CHAPTER ONE
INTRODUCTION
1.1 Backgrounds to the Study
Effective science teaching is the gateway to the attainment of scientific and technological greatness. Science and physics teaching can only be effective when students are willing and the teachers make use of appropriate approaches or methods and resources in teaching the students.
Modern science teaching and learning stress students’ participation in the learning process through exposure to diverse learning experiences (Abuseji, 2007).
However, the learning of physics on the part of the learners depends on the way it is presented and the way the learners actively interacts with the learning experiences presented to them.
It has been noted that the goal of teaching and learning of physics is to bring about desirable learning in students. In this process, the learner is expected to receive information, understand it and use it later when the need arises.
By way of definition, an approach refers to the way a learner or a teacher uses in solving problems. Poor academic performance among students has been attributed to poor approaches in the teaching-learning process.
According to the 6th edition of an oxford advanced learner dictionary problem- solving refers to the act of finding ways of dealing with problems. Problem- solving can also be viewed as the ability of a teacher or a learner to provide a solution to the problem using diverse ways. Pollyn (2006) sees the problem- solving as an approach that stands for every positive and active way students can be engaged in their learning to learn meaningfully.
Hence the need to further research on the extent to which problem-solving approaches could affect the academic performance of the student in physics in Ikot Abasi local government area of Akwa Ibom state is sought in this research.
1.2 Statement of the Problem
The researcher has over the years observing the consistent poor academic performance among physics students at external examinations. Some of the school’s principals in some secondary schools in Ikot Abasi attributed the poor performance too many factors including poor state of learning facilities, lack of quality instructional personals as well as a poor method of teaching physics.
However, physics is an activity-oriented discipline. Therefore physics teaching should be activity driven where students are actively engaged throughout the lesson.
Owolabi (2006) observed that modern societies have developed the practice of directed learning when it is not the same as dictating to the learner, but more of helping the learner to exploit his or her own innate capacities for learning and continuous self-development. Hence, the need to investigate this topic.
1.3 Purpose of the Study
The purpose of the study is to determine the effect of problem-solving approaches on the academic performance of students in physics in Ikot Abasi Local Government Area of Akwa Ibom State. Specifically, the study sought to:
(i) Determine the difference in the academic performance of students learned physics with a problem-solving approach and those learned using the lecture method.
Problem Solving Approaches On Academic Performance Of Students In Physics
(ii) Determine the academic performance of students who learned physics with the problem-solving approach by gender.
1.4 Significant of the Study
It is the researches view that findings from this study will:
(1) Assist teachers in the area of adopting appropriate strategies and approaches in the teaching/learning of physics.
(2) To promotes scientific skills acquisition, help students to see the need to embrace a problem-solving approach in the physics learning process as it enhances the discovery of new knowledge and skills.
(3) Enlighten school managers and education planners on the need to provide adequate instructional facilities and quality instructional personals for effective teaching and learning of physics.
(4) The result of this study will also help teachers to employ recommended scientific methods in the teaching of science subjects at all levels of education.
(5) The study will also through mere light to future researchers as it will provide relevant information on problem-solving approaches as the mean to effective teaching/learning of physics.
1.5 Research Hypotheses
Three null hypotheses were formulated as a guide to the study at 0.05 level of significance.
ii There is no significant difference in the academic performance of male-female students when taught using a problem-solving approach.
iii. There is no significant difference in academic performance between physics students learned through a problem-solving approach and those learned through the lecture method.
1.6 Limitation of the Study
The study would have covered all the secondary schools in Ikot Abasi Local Government Area, but due to some factors which threatened the successful completion of this study, the study was therefore limited to some selected secondary schools in the study area.
Prominent among these factors were lack of sufficient finances and inadequate time frame to purchase and transport the necessary materials required for the study.
1.7 Delimitation of the Study
The study was delimited to Ikot Abasi Local Government Area to investigate the problem-solving approach and academic performance of students in physics. The study was also restricted to all secondary schools in the study area, especially senior secondary two students (SS2) for the 2014/15 academic session.
1.8 Operational Definition of Terms
The following terms were operationally defined:
(i) Problem-Solving Approaches: This refers to the ways, strategies or methods through which a teacher or a student uses in solving scientific problems or facing any challenge.
(ii) Lecture Method: It is a teaching method where the instructor acts as the primary information giver.
(iii) Gender: This is a psychological term describing behavior and attributes expected of individuals on the basis of being born either male or female.
(iv) Academic Performance: This refers to the grade obtained by the students in continuous assessment or examination in physics.
(v) Physics: This can be defined as the branch of science concerned with the nature and properties of matter and energy. It is also the study of all forces and their impact on the environment.