完整后设资料纪录
DC 栏位语言
dc.contributor.author洪瑞云zh_TW
dc.contributor.authorHORNG RUEY-YUNen_US
dc.date.accessioned2016-03-28T08:17:42Z-
dc.date.available2016-03-28T08:17:42Z-
dc.date.issued2015en_US
dc.identifier.govdocNSC102-2511-S009-009-MY3zh_TW
dc.identifier.urihttp://hdl.handle.net/11536/130343-
dc.identifier.urihttps://www.grb.gov.tw/search/planDetail?id=11278297&docId=457119en_US
dc.description.abstract概念结合是人類的想像力在脑中运作以产生新概念的认知歷程。本研究目的在探
讨根据概念结合理論所设计出來的想像力学习与教学模式对工程領域大学生的创意产
生的影响,同时也将探讨概念的抽象程度对概念结合以产生创意的影响。研究中也将
以非工程科系的大学生为对照组,比较工程与非工程領域学生在概念结合作业上的差
異,及二者在接受概念结合训練后在科技想像力上表现的差異。由于创造有赖人对原
有的概念的意义重新解释或扩大解释,我们预测,较抽象概念结合作业促发独创的新
概念的机会比抽象程度较低的概念结合作业高。概念结合的训練教材的设计将涵盖语
文与非语文兩种形式,也将涵盖属性交集、属性转移、关系诠释、類比、反向诠释等
五种诠释方式的教学实例。研究分三年进行。第一、二年的研究中參与者将被随机指
派至2(有、无概念结合训練)x 2(是或非工程主修)四种实验情境中从事二科技想
像力作业。在进行科技想像力作业之前,概念结合组会接受概念结合的教学与練习(第
一年使用具象的教材;第二年使用抽象的教材),无概念结合组则无概念结合的教学与
練习。第三年则将工程学生的抽象思考能力区分为高低兩组,进一步探讨抽象思考能
力对想像力训練与创意产生的影响。
zh_TW
dc.description.abstractConceptual combination is a cognitive mechanism that produces new ideas in the brain.
This study aims to examine the effects of a conceptual combination training (CCT) program
on engineering college students’ production of original ideas. The role of abstractness of
concepts in conceptual combination in technological imagination will also be investigated.
Creative ideas often emerge as a result of reformulation or relaxation of a previously known
concept. Because abstract concepts are often vague in conceptualization of their meaning, it is
predicted that conceptual combination training with materials composed of abstract concepts
may prime more original concepts than less abstract materials. Two technological imagination
tasks will be administered to measure technological imagination performance after conceptual
combination training. Non-engineering students will serve as the comparison group to explore
the characteristics of engineering students’ technological imagination. The conceptual
combination training materials presented to participants will illustrate 5 types of
interpretations in conceptual combination: property conjunction, property transfer, relational
interpretation, analogy, and negation. The study will be conducted in three years. In a 2 (CCT
vs. no CCT) by 2 (engineering major vs. non-engineering major) experimental design, the
effect of conceptual combination training on technological imagination will be examined
using concrete conceptual combination materials in the first year. The second year’s study
aims to replicate first years’ findings with abstract conceptual combination training materials.
Pooling these two years’ data, the role of abstractness of concepts in facilitating original idea
generation will be analyzed. In the third year, the effect of abstractness of concepts on CCT
will be examined by an individual difference paradigm. Participants’ abstract thinking ability
will be measured and classified into high or low abstract thinking ability group. A 2 (CCT vs.
no CCT) by 2 (high vs. low abstract thinking ability) experimental design will be employed,
and only concrete conceptual combination materials will be used. It is predicted that
participants with higher abstract thinking ability will benefit more from conceptual
combination training than their less abstract thinking ability counterparts.
en_US
dc.description.sponsorship科技部zh_TW
dc.language.isozh_TWen_US
dc.subject概念结合zh_TW
dc.subject想像力训練zh_TW
dc.subject概念的抽象程度zh_TW
dc.subject抽象思考能力zh_TW
dc.subject科技想像力zh_TW
dc.subjectconceptual combinationen_US
dc.subjecttechnological imaginationen_US
dc.subjectabstractness of conceptsen_US
dc.subject_x000d_
abstract thinking ability
en_US
dc.subjectengineering majorsen_US
dc.subjecttrainingen_US
dc.title想像力教学及测验在工程与设计教育的落实-概念结合与概念抽象程度对科技创意产生的影响zh_TW
dc.titleThe Effects of Conceptual Combination Training and Abstractness of Concepts on Technological Imaginationen_US
dc.typePlanen_US
dc.contributor.department国立交通大学工业工程与管理学系(所)zh_TW
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