scholarly journals Senior High School Students’ Character Traits, Word Problem Analysis Skills and Academic Achievement in Mathematics

2021 ◽  
Vol 1 (6) ◽  
pp. 11-18
Author(s):  
Victoria Tamban ◽  
Ricky A. Lagarto ◽  
Cristina E. Malabayabas

This study was conducted with the purpose of finding out whether the character traits significantly influenced the problem solving analysis skills and academic achievement in mathematics of Senior High School students. It was a descriptive – survey and correlational study which involved 75 students, total enumeration was utilized. Questionnaires were availed to gather the data needed. Frequency count, percentage, weighted mean and chi-square (x2) were employed to arrive at precise and valid results. The findings of the study revealed that character traits of students were varied, however, majority were satisfactory. They practiced acceptable and healthy behaviours in relating with others. Majority of the pupils were above average in their level of problem analysis skills in involving problems in mathematics. Most of them had achieved an academic achievement of satisfactory. They had mastered the skills as per required of them to learn in Mathematics. It was found out that character traits significantly influenced the problem solving analysis skills and academic achievement in mathematics.

2021 ◽  
Vol 2 (1) ◽  
pp. 42-53
Author(s):  
Dyah Ayu Setyarini ◽  
Zainal Arifin Imam Supardi ◽  
Elok Sudibyo

This research aims to improve senior high school students’ physics problem-solving skills through learning used IBMR learning model. This research was a pre-an experimental study with a one-group pre-test and post-test design. The Methods of data collection used validation and test. The materials used to teach were valid category by two experts and can be used to practice physics problem-solving skills. The average post-test score physics problem-solving ability was 73.24 with an N-gain of 0.59 was classified as moderate. The success of IBMR learning model-based devices in practicing problem-solving abilities can be seen in the increase in the average score in each indicator of problem-solving abilities. The indicator of understanding the problem had the highest post-test average score of 94.58 with an N-gain of 0.89 in the high category. The problem-solving indicator had the lowest posttest average score was 58.22 with N-gain 0.39 and mean that it was the moderate category. Based on the results study, it can be concluded that the learning used by IBMR learning model can practice the ability to solve physics problems on heat material and its displacement. Learning with the IBMR learning model was expected to train students in solving physics problems. The stages in the IBMR learning model can help students


2019 ◽  
Vol 4 (4) ◽  
pp. 524
Author(s):  
Aulia Siska Yuliana ◽  
Parno Parno ◽  
Ahmad Taufiq

<p><strong>Abstract:</strong> This study was aimed to know problem solving skill of senior high school students in heat and temperature. The study was used descriptive-quantitative method and the sample of research was twelve grade students. The instruments that already used as a number of question problem solving skill had 0.732 reliability. The result was analyzed by using rubric of problem solving that already developed by Doctor. The result was obtained that problem solving skill was medium category. This category was included useful description and physics approach. On the other hand, mathematical procedure and logical progression were included as low category.</p><strong>Abstrak:</strong><em> </em>Penelitian ini bertujuan untuk mengetahui sejauh mana tingkat kemampuan pemecahan masalah siswa SMA pada materi suhu dan kalor. Metode yang digunakan dalam penelitian ini dalah deskriptif kuantitatif dan siswa kelas XII sebagai sampel dalam penelitian ini. Instrumen yang digunakan yaitu tes kemampuan pemecahan masalah dengan reliabilitas 0,732. Data hasil tes dianalisis dengan rubrik kemampuan pemecahan masalah yang dikembangkan oleh <em>Docktor</em>. Hasil peneltian menunjukkan bahwa secara keseluruhan kemampuan pemecahan masalah siswa tergolong dalam kriteria sedang. Kemampuan pemecahan masalah pada kategori <em>useful description</em>, <em>physics approach</em> dan <em>specific application of physics </em>dalam kriteria sedang, sedangkan kategori <em>mathematical procedures</em> dan <em>logical progression</em> termasuk dalam kriteria rendah.


2021 ◽  
Vol 9 (3) ◽  
pp. 398
Author(s):  
Binar Kurnia Prahani ◽  
Wahyu Hari Kristiyanto ◽  
Joko Siswanto ◽  
Budiyono Saputro ◽  
Husni Mubarok

This literature study aims to obtain the thinking process profile of senior high school students in physics problem-solving based on differences in emotional intelligence levels and gender. In this study used literature study method with phenomenological analysis, functionalism analysis, and critical analysis. The sources used to compile this article include some literature on emotional intelligence, gender effect, thinking process, problem-solving, and several empirical study on students in physics problem-solving, especially in senior high school. The authors summed up the conclusions based on the results of the literature study as follows: (1) The profile of the thinking process is influenced by emotional intelligence level and gender; (2) Emotional intelligence is directly proportional to the thinking process of students in the process of solving physics problems; (3) Students who have high emotional intelligence are more likely to have high physics problem-solving skills; (4) Gender differences (male and female) in solving physics problems, generally, are still debatable, in which sense is it better? Then it further research needs that is valid and reliable to answer this question. (5) There is a strong tendency that the male gender is more resilient in dealing with and solving complex physics problems; (6) The gender of female students is superior in solving physics problems that require very high detail. The main implication of this article is to obtain the thinking process profile of senior high school students in physics problem-solving based on terms of differences in emotional intelligence levels and gender. 


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