Pengembangan E-LKPD Berbasis SETS-PjBL (Science, Environment, Technology, and Society-Project Based Learning) dalam Pembelajaran IPA untuk Meningkatkan Creative Thinking Siswa SMP
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Fakultas Keguruan dan Ilmu Pendidikan Universitas Jember
Abstract
This study aims to develop and analyze the effectiveness of electronic student
worksheets (E-LKPD) based on the Science, Environment, Technology, and
Society–Project Based Learning (SETS-PjBL) model in enhancing the creative
thinking skills of junior high school students on the topic of heat transfer. The
research employs a Research and Development (R&D) methodology utilizing the
ADDIE development model, which encompasses the stages of Analysis, Design,
Development, Implementation, and Evaluation. The research subjects consist of
students from class VII G at MTs Negeri 2 Jember. The instruments used include
expert validation sheets, pretest-posttest assessments, and student response
questionnaires. The results indicate that the developed E-LKPD possesses a high
level of validity, with an average expert validation score of 87.5%. Field trials
demonstrate an improvement in creative thinking scores by 32.4% following the
implementation of the E-LKPD compared to prior usage. Additionally, 92% of
students responded positively to the learning process utilizing the E-LKPD.
Therefore, the SETS-PjBL-based E-LKPD is effective in enhancing students'
creative thinking skills in science education.
This study aims to develop and analyze the effectiveness of electronic student
worksheets (E-LKPD) based on the Science, Environment, Technology, and
Society–Project Based Learning (SETS-PjBL) model in enhancing the creative
thinking skills of junior high school students on the topic of heat transfer. The
research employs a Research and Development (R&D) methodology utilizing the
ADDIE development model, which encompasses the stages of Analysis, Design,
Development, Implementation, and Evaluation. The research subjects consist of
students from class VII G at MTs Negeri 2 Jember. The instruments used include
expert validation sheets, pretest-posttest assessments, and student response
questionnaires. The results indicate that the developed E-LKPD possesses a high
level of validity, with an average expert validation score of 87.5%. Field trials
demonstrate an improvement in creative thinking scores by 32.4% following the
implementation of the E-LKPD compared to prior usage. Additionally, 92% of
students responded positively to the learning process utilizing the E-LKPD.
Therefore, the SETS-PjBL-based E-LKPD is effective in enhancing students'
creative thinking skills in science education.
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