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Science High-School Students Understanding of Velocity & Acceleration and of the Motion of Bob When Tension is Removed in a Simple Pendulum

  • Published : 2006.10.30

Abstract

The aims of this study are to investigate science high school students' understanding of velocity and acceleration of a simple pendulum bob, and to investigate their understanding of inertia and gravitational force in the motion of a pendulum bob when the tension is removed. For the study, 46 students that had already studied the physical, concepts in simple pendulum were sampled from a science high school in a large city in Korea. For a comparison with general high school students' conceptions, 49 students were sampled from a general high school in the same city. The test tool for the investigation consisted of four drawing and simple-answering type questions developed by the authors. The outcomes of the study revealed that a substantial number of science high school students have misconceptions concerning acceleration in pendulum motion, and that many of them do not understand the relationship between force and acceleration. In addition, the results of the study showed that more than 30% of the students drew the path of a bob going along the tangential direction at the highest point of the motion, and approximately 20% of them drew the path of a bob falling straight down at the lowest point of the motion.

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References

  1. Alexander, P. (1994). Learning from physics text: A synthesis of recent research. Journal of Research in Science Teaching, 31, 895-911 https://doi.org/10.1002/tea.3660310906
  2. Vinnot, L. (1979). Spontaneous reasoning in elementary dynamics. European Journal of Science Education, 1(2), 205-222 https://doi.org/10.1080/0140528790010209
  3. Clement, J. (1982). Student preconceptions in introductory mechanics. American. J. of Physics. 50, 66-71
  4. Galili, I. & Sela, D. (2002). Pendulum activities in the phy.sics curriculum: Used and missed opportunities. Sydney Conference at UNSW (16-19 Oct. 2002)
  5. Gnnstone, R. F. and Watts, D. M. (1985). Force and motion. In: R. River, E. Guesne, and A. Tiberghien (eds), Children's ideas in science, Open University
  6. Gunstone, R. F. (1987). Student understanding in mechanics: A large population survey. American. J. of Physics. 55, 691-696
  7. Jung, D. Y.(1990). Change of high school students' concepts about force and motion through science instruction, Theses, Seoul National University
  8. Kim, I.(1991). College students' conceptual change about force and acceleration through critical discussion of the rival concepts based on evidence and reflective thinking, doctoral dissertation, Seoul National University
  9. Mariani, C. (1989). Aspect of students' understanding in classroom settings (age 10-17): Case study on motion and inertia. Physics Education 24, 273-277 https://doi.org/10.1088/0031-9120/24/5/307
  10. McDermott, L. C. (1984). Research on conceptual understanding in mechanics. Physics Today, July, 24-32
  11. Santos-Benito, J. V. and Gras-Marti, A. (2004). Ubiquitous drawing errors in the simple pendulum. http://www.saum.uvigo.es/reec/volumenes
  12. Song, J., et al., (2002). Map of misconception in physics. Seoul: Books Hill
  13. Sumida, M. (2002). The public understanding of pendulum motion: From 5 to 8 years old. Proceedings of the International Pendulum Project, Sydney Conference at UNSW (16-19 Oct. 2002)