cover
Contact Name
Andrian Saputra
Contact Email
andriansaputra@fkip.unila.ac.id
Phone
+6285768233166
Journal Mail Official
jpmipa@fkip.unila.ac.id
Editorial Address
FKIP Universitas Lampung Jl. Prof. Dr. Ir. Sumantri Brojonegoro, Gedong Meneng, Kec. Rajabasa, Kota Bandar Lampung
Location
Kota bandar lampung,
Lampung
INDONESIA
Jurnal Pendidikan MIPA
Published by Universitas Lampung
ISSN : 14112531     EISSN : 26855488     DOI : http://doi.org/10.23960/jpmipa
Core Subject : Education,
Jurnal Pendidikan MIPA (JPMIPA) focused on mathematics education, science education, and the use of technology in the educational field. In more detail, the scope of interest are, but not limited to: STEM/STEAM Education Environmental and Sustainability Education Scientific Literacy Computer-based Education and Digital Competence Higher Order Thinking Skills Multicultural and Inclusive Education Attitude towards Mathematics and Science Learning Models, Methods, Strategies of Math & Science Learning Virtual and Blended Learning Teacher Education
Articles 1 Documents
Search results for "Prospective Mathematics Teacher Students" : 1 Documents clear
Prospective Mathematics Teacher Students’ Experiences in Visual Programming: Difficulties and Obstacles in Designing Digital Media for Numeracy Learning Lestariningsih, Lestariningsih; Fareza, Mohamad Zulfahmi Al
Jurnal Pendidikan MIPA Vol 25, No 4 (2024): Jurnal Pendidikan MIPA
Publisher : FKIP Universitas Lampung

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Abstract

Prospective mathematics teacher students' lack of understanding of basic math concepts, such as numeracy, is one of the main challenges in learning. In the era of rapid technological development, they must adapt, one of which is through visual programming to strengthen their numeracy. However, they often face difficulties and obstacles in the learning process of visual programming, both from technical and non-technical aspects. This research aims to analyze the difficulties and obstacles of prospective mathematics teacher students in learning visual programming. The research used the Colaizzi method to analyze qualitative data, which was then combined with clustering techniques to group the problems into five main clusters. The results show that the main difficulties are programming related knowledge (syntax/rules for writing code, determining variables, concepts and principles, functions and parameters, define code structure and loops, apply in numeracy/mathematics concept), skills in programming, understanding of program semantics (code), debugging, lack of practice. In addition, the obstacles faced by prospective mathematics teacher students are a lack of skills and understanding of basic programming concepts, such as code structure, syntax, and debugging, as well as the application of concepts to the context of numeracy/mathematics. In addition, there are internal barriers in the form of negative perceptions, dislike for programming, and low motivation to learn. This problem is exacerbated by the heavy course load, such as learning many topics quickly and teaching methods that are less structured and do not support effective learning. These difficulties and obstacles need to be addressed through more targeted and innovative learning approaches, such as integrating technology that supports a basic understanding of programming and training that builds motivation and changes negative perceptions towards visual programming.         Keywords: visual programming, difficulties, obstacles, digital media, numeracy. DOI: http://dx.doi.org/10.23960/jpmipa/v25i4.pp1678-1692

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