👉 Bacteria math, often referred to as bacterial growth dynamics, involves understanding how bacterial populations change over time under various conditions. It's primarily governed by the exponential growth model, where bacteria reproduce rapidly in the absence of limiting factors like nutrients or space. The basic equation is N(t) = N₀
e^(rt), where N(t) is the population size at time t, N₀ is the initial population, r is the growth rate, and e is the base of the natural logarithm. This model assumes ideal conditions and doesn't account for factors like resource depletion or environmental stress, which can lead to logistic growth in real-world scenarios. Bacteria math also explores how different growth rates and environmental conditions affect population sizes, crucial for applications in medicine, agriculture, and biotechnology.