<p>1. Introduction to Process Dynamics and Control Systems<br>2. Nonlinear Dynamic Mathematical Modeling of Chemical/Biological/Green Processes<br>3. Laplace Transforms, Linear State Space Models and Transfer Functions<br>4. Empirical Models and Process Identification<br>5. Control System Instrumentation and Controllers<br>6. Closed-Loop Systems, Stability and Design of PID controllers<br>7. Feedforward Control and Enhanced Single-Loop Controllers<br>8. Frequency Response and Stability in the Frequency Domain<br>9. Design of Discrete Controllers in the z-domain<br>10. Stochastic Processes<br>11. Design of Deterministic Controllers in the State-Space<br>12. Nonlinear Geometric Control<br>13. Control and Optimization of Batch Processes<br>14. Model Predictive Controllers<br>15. Control of Distributed Parameter Systems</p>