Virtual Lab Implementation Model Predicts STEM Future Plans: Insights from Contemporary Science Courses in Higher Education, Updated November 2023

Fuente: ERIC Institute of Education Sciences
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Main Authors: Rachel L. Schechter, Paul A. Chase, Apoorva Shivaram
Format: Recurso educativo Open Access
Language:en
Published: 2023
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author Rachel L. Schechter
Paul A. Chase
Apoorva Shivaram
author_facet Rachel L. Schechter
Paul A. Chase
Apoorva Shivaram
Rachel L. Schechter
Paul A. Chase
Apoorva Shivaram
collection Education Resources Information Center
contents Virtual Lab Implementation Model Predicts STEM Future Plans: Insights from Contemporary Science Courses in Higher Education, Updated November 2023 Rachel L. Schechter Paul A. Chase Apoorva Shivaram Computer Simulation Science Laboratories STEM Education Models Prediction Science Instruction Biology College Students Student Attitudes Career Choice STEM Careers Using a mixed-method approach, researchers examined college instructors' use of a virtual lab simulation library, Labster, students' perceptions of the simulations on their learning and future STEM plans, as well as data from the library to explore patterns of lab use and quiz scores. A detailed look at Contemporary Biology I and Biology II quiz scores found that virtual lab use was more regular during the second year of implementation, and students' quiz scores significantly improved, with fewer quiz attempts. An exploration of DFW rates found a 34% decrease of DFW rates across all three pairs of Biology I and Biology II courses, although it did not reach statistical significance. Outcomes of the student survey revealed that when virtual lab assignments occurred before the in-person lab, students were four times more likely to "Plan to work in a STEM field" and over five times more likely to "Plan to take more STEM courses" when compared to students who used the virtual labs at other times. To better understand the difference between a student confident of a future in STEM to one unsure, a sense of belonging to the science community at the university was a distinguishing factor. All results with the exception of the course grades analysis were peer-reviewed and published in the EdMedia + Innovate Learning conference proceedings in July 2023. These findings have important implications for implementing virtual lab simulations to increase student performance, decrease DFW rates, and support continued STEM course enrollment. [This research was funded by Labster.]
format Recurso educativo Open Access
id eric_ED635875
institution ERIC Institute of Education Sciences
language en
publishDate 2023
record_format eric
spellingShingle Virtual Lab Implementation Model Predicts STEM Future Plans: Insights from Contemporary Science Courses in Higher Education, Updated November 2023
Rachel L. Schechter
Paul A. Chase
Apoorva Shivaram
Computer Simulation
Science Laboratories
STEM Education
Models
Prediction
Science Instruction
Biology
College Students
Student Attitudes
Career Choice
STEM Careers
Virtual Lab Implementation Model Predicts STEM Future Plans: Insights from Contemporary Science Courses in Higher Education, Updated November 2023 Rachel L. Schechter Paul A. Chase Apoorva Shivaram Computer Simulation Science Laboratories STEM Education Models Prediction Science Instruction Biology College Students Student Attitudes Career Choice STEM Careers Using a mixed-method approach, researchers examined college instructors' use of a virtual lab simulation library, Labster, students' perceptions of the simulations on their learning and future STEM plans, as well as data from the library to explore patterns of lab use and quiz scores. A detailed look at Contemporary Biology I and Biology II quiz scores found that virtual lab use was more regular during the second year of implementation, and students' quiz scores significantly improved, with fewer quiz attempts. An exploration of DFW rates found a 34% decrease of DFW rates across all three pairs of Biology I and Biology II courses, although it did not reach statistical significance. Outcomes of the student survey revealed that when virtual lab assignments occurred before the in-person lab, students were four times more likely to "Plan to work in a STEM field" and over five times more likely to "Plan to take more STEM courses" when compared to students who used the virtual labs at other times. To better understand the difference between a student confident of a future in STEM to one unsure, a sense of belonging to the science community at the university was a distinguishing factor. All results with the exception of the course grades analysis were peer-reviewed and published in the EdMedia + Innovate Learning conference proceedings in July 2023. These findings have important implications for implementing virtual lab simulations to increase student performance, decrease DFW rates, and support continued STEM course enrollment. [This research was funded by Labster.]
title Virtual Lab Implementation Model Predicts STEM Future Plans: Insights from Contemporary Science Courses in Higher Education, Updated November 2023
topic Computer Simulation
Science Laboratories
STEM Education
Models
Prediction
Science Instruction
Biology
College Students
Student Attitudes
Career Choice
STEM Careers
url https://eric.ed.gov/?id=ED635875