Investigating the influence of temperature on salt solubility in water: a STEM approach with pre-university chemistry students

J. L. Araújo, Carla Morais
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Abstract

Abstract In a society heavily influenced by technological advancements, developing scientific and technological literacy among young people is essential. Along these lines, this research describes a STEM activity developed to promote the teaching of chemistry content related to the solubility of potassium nitrate in water. It also facilitated the mastery of technological skills such as programming Arduino microcontrollers and using Microsoft Excel as tools for automatic data acquisition and analysis. Eighty pre-university Chemistry students participated in this research. This pedagogical approach was divided into three main stages: (1) preliminary research on components used in the experimental apparatus; (2) introduction to the assembly of electrical circuits and Arduino programming; (3) experimental investigation of the dependence of potassium nitrate solubility on temperature. The activity allowed the students to successfully achieve the proposed chemistry learning objectives while mobilizing other scientific and technological knowledge and skills. Despite the students’ limited prior knowledge of programming and electronics, as well as their limited proficiency in data analysis software, the integration of programming in the Chemistry class proved to be a differentiating factor with a highly positive impact, particularly in terms of motivation and interest among most students.
探究温度对盐在水中溶解度的影响:与大学预科化学学生一起采用 STEM 方法
摘要 在一个深受科技进步影响的社会中,培养青少年的科技素养至关重要。根据这一思路,本研究介绍了为促进与硝酸钾在水中的溶解性有关的化学教学内容而开发的 STEM 活动。该活动还有助于掌握技术技能,如 Arduino 微控制器编程和使用 Microsoft Excel 作为自动获取和分析数据的工具。80 名大学预科化学系学生参与了这项研究。这种教学方法分为三个主要阶段:(1) 对实验仪器中使用的元件进行初步研究;(2) 介绍电路组装和 Arduino 编程;(3) 实验探究硝酸钾溶解度与温度的关系。该活动让学生成功实现了拟议的化学学习目标,同时调动了其他科技知识和技能。尽管学生之前对编程和电子学的了解有限,对数据分析软件的熟练程度也有限,但事实证明,将编程融入化学课是一个非常积极的差异化因素,特别是在激发大多数学生的学习动机和兴趣方面。
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