation acquisition. Journal of Research in Science Teaching, 15(4), 239-247.
Lawson, A. E., & Renner, J. W. (1975). Piagetian theory and biology teaching. The American Biology Teacher, 37(6), 336-343.
Marek, E. A., & Methven, S. B. (1991). Effects of the learning cycle upon student and classroom teacher performance. Journal of Research in Science Teaching, 28 (1), 41-53.
Mensah, J. A. (1986). Congitive strategies used by chemistry students to solve volumetric analysis problems. Journal of Research in Science Teaching, 23(9), 759-769.
Odubunmi, O., & Balogun, T. A. (1991). The effect of laboratory and lecture teaching method on cognitive achievement in integrated science. Journal of Research in Science Teaching, 28(3), 213-224.
Potari, D., & Spiliotopoulou, V. (1996). Children's approach to the concept of volume. Science Education, 80(3), 341-360.
Piaget, J., & Inhelder, B. (1974). The child's construction of quantities. London︰Rout-ledge and Kegan Paul.
Renner, J. W., Abraham, M. R., & Birnie, H. H. (1983). The importance of the form of student acquisition of deta in physics learning cycles. Journal of Research in Science Teaching, 22(4), 303-325.
Rener, J. W. (1976). Formal operation thought and its identification. In J. W. Renner, D. G. Stafford, A. E. Lawson, J. W. Mckinnon, F. E. Friot, & D.H. Kellogg(Eds), Research, Teaching and Learning with the Piaget Model (pp. 64 -78). Norman:University of Oklahoma.
Renner, J. W., & Lawson, A. E. (1973). Promoting intellectural development through science teaching. The Physics Teacher, 11 (5), 273-276.
Renner, J. W. (1988). The necessity of each phase of the learning cycle in high schhol physcis. Journal of Research in Science Teaching, 25(1), 39-58.
Richard, T. W. (1998). Research, theories of learning, principles of teaching and clasroom practice:examples and issues. Studies in Science Education, 31, 55-70.
Rowell, J. A. , & Dawson, C. J. (1981). Volume, conservation:a class based solomon four group study of conflict. Journal of Research in Science Teaching , 18(6), 533-546.
Schecker, H., & Niedderer, H. (1996). Contrastive teaching:a stratege to promote qualitative conceptual understanding of science. In D. F. Treagust, R. Duit, & B. J. Fraser (Eds.), Improving Teaching and Learning in Science and Mathematics (pp. 141-151). New York:Teachers Colledge. Journal of Research in Science Teaching , 18(6), 533-546
Schmidt, H. J. (1997). Students' misconceptions-looking for a pattern.. International Journal of Science Education, 81, 123-135.
Smith, S. R., Trueblood, C. R., & Szabo, M. (1981). Conservation of length and instruction in linear measurement in young children. Journal of Research in Science Teaching, 18(1), 61-68.
Stafford, D. G., & Renner, J. W. (1976). Development of conservation reasoning through experience. In J. W. Renner, D. G. Stafford, A. E. Lawson, J. W. Mckinnon, F. E. Friot, & D.H. Kellogg(Eds), Research, Teaching and Learning with the Piaget Model(pp. 34 -55). Norman:University of Oklahoma.
Stepans, J., Dyche, S., & Beiswenger, R. (1988). The effect of two instructional models in bringing about a conceptual chang in the understanding of science concepts by prospective elementary teacher. Science Education, 72(2), 185-196.
Ward, A. (1984). Middle school science notes:ideas on teaching volume and density in the primary school. School Science Review, 65(232), 553-556.
Weaver, G. C. (1998). Strategies in K-12 science instruction to promote conceptual change. Science Education, 82, 455-472.