Agus Maqruf
Universitas Pendidikan Indonesia

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Evaluation of the CIPP Model for Integrated STEM Learning in STEM Institutions Based on the Mathematics Learning Processes and Outcomes Agus Maqruf; Tatang Herman
EduMa: Mathematics education learning and teaching Vol. 13 No. 2 (2024)
Publisher : Jurusan Tadris Matematika UIN Siber Syekh Nurjati Cirebon

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24235/eduma.v13i2.16711

Abstract

This research was carried out at a STEM institution with a focus on evaluating the implementation of STEM Integrated learning. The aim of this research is to evaluate using the CIPP (Context, Input, Process, Product) model for STEM Integrated learning and assess students' learning achievements in the field of mathematics studies, as well as evaluate the effectiveness of the STEM Integrated learning process using the CIPP model in STEM institutions. The effectiveness of the learning process is assessed based on the level of achievement of learning objectives that have been set at the beginning of the learning period, namely in all aspects of STEM. This research adopts a qualitative approach using the CIPP model, which allows evaluation of aspects of context, input, process and product to achieve effective learning. Research participants involve students, STEM instructors. Primary data was collected through observation instruments, while secondary data was obtained from documentation and interviews. The results of the research show that the application of Integrated STEM learning in STEM-EC UPI can be categorized as good in the input component but can be categorized as quite good in the context, process and product components. This is due to the less than optimal mathematical aspects in the STEM Integrated approach in terms of instructor qualifications and aspect assessment results. mathematics students.
The characteristics of real and pseudo-true thinking in STEM students' analytical thinking process in solving set problems Agus Maqruf; Tatang Herman
AXIOM : Jurnal Pendidikan dan Matematika Vol 14, No 1 (2025)
Publisher : State Islamic University of North Sumatra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30821/axiom.v14i1.22006

Abstract

It is essential to analyze students' cognitive development, particularly in mathematics, to determine their ability to solve problems effectively. This research focuses on analytical thinking as a critical component of students' problem-solving processes in mathematics. The subjects of this study were two students from a school in Bandung who are part of a STEM program, which incorporates additional learning approaches in science, technology, engineering, and mathematics. Through this approach, researchers aim to understand the students' analytical thinking processes and characteristics in solving given problems using qualitative methods. The instruments utilized in this study were tests and interview guidelines. The findings revealed that each student exhibited two distinct analytical thinking characteristics. The "real true thinking" character is where students can provide justification for their correct problem-solving results and navigate through the entire analytical thinking process. In contrast, the pseudo-true thinking character is unable to justify correct problem-solving and fails to complete the analytical thinking process, particularly at the differentiation stage.
Design and Development of a Realistic Mathematics Education (RME)-Based E-Module on Triangle Concepts Agus Maqruf; Tatang Herman; Elah Nurlaelah; Muhamad Zulfikar Mansyur; Dwi Maulida Sari
RANGE: Jurnal Pendidikan Matematika Vol. 8 No. 1 (2026): Range Juli 2026
Publisher : Pendidikan Matematika UNIMOR

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32938/jpm.v8i1.10407

Abstract

In training students to be able to solve problems logically and systematically, there is a need for learning media. Digital learning media that covers a wide range of subject matter nowadays is e-modules. Several studies have stated that the e-modules needed in mathematics learning are e-modules that are closely related to students' daily lives so that they are easy and practical to learn or in mathematics education it is known as Realistic Mathematics Education (RME). The research method used is the Richey and Klein Design and Development model with three stages, namely design, production and evaluation. The research was conducted at one of the junior high schools in Bandung City. The research instrument is intended for experts as validators and students as users The results indicate that through the stages of design, production, and evaluation, the RME-based e-module on triangle material was successfully designed and developed as a highly feasible learning resource for junior high school students in Indonesia. Expert validation showed an overall score of 90.3 percent categorized as very feasible, while student responses reached 86.9 percent also categorized as very feasible, confirming both its effectiveness and usability while providing valuable input for future refinement and wider development of the e-module.
Evaluation of Integrated STEM Learning in STEM Institutions Based on Mathematics Learning Processes and Outcomes Using the CIPP Model Agus Maqruf; Tatang Herman
Southeast Asian Mathematics Education Journal Vol 15, No 2 (2025)
Publisher : SEAMEO Regional Centre for QITEP in Mathematics

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46517/seamej.v15i2.363

Abstract

This research was carried out at a STEM institution with a focus on evaluating the implementation of STEM Integrated learning. The aim of this research is to evaluate using the CIPP (Context, Input, Process, Product) model for STEM Integrated learning and assess students' learning achievements in the field of mathematics studies, as well as evaluate the effectiveness of the STEM Integrated learning process in STEM institutions. The effectiveness of the learning process is assessed based on the level of achievement of learning objectives that have been set at the beginning of the learning period, namely in all aspects of STEM. This research adopts a qualitative approach using the CIPP model, which allows evaluation of aspects of context, input, process and product to achieve effective learning. Research participants involve students, STEM instructors. Primary data was collected through observation instruments, while secondary data was obtained from documentation and interviews. The results of the research show that the application of Integrated STEM learning in STEM-EC UPI can be categorized as good in the input component but can be categorized as quite good in the context, process and product components. This is due to the less-than-optimal mathematical aspects in the STEM Integrated approach in terms of instructor qualifications and aspect assessment results. mathematics students.