Preparing the Next Generation: Integrating Industry Practices into Undergraduate Chemistry Teaching
Student in the teaching labs at Salford University

Preparing the Next Generation: Integrating Industry Practices into Undergraduate Chemistry Teaching

As chemistry evolves, it's crucial that undergraduate teaching aligns with the advanced techniques shaping industry and research today. Incorporating modern technologies into labs not only strengthens students' grasp of fundamental principles but also equips them with skills needed for their professional careers. Three innovative processes—waterless air condensing, flow chemistry, and electrochemistry—can enhance the learning experience.

The CondenSyn waterless air condenser offers a sustainable alternative to traditional water condensers, conserving water and eliminating the risks of flooding. It provides an easy-to-use and reliable solution, preparing students for the growing focus on sustainability in industry.

Flow chemistry, with the fReactor, introduces students to continuous reaction systems that are more efficient and scalable than traditional batch methods. This technology, widely used in the pharmaceutical and chemical sectors, enhances lab safety while offering real-world relevance.

Finally, electrochemistry is essential in many industries but underrepresented in curricula. Tools like ElectroReact offer accessible platforms for students to explore electrochemical processes, fostering innovation and sustainability in fields like battery technology and chemical synthesis.

Integrating these technologies into teaching prepares students for the future of chemistry, offering them hands-on experience with essential tools and methods.

Find out more here.

#ChemistryEducation #STEM #LaboratoryInnovation #SustainableChemistry

Kirsty Waight

Unusually organised creative soul, making chemistry beautiful.

5 个月

It's so important to give the next generation of chemists the relevant tools to progress their work, and enable them to hit the ground running.

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