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Representation Registers in the Solution of Calculus Problems

机译:微积分问题解决中的表示寄存器

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This article is derived from the research project registered under number 20110343 (Ruiz, 2011), and developed in Escuela Superior de Cómputo del Instituto Politécnico Nacional (IPN) (School of Computer Sciences of the National Poly-technical Institute of Mexico). The article reports on the problems found among Engineering students with respect to their resistance to using different representation registers when solving optimization problems in the Calculus Learning Unit. Use of such registers could help the students to build mathematics know ledge and to solve calculus problems. As a didactic strategy, simulations are used in an electronic environment in order to support the students by fostering their use of tabular, graphical and algebraic representation registers. Interviews are undertaken of six of the professors who give the calculus courses, and a diagnostic questionnaire is applied to 68 students prior to and after working with the proposal. As for the theoretical framework, the work reported by Duval and Hitt is salient in this report, particularly their emphasis of the fact that working on activities by way of one single representation system is not sufficient. From the first responses provided by the students, one can conclude that the algebraic register is preferred by the majority of students. It is however used in a mechanical fashion without affording any meaning to the content of the problem and to the process of solving it. Another conclusion reported is that implementing tasks in the classroom in which the mathematics activity requires coherent use of different representations is necessary.
机译:本文来自于注册号为20110343(Ruiz,2011年)的研究项目,并在墨西哥国立中央大学(IPN)(墨西哥国家职业技术学院计算机科学学院)开发。这篇文章报告了在工程学学生中解决微积分学习单元中的优化问题时,他们抵制使用不同表示寄存器的问题。使用这样的寄存器可以帮助学生建立数学知识,并解决微积分问题。作为一种教学策略,在电子环境中使用模拟是为了通过培养学生使用表格,图形和代数表示形式来支持学生。对参加微积分课程的六位教授进行了面试,并在处理提案之前和之后对68名学生进行了诊断问卷调查。关于理论框架,杜瓦尔和希特报道的工作在本报告中是突出的,特别是他们强调仅靠一个单一代表制进行活动这一事实是不够的。从学生提供的第一批答复中,可以得出结论:大多数学生都喜欢代数寄存器。但是,它以机械方式使用,而对问题的内容和解决过程没有任何意义。报告的另一个结论是,需要在课堂上执行数学活动需要连贯使用不同表示形式的任务。

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