Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys

Engineering geology applies geological theories and methods to the practice of engineering activities, evaluates the engineering geological conditions of the engineering site through engineering geological investigation and comprehensive research of theories, solves the engineering geological proble...

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Main Authors: Binbin Yang, Xiaoming Zhao, Dongqi Tang
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2022/9014895
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author Binbin Yang
Xiaoming Zhao
Dongqi Tang
author_facet Binbin Yang
Xiaoming Zhao
Dongqi Tang
author_sort Binbin Yang
collection DOAJ
description Engineering geology applies geological theories and methods to the practice of engineering activities, evaluates the engineering geological conditions of the engineering site through engineering geological investigation and comprehensive research of theories, solves the engineering geological problems related to engineering activities, predicts and demonstrates the occurrence and development laws of engineering geological problems in the engineering activity area, and puts forward technical measures for prevention and control, so as to contribute to the planning, design, and construction and provide necessary geological and technical data for use and maintenance. Based on the theory of multiattribute decision-making, this paper puts forward the evaluation index system of engineering geology teaching quality in applied universities. A curriculum teaching quality evaluation index system is constructed, which is composed of four main indexes: online resources and teaching, offline teaching process, classroom teaching quality evaluation, and classroom teaching quality evaluation. Furthermore, 11 second-class indices and 28 third-class indices are considered. The judgment matrices and membership degree of each attribute are obtained through use of a questionnaire, and the total weight of each subitem is calculated using the analytic hierarchy process. The calculation results show that the classroom instructional quality of the engineering geology course can be considered excellent; furthermore, other courses could also be evaluated using the same method, where those with low evaluation results can be further improved. Using the fuzzy comprehensive evaluation method based on the analytic hierarchy process, we evaluate the instructional quality, comprehensively consider the nonlinear and fuzzy characteristics of evaluation factors, can scientifically calculate the weight value of each evaluation index, and combine qualitative and quantitative aspects, in order to objectively provide an evaluation of the classroom instructional quality of teachers, which is conducive to the high-quality construction of university courses.
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issn 1468-8123
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publishDate 2022-01-01
publisher Wiley
record_format Article
series Geofluids
spelling doaj-art-b50e2e06c45349709d7152ef87ab82b42025-08-20T02:23:31ZengWileyGeofluids1468-81232022-01-01202210.1155/2022/9014895Evaluation of Blended Learning Effect of Engineering Geology Based on Online SurveysBinbin Yang0Xiaoming Zhao1Dongqi Tang2School of Civil EngineeringSchool of Civil EngineeringSchool of Civil EngineeringEngineering geology applies geological theories and methods to the practice of engineering activities, evaluates the engineering geological conditions of the engineering site through engineering geological investigation and comprehensive research of theories, solves the engineering geological problems related to engineering activities, predicts and demonstrates the occurrence and development laws of engineering geological problems in the engineering activity area, and puts forward technical measures for prevention and control, so as to contribute to the planning, design, and construction and provide necessary geological and technical data for use and maintenance. Based on the theory of multiattribute decision-making, this paper puts forward the evaluation index system of engineering geology teaching quality in applied universities. A curriculum teaching quality evaluation index system is constructed, which is composed of four main indexes: online resources and teaching, offline teaching process, classroom teaching quality evaluation, and classroom teaching quality evaluation. Furthermore, 11 second-class indices and 28 third-class indices are considered. The judgment matrices and membership degree of each attribute are obtained through use of a questionnaire, and the total weight of each subitem is calculated using the analytic hierarchy process. The calculation results show that the classroom instructional quality of the engineering geology course can be considered excellent; furthermore, other courses could also be evaluated using the same method, where those with low evaluation results can be further improved. Using the fuzzy comprehensive evaluation method based on the analytic hierarchy process, we evaluate the instructional quality, comprehensively consider the nonlinear and fuzzy characteristics of evaluation factors, can scientifically calculate the weight value of each evaluation index, and combine qualitative and quantitative aspects, in order to objectively provide an evaluation of the classroom instructional quality of teachers, which is conducive to the high-quality construction of university courses.http://dx.doi.org/10.1155/2022/9014895
spellingShingle Binbin Yang
Xiaoming Zhao
Dongqi Tang
Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
Geofluids
title Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
title_full Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
title_fullStr Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
title_full_unstemmed Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
title_short Evaluation of Blended Learning Effect of Engineering Geology Based on Online Surveys
title_sort evaluation of blended learning effect of engineering geology based on online surveys
url http://dx.doi.org/10.1155/2022/9014895
work_keys_str_mv AT binbinyang evaluationofblendedlearningeffectofengineeringgeologybasedononlinesurveys
AT xiaomingzhao evaluationofblendedlearningeffectofengineeringgeologybasedononlinesurveys
AT dongqitang evaluationofblendedlearningeffectofengineeringgeologybasedononlinesurveys