The Content and Methodological Features of Professionally Oriented Training of Engineering Students in Higher Mathematics

Q1 Social Sciences
Saule K. Yermaganbetova, Alma E. Abylkasymova, Kh.Zh. Baishagirov
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引用次数: 0

Abstract

This study reveals the content and methodological features of professionally oriented training of engineering students in higher mathematics. The authors provide examples of applied tasks for students of different technical specialities. The relevance of this article is determined by the fact that a modern higher educational institution sets itself the task of providing graduates with a certain set of competencies, as well as a set of acquired knowledge and skills. Thus, young people in their future life can easily navigate in terms of professional development. Nothing prevents them from easily adapting to the constantly changing social and economic conditions, meeting the current needs of the personnel market. All this allows building a competent process of training future specialists. Young engineers can build mutual understanding, cooperate with representatives of other industries, since solving complex problems and conducting joint research requires, first of all, the presence of a solid foundation consisting of natural science and mathematical disciplines, the establishment of which should take place within the framework of a higher educational institution. It is for this reason that one of the most significant problems should be identified related to the mathematical training of students of technical higher educational institutions. The purpose of the study is to identify and clarify the content and methodological features of professional training of engineering students in higher mathematics. Mathematics has a special and priority place among other sciences studied at the university. The modern course of mathematics is based on a highly developed logical and computational apparatus. Without the current achievements in the field of mathematics, there would be no high technologies that are everywhere today and are found in all areas of human activity without exception. The methods and ideas of mathematics are widely used in the cycle of technical disciplines. Mathematics, due to its inherent applied capabilities, is used in natural science and engineering research.
高等数学工科学生专业定向培养的内容和方法特点
本研究揭示了以专业为导向的高等数学工科学生培训的内容和方法特点。作者举例说明了不同技术专业学生的应用任务。这篇文章的现实意义在于,现代高等教育机构的任务是为毕业生提供一定的能力,以及一系列已掌握的知识和技能。因此,年轻人在未来的生活中可以很容易地适应职业发展。没有什么能阻止他们轻松适应不断变化的社会和经济条件,满足当前人才市场的需求。所有这一切都为培养未来的专业人才提供了有利条件。青年工程师可以与其他行业的代表建立相互理解和合作关系,因为要解决复杂问题和开展联合研究,首先需要具备由自然科学和数学学科组成的坚实基础。因此,应找出与高等技术教育机构学生数学培训有关的最重要问题之一。本研究的目的是确定和阐明工科学生高等数学专业培训的内容和方法特点。在大学学习的其他科学中,数学具有特殊和优先的地位。现代数学课程以高度发达的逻辑和计算工具为基础。没有当前数学领域的成就,就不会有今天随处可见、无一例外地存在于人类活动各个领域的高技术。数学的方法和思想广泛应用于各个技术学科。数学因其固有的应用能力,被用于自然科学和工程学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Higher Education for the Future
Higher Education for the Future Social Sciences-Education
CiteScore
24.10
自引率
0.00%
发文量
8
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