Using mobile applications for learning: Effects of simulation design, visual-motor integration, and spatial ability on high school students’ conceptual understanding

2017 ◽  
Vol 66 ◽  
pp. 103-113 ◽  
Author(s):  
June-Yi Wang ◽  
Hsin-Kai Wu ◽  
Ying-Shao Hsu
2019 ◽  
Author(s):  
Louis Trudel ◽  
◽  
Abdeljalil Métioui ◽  

The domain of motion or kinematics is important because it forms the basis of mechanics, an important branch of physics. By studying kinematic phenomena in the laboratory, high school students are likely to develop a better understanding of kinematics concepts as well as elements of the scientific approach to study natural and constructed phenomena. However, students encounter difficulties in understanding these concepts, just as in the acquisition of the skills necessary for the accomplishment of the different stages of an experimental process. Therefore, the purpose of this research was to provide guidance, according to a historical approach, which would inform teachers in the design of teaching sequences on the study of kinematics. Keywords: conceptual understanding, high school physics education, historical approach, kinematics.


2019 ◽  
Vol 15 (S367) ◽  
pp. 397-399
Author(s):  
Arturo Colantonio ◽  
Irene Marzoli ◽  
Italo Testa ◽  
Emanuella Puddu

AbstractIn this study, we identify patterns among students beliefs and ideas in cosmology, in order to frame meaningful and more effective teaching activities in this amazing content area. We involve a convenience sample of 432 high school students. We analyze students’ responses to an open-ended questionnaire with a non-hierarchical cluster analysis using the k-means algorithm.


Ergodesign ◽  
2021 ◽  
Vol 0 (3) ◽  
pp. 197-204
Author(s):  
Pavel Paderno ◽  
Elizaveta Stroeva

The aim of the work is to identify the functionality required by mobile messengers for convenient online communication between pupils and high school students. To achieve this aim, a survey of 116 questions was developed, which adjusted to the respondent’s answers and reduced its volume in order to avoid the respondents’ fatigue and to decrease the time spent on completing the survey. An online survey of students aged 16 to 24 living in different cities of the Russian Federation was carried out. Then the information obtained was processed, and possible relations between the analysis results were found. Based on the study results, recommendations were formed to improve messengers according to the students- users’ goals and objectives. Now messengers are created mainly for the widespread use. There are already more than a hundred of them, and therefore products need to stand out in order to be competitive. One of the ways to excel is to be narrowly focused, tailored to a specific audience. Since the functionality of the messenger directly affects its popularity, the introduction and refinement of the necessary functions will have a positive effect on the number of users. The analysis shows that developers of instant messengers can improve the efficiency of using messengers by the students and, possibly, reduce the number of installed mobile applications on their devices, and, consequently, decrease the number of competitors for their target audience.


Author(s):  
Agathi Stathopoulou ◽  
Zoe Karabatzaki ◽  
Dimosthenis Tsiros ◽  
Spiridoula Katsantoni ◽  
Athanasios Drigas

<p class="0abstract">For many adolescents in developed countries mobile apps can be the easy way for learning and teaching. This paper examines its role in secondary education focusing in mobile applications that support autistic students. The results of a research revealed the educators ` views that high school students with autism may use mobile apps in a variety of supportive educational ways.</p>


2019 ◽  
pp. 073194871988734
Author(s):  
Kaitlin Bundock ◽  
Leanne S. Hawken ◽  
Sharlene A. Kiuhara ◽  
Breda V. O’Keeffe ◽  
Robert E. O’Neill ◽  
...  

Implementing an integrated sequence of concrete-representational-abstract depictions of mathematics concepts (CRA-I) can improve the mathematics achievement of students with disabilities, and explicit instructional strategies involving problem-solving heuristics and student verbalizations can help facilitate students’ conceptual understanding of mathematics. Combining CRA-I and explicit instructional strategies may increase students’ conceptual understanding and ability to express mathematical reasoning through writing. This study included three ninth-grade students with disabilities, and employed a multiple-probe design across-participants to investigate a functional relation between an explicit instructional strategy within a CRA-I framework and high school students’ with disabilities proficiency in solving rate of change problems. Results showed that all three students improved their mathematics scores (combined Tau-U effect size = 0.77, p < .001) and maintained improvements during a 1- to 7-week post-instruction phase. Implications for research and practice related to mathematics instruction and intervention specifically for students with learning disabilities are discussed.


Author(s):  
Amiruddin Kade ◽  
I Nyoman Sudana Degeng ◽  
Muhammad Nur Ali

Conceptual understanding should have serious attention due to the low score of Physics subject on national examination in Palu. The difference between learning style and jigsaw strategy is able to combine abstract conceptualization and active experiment towards the conceptual understanding for students whose learning style is converger and diverger. The research design was quasi experiment. The sample is the eleventh class of Senior High School students in Palu that are chosen using cluster random sampling (multistage), that is, 167 students. The research instrument was Kolb’s Learning Style Inventory (KLSI) of conceptual understanding test on Physics (Tes Pemahaman Konsep Fisika or TPKF). The data was analyzed by using ANOVA, with the significant level is 5%. The result shows that: (1) cooperative learning strategy of jigsaw type has more benefits than direct learning strategy in conceptual understanding on Physics, (2) student group of which learning style was converger has higher conceptual understanding than that of which learning style was diverger, (3) there are interaction influence between learning strategy and learning style towards the conceptual understanding on Physics


2016 ◽  
Vol 6 (3) ◽  
pp. 166 ◽  
Author(s):  
Patrick Gryczka ◽  
Edward Klementowicz ◽  
Chappel Sharrock ◽  
Jin Montclare

Here we describe the incorporation of a web-based application focusing on circuits for the physics high school classroom as part of an outreach program. The program involves college mentors creating and implementing science lessons in collaboration with the classroom teacher. Focusing on the challenge of understanding circuit design, a technology rich module is employed to improve learning and motivation of the students. The students’ conceptual understanding as well as interest in circuits was increased, the college mentors earned valuable teaching and mentoring experience and the teacher enjoyed more one-on-one time as well as assistance with students.


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