Technological developments make the education sector need to present modern learning resources while facilitating students in dealing with problems in the 21st century. Thus, the research aimed to develop an electronic module on the topic of work and energy-oriented to effective problem-solving so that it can be used to improve student learning outcomes. This research is in the form of development research using the ADDIE model. The subjects of this research were 33 students of X MIPA 4 SMA Negeri in Banjarmasin. The data analysis technique used is descriptive quantitative with a learning outcomes test as the research instrument used. The research results explained that the electronic module was declared highly effective with an N-gain score of 0.76. Thus, the electronic module physics on work and energy-oriented problem-solving are feasible to improve student learning outcomes.
A number of studies on multimodel-based learning strategy and environment-based learning approaches have been proven effective in improving learning outcomes. This study seeks to combine the strategy and the approach to train higher-order thinking skills as one of the 21st Century skills. This quasi-experiment study used one group pretest and post-test design. Data was collected using essay tests. The results showed that multimodel and wetland environment-based learning effectively improves students' higher-order thinking skills with a gain score of 0.63 (medium category). This study indicates the importance of integrating practicum activities and theory in learning in the classroom so that students' learning motivation is maintained and higher-order thinking skills are continuously trained.
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