Understanding microbial roles in nutrient cycling is essential in environmental science and engineering education, yet students often struggle with these topics due to limited microbiology background and the abstract nature of microbial processes. To support deeper learning, I developed a flexible, low-cost classroom activity using narrative-style flashcards representing soil microorganisms for my Soil Science class on soil microbiology session. Rather than delivering nutrient cycles through direct instruction, I facilitated a student-centered session in which learners collaboratively mapped microbial transformations across the nitrogen, carbon, phosphorus, and sulfur cycles. Students first identified key nutrient forms and then used their flashcards to construct systems diagrams through guided reasoning, peer discussion, and instructor cues. The activity emphasized connections between microbial function, environmental context, and ecosystem outcomes, with applications to real-world systems such as wastewater treatment. Post-activity quiz results showed high content retention (average 9.5/10), and classroom observations indicated strong engagement and emerging systems thinking. This approach offers an accessible model for introducing microbiological concepts in interdisciplinary environmental curricula.
Liu Cao (Mon,) studied this question.