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Journal ArticleDOI

Advancing Engineering Education in P-12 Classrooms

TLDR
In this paper, the authors explore how engineering education can support acquisition of a wide range of knowledge and skills associated with comprehending and using STEM knowledge to accomplish real world problem solving through design, troubleshooting, and analysis activities.
Abstract
Engineering as a profession faces the challenge of making the use of technology ubiquitous and transparent in society while at the same time raising young learners' interest and understanding of how technology works. Educational efforts in science, technology, engineering, and mathematics (i.e., STEM disciplines) continue to grow in pre-kindergarten through 12th grade (P-12) as part of addressing this challenge. This article explores how engineering education can support acquisition of a wide range of knowledge and skills associated with comprehending and using STEM knowledge to accomplish real world problem solving through design, troubleshooting, and analysis activities. We present several promising instructional models for teaching engineering in P-12 classrooms as examples of how engineering can be integrated into the curriculum. While the introduction of engineering education into P-12 classrooms presents a number of opportunities for STEM learning, it also raises issues regarding teacher knowledge and professional development, and institutional challenges such as curricular standards and high-stakes assessments. These issues are considered briefly with respect to providing direction for future research and development on engineering in P-12.

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미국 NCTM의 Principles and Standards for School Mathematics에 나타난 수학과 교수,학습의 이론

TL;DR: The National Council of Teachers of Mathematics (NCTM) as mentioned in this paper proposed a framework for the evaluation of the performance of teachers of mathematics in South Korea, which is based on the concept of a teacher-student relationship.
Journal ArticleDOI

Considerations for Teaching Integrated STEM Education

TL;DR: A support, teaching, efficacy, and materials (s.t.m.) model for teaching integrated STEM education was developed through a year-long partnership with a middle school.
Book ChapterDOI

Design and Development Research

TL;DR: This chapter focuses on design and development research, a type of inquiry unique to the instructional design and technology field dedicated to the creation of new knowledge and the validation of existing practice.
Journal ArticleDOI

Is Adding the E Enough? Investigating the Impact of K-12 Engineering Standards on the Implementation of STEM Integration

TL;DR: In this article, an interpretive multicase study design was employed to conduct an in-depth investigation of secondary STEM teachers' implementation of STEM integration in their classrooms during a yearlong professional development program.
References
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Journal ArticleDOI

Those Who Understand: Knowledge Growth in Teaching

TL;DR: In this paper, Shulman observa la historia de evaluaciones docentes, noting that the evaluación docente parecia preocuparse tanto por los conocimientos, como el siglo anterior se preoccupaba por la pedagogia.
Book

How people learn: Brain, mind, experience, and school.

TL;DR: New developments in the science of learning as mentioned in this paper overview mind and brain how experts differ from novices how children learn learning and transfer the learning environment curriculum, instruction and commnity effective teaching.
Journal ArticleDOI

Structure‐Mapping: A Theoretical Framework for Analogy*

TL;DR: In this paper, the interpretation rules of OS implicit rules for mapping knowledge about a base domain into a torget domain are defined by the existence of higher-order relations, which depend only on syntactic properties of the knowledge representation, and not on specific content of the domoins.
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