The Influence of 3-D Model Biological Systems in Understanding Cellular Diversity

Belinda Abdon-Liwanag
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Abstract

This study focused on the influence of instructional 3D Model Biological Systems (MBS) in understanding cell diversity. It determined the academic performance of the students according to content knowledge, quality of the artwork, and communication skills; and determined what group of learners benefited most from using 3D instructional models. It involved 30 second-year high school students in a private school in Imus, Cavite. Data were treated statistically with arithmetic mean, dependent t-test, gain scores, Pearson r Product Moment of Correlation, one-way analysis of variance (ANOVA), F-test, and Tukey multiple comparison test. Findings revealed that the use of 3D instructional cell models was effective in improving the academic performance of the students in terms of content knowledge, quality of the artwork, and communication skills. The computed mean difference of 3.60 and t-value of 10.998 for 29 degrees of freedom, which is 2.756 at a .01 level of confidence, showed a significant difference from their pre-test and post-test scores. This implies that participants obtained much learning on cellular diversity using 3D cell models. All groups of learners benefited most from using 3D instructional cell models thus students’ academic performance in Biology has improved. Thus, the study recommends that 3D instructional models should be used in teaching professional Science subjects such as Biology. More so, similar studies should also be conducted not only in Biology subject but also in Chemistry and Physics courses. Other 3D Model Biological Systems can be used for instruction to Senior High School Science majors and college students. Keywords: Cellular Diversity, 3D Model Biological Systems, General Biology, Cell Models
三维模型生物系统对理解细胞多样性的影响
本研究的重点是指导性3D模型生物系统(MBS)在理解细胞多样性方面的影响。它根据内容知识、作品质量和沟通能力来确定学生的学习成绩;并确定哪一组学习者从使用3D教学模型中受益最大。该研究涉及Cavite市Imus市一所私立学校的30名高二学生。采用算术平均值、相关t检验、增益评分、Pearson r乘积相关矩、单因素方差分析(ANOVA)、f检验和Tukey多重比较检验对数据进行统计学处理。研究结果显示,使用3D教学单元模型在内容知识、艺术作品质量和沟通技巧方面有效地提高了学生的学习成绩。29个自由度的计算平均差值为3.60,t值为10.998,在0.01的置信水平下为2.756,与他们的测试前和测试后得分有显著差异。这意味着参与者通过使用3D细胞模型获得了许多关于细胞多样性的知识。所有组的学习者都从使用三维教学细胞模型中受益最多,因此学生在生物学方面的学习成绩得到了提高。因此,该研究建议在生物等专业科学学科的教学中使用3D教学模型。更重要的是,不仅在生物学科中,而且在化学和物理课程中也应该进行类似的研究。其他3D模型生物系统可以用于指导高中科学专业和大学生。关键词:细胞多样性,三维模型生物系统,普通生物学,细胞模型
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