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International Journal of Educational Innovation and Science, 2020, 1(1); doi: 10.38007/IJEIS.2020.010101.

Influence of Strengthening the Training of Mathematical Innovative Thinking on the Cultivation of College Talents

Author(s)

Qingjun Wang

Corresponding Author:
Qingjun Wang
Affiliation(s)

Shenyang Aerospace University, Shenyang, Liaoning, China

Abstract

After entering the 21st century, all aspects of society are in rapid development. People gradually realize that students' innovation ability is the focus of future competition. Therefore, it is particularly important to train excellent talents and strengthen innovative thinking training in modern mathematics education. This paper mainly studies the influence of strengthening the training of mathematical innovative thinking on the cultivation of college talents. This paper mainly relies on mind mapping tool to improve students' innovative thinking level in mathematics. By means of teaching practice and questionnaire survey, relevant data are obtained from the surveyed students, and various influences of strengthening mathematical innovative thinking training on college talents are analyzed. Research from the characteristic of mathematics teaching, aiming at strengthening the math creative thinking training of talents in colleges and universities, in order to improve the students' comprehensive ability, guide the formation of students' mathematics innovation thinking ability, for the purpose of the students' mathematical logic thinking combined with mind mapping of divergent, ultimately to cultivate more outstanding social talents as the goal, and applied to the mathematics teaching, change the traditional teaching of the single, boring and rigid teaching methods, inspire students' enthusiasm in learning mathematics course, gradually guide the formation of students' mathematics creative thinking. Do you think innovative thinking in mathematics is useful in your life and study? According to the survey data of the question, the number of affirmative answers accounted for 87.3%, and a small number of students chose to be uncertain. It can be seen that the students improved their ability to solve practical problems by strengthening the training of innovative thinking in mathematics and learned how to apply what they had learned.

Keywords

Mathematical Innovative Thinking, College Talent Training, Thinking Training, Mathematical Thinking

Cite This Paper

Qingjun Wang. Influence of Strengthening the Training of Mathematical Innovative Thinking on the Cultivation of College Talents.  International Journal of Educational Innovation and Science (2020), Vol. 1, Issue 1: 1-14. https://doi.org/10.38007/IJEIS.2020.010101.

References

[1] Taylan, Didem R. Characterizing a highly accomplished teacher’s noticing of third-grade students’ mathematical thinking. Journal of Mathematics Teacher Education, 2017, 20(3):259-280. https://doi.org/10.1007/s10857-015-9326-7

[2] Wentworth N M, Monroe E E. Parent Beliefs about Technology and Innovative Mathematics Instruction. School Science and Mathematics, 1996, 96(3):128-132. https://doi.org/10.1111/j.1949-8594.1996.tb15826.x

[3] Achuonye K A. Predominant teaching strategies in schools: Implications for curriculum implementation in mathematics, science and technology. Educational Research & Reviews, 2015, 10(15):2096-2103. https://doi.org/10.5897/ERR2015.2184

[4] Dyer E B, Sherin M G. Instructional reasoning about interpretations of student thinking that supports responsive teaching in secondary mathematics. ZDM, 2016, 48(1-2):69-82. https://doi.org/10.1007/s11858-015-0740-1

[5] Kusumaningsih W, Darhim, Herman T, et al. Gender differences in algebraic thinking ability to solve mathematics problems. Journal of Physics: Conference Series, 2018, 1013(1):012143. https://doi.org/10.1088/1742-6596/1013/1/012143

[6] Thomas M O J. Inhibiting Intuitive Thinking in Mathematics Education.. ZDM, 2015, 47(5):865-876. https://doi.org/10.1007/s11858-015-0721-4

[7] Jitendra A K, Dupuis D N, Star J R, et al. The Effects of Schema-Based Instruction on the Proportional Thinking of Students With Mathematics Difficulties With and Without Reading Difficulties. Journal of Learning Disabilities, 2016, 49(4):354. https://doi.org/10.1177/0022219414554228

[8] King S O. Catalyzing Genetic Thinking in Undergraduate Mathematics Education. Curriculum & Teaching, 2016, 31(2):27-46. https://doi.org/10.7459/ct/31.2.03

[9] Weintrop D, Beheshti E, Horn M, et al. Defining Computational Thinking for Mathematics and Science Classrooms. Journal of Science Education & Technology, 2016, 25(1):127-147. https://doi.org/10.1007/s10956-015-9581-5

[10] Draeger J, Hill P D P, Mahler R. Developing a Student Conception of Academic Rigor. Innovative Higher Education, 2015, 40(3):1-14. https://doi.org/10.1007/s10755-014-9308-1

[11] Khan F M, Sarmin N H, Khan A, et al. Some Innovative Types of Fuzzy Bi-Ideals in Ordered Semigroups. Journal of Advanced Mathematics & Applications, 2015, 4(1):24-36. https://doi.org/10.1166/jama.2015.1070

[12] Carroll C, Gill O. An innovative approach to evaluating the University of Limerick’s Mathematics Learning Centre. Teaching Mathematics & Its Applications International Journal of the Ima, 2018, 31(4):199-214. https://doi.org/10.1093/teamat/hrs008

[13] Berna T T, Ayten E, Adem C. A daunting task for pre-service mathematics teachers: Developing students’ mathematical thinking. Educational Research and Reviews, 2015, 10(16):2276-2289. https://doi.org/10.5897/ERR2015.2361

[14] Calcagnini G, Favaretto I, Giombini G, et al. The role of universities in the location of innovative start-ups. Journal of Technology Transfer, 2016, 41(4):670-693. https://doi.org/10.1007/s10961-015-9396-9

[15] Lee K H. Convergent and divergent thinking in task modification: a case of Korean prospective mathematics teachers’ exploration. ZDM, 2017, 49(7):995-1008. https://doi.org/10.1007/s11858-017-0889-x

[16] Kai S C, Miller K F, Mckenzie R, et al. Where Low and High Inference Data Converge: Validation of CLASS Assessment of Mathematics Instruction Using Mobile Eye Tracking with Expert and Novice Teachers. International Journal of Science & Mathematics Education, 2015, 13(2):389-403. https://doi.org/10.1007/s10763-014-9610-5

[17] Cruciani M. On the inference of meaning in use in explicit verbal communication. Sistemi Intelligenti, 2012, 24(2):227-240.

[18] Brown A. Developing Career Adaptability and Innovative Capabilities through Learning and Working in Norway and the United Kingdom. Journal of the Knowledge Economy, 2015, 6(2):402-419. https://doi.org/10.1007/s13132-014-0215-6

[19] Wei W U, Zhong Z, Chen M. A Study on the Training Mode of Discipline-oriented Innovative and Entrepreneurial Talents——Taking Agricultural, Forestry and Normal Universities as an Example. Asian Agricultural Research, 2018, 10(12):80-82.

[20] Moodley U, Mudaly V. A study of leaners' conceptual development in mathematics in a grade eight class using concept mapping. Journal of Educational Studies, 2016, 14(1):20-40.