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临床试验/NCT05073861
NCT05073861已完成不适用

The Effect of Blend-learning in STEM in Young Children's Affective, Cognitive, and Academic Outcomes

The University of Hong Kong1 个研究点 分布在 1 个国家目标入组 209 人开始时间: 2021年7月5日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
209
试验地点
1
主要终点
Science identity (questionnaire)

研究概览

简要总结

The study is a randomised controlled trial that investigates the effectiveness of an online app-based STEM programme on improving Hong Kong primary school students' affective, cognitive, and academic outcomes.

详细描述

The Effect of Blend-learning in STEM in Young Children's Affective, Cognitive, and Academic Outcomes.

Background of the Study Traditionally, research in science education has predominantly focused on formal classroom learning. With the advancement of technology, Gilbert (2015) argues that formal science curriculum is limited in its elaboration and use of interesting scientific illustrations and equipment. Moreover, while this learning context facilitates knowledge acquisition, it may not promote life-long learning nor motivation to learn (Vedder-Weiss & Fortus, 2011). Motivation for science learning may be enhanced through informal learning contexts such as extracurricular science-related activities and programs (Fortus & Vedder-Weiss, 2014). In these contexts, experiences that focus on real-world problems-outside of school-may help in turn strengthen reasoning skills and understanding in science. The current study investigates the impact of blended learning approach in an informal learning environment on children's affective, cognitive, and academic outcomes in science. In particular, students' motivation, identity, reasoning, and performance in science are considered holistically.

Research objectives The current study aims to implement an app-based intervention program that focuses on STEM learning outside of a formal classroom environment. The overarching goal is to examine the efficacy of blended learning that utilizes a combination of an app and lab experiments in children's affective, cognitive, and academic outcomes.

Methods

Participants Participants will consist of 400 primary school students aged 8-10 years from 3 school in Hong Kong. The schools will be selected based on several criteria: 1) English Medium-of-Instruction (EMI) schools with 2) mixed-ability classes. The data will be collected during the summer holiday in 2021 and will be anonymized before processing and used in the analyses. The classes will be randomly assigned to the experimental condition or the control condition based on the random sampling method. Recruitment letter and advertisement poster will be published both online and offline through different platforms. Information sheet, consent form, and assent form will be distributed to the principals of the schools.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Other
盲法
Single (Participant)

盲法说明

Participants will be allocated with IDs so that individuals can not be identified.

入排标准

年龄范围
8 Years 至 10 Years(Child)
性别
All
接受健康志愿者
否

入选标准

  • •students from English Medium-of-Instruction (EMI) schools with
  • •students from mixed-ability classes.

排除标准

  • •students with physical or motor disabilities that restrain them from completing the tasks

研究组 & 干预措施

App-based STEM online learning group

Experimental

Participants in the experimental group will receive a 2.5-month intervention with the blended STEM learning app.

干预措施: STEM learning (Behavioral)

E-book learning group

Active Comparator

The control group receive e-book chapters about STEM for learning for the same period of 2.5-month as the experimental group.

干预措施: STEM learning (Behavioral)

结局指标

主要结局

Science identity (questionnaire)

时间窗: Post-test: it will be assessed within 2 weeks after the intervention.

Science identity is arguably a multidimensional construct that involves many aspects and context. In this study, we focus on informal settings outside of the classroom. That is, how students relate to science in general and in their everyday lives. A subset of 8 items were adapted from the Science Attitude Scale in Pell \& Jarvis (2001) to assess science identity. The items in the questionnaire focus on real world science rather than science in the classroom context. The students reported the degree of their agreement with each item on a 6-point Likert scale (1= strongly disagree, 6= strongly agree). A sum score is used to quantify science identity; a higher score indicates a better outcome.

Science motivation(questionnaire)

时间窗: Post-test: it will be assessed within 2 weeks after the intervention.

Science motivation was assessed using the Expectancy-Value-Cost Scale based on the expectancy-value model (Kosovich et al., 2014). The questionnaire was designed to measure students' motivation in STEM. It includes 10 items to assess 3 sub-domains: how successful students think they can perform (expectancy); how worthwhile science is (value) and; perceived effort in doing well (cost). Students reported their responses using a 6-point Likert scale ranged from 1 (strongly disagree) to 6 (strongly agree). Instructions are explained to students prior to the administration: "This is not a test. It is a short survey about how much you like your science class. You can respond openly and honestly. All of your responses will be kept confidential. No one will see your individual answers (not your teacher, not your classmates, not your parents)." A sum score is used to quantify science motivation; a higher score indicates a better outcome.

Science motivation(questionnaire)

时间窗: Pre-test: it will be assessed 2 weeks before the intervention.

Science motivation was assessed using the Expectancy-Value-Cost Scale based on the expectancy-value model (Kosovich et al., 2014). The questionnaire was designed to measure students' motivation in STEM. It includes 10 items to assess 3 sub-domains: how successful students think they can perform (expectancy); how worthwhile science is (value) and; perceived effort in doing well (cost). Students reported their responses using a 6-point Likert scale ranged from 1 (strongly disagree) to 6 (strongly agree). Instructions are explained to students prior to the administration: "This is not a test. It is a short survey about how much you like your science class. You can respond openly and honestly. All of your responses will be kept confidential. No one will see your individual answers (not your teacher, not your classmates, not your parents)." A sum score is used to quantify science motivation; a higher score indicates a better outcome.

Science identity (questionnaire)

时间窗: Pre-test: it will be assessed 2 weeks before the intervention.

Science identity is arguably a multidimensional construct that involves many aspects and context. In this study, we focus on informal settings outside of the classroom. That is, how students relate to science in general and in their everyday lives. A subset of 8 items were adapted from the Science Attitude Scale in Pell \& Jarvis (2001) to assess science identity. The items in the questionnaire focus on real world science rather than science in the classroom context. The students reported the degree of their agreement with each item on a 6-point Likert scale (1= strongly disagree, 6= strongly agree). A sum score is used to quantify science identity; a higher score indicates a better outcome.

次要结局

  • Scientific reasoning (performance task)(Post-test: it will be assessed within 2 weeks after the intervention.)
  • Science performance (standardized test)(Post-test: it will be assessed within 2 weeks after the intervention.)
  • Science performance (standardized test)(Pre-test: it will be assessed 2 weeks before the intervention.)
  • Scientific reasoning (performance task)(Pre-test: it will be assessed 2 weeks before the intervention.)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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