跨学科教与学:一个实验

Antonella Giacosa
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引用次数: 2

摘要

在我们这个以技术不断进化为特征的智能新世界里,知识会迅速过时,变化是唯一不变的。在这种情况下,教师被要求克服传统知识传播中根深蒂固的自动习惯,培养一种较少与个别学科联系、对现实的许多方面更开放的观点。只有以一种质疑和好奇的态度,以创新和教学实验为目标,教师才能使他们的信息再次有意义,并帮助新一代培养灵活和复杂的思维习惯,以便在一个流动的、全球联系的、超技术的社会中定位自己。在一门多学科课程之后,一群中学教师开始了在课堂上阅读和实验的旅程,意识到通过量子物理学家Nicolescu提出的跨学科方法,人们可以为未来教育。识别和解决概念性问题,克服个别学科的狭隘限制,以理解复杂的事件,这是当今学校的教师和学生应该前进的方向,这样他们才能以更高的意识和效率面对明天。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transdisciplinary teaching and learning: an experiment
In our smart new world, characterized by continuous technological evolution, knowledge is subject to rapid obsolescence and change is the only constant. In this context, teachers are called upon to overcome the ingrained automatic habits of traditional knowledge transmission by developing a perspective that is less tied to individual disciplines and more open to the many facets of reality. Only with a questioning and curious attitude aimed at innovation and pedagogical experimentation can teachers make their message meaningful again and help new generations to develop the habit of flexible and complex thinking in order to orient themselves in a fluid, globally connected and hypertechnological society. Following a course on multidisciplinarity, a group of secondary school teachers embarked on a journey of reading and experimenting in the classroom, realizing that through the transdisciplinary approach theorized by the quantum physicist Nicolescu, one can educate for the future. Identifying and tackling conceptual issues to work on and overcoming the narrow limits of individual disciplines in order to understand complex events is the direction in which teachers and students of today's school should move, so that they will face tomorrow with greater awareness and effectiveness.
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