Ordinary Differential Equations (with Physical Motivation and Applications Using MATLAB)
| Expected release date is Sep 24th 2026 |
- Availability: Confirm prior to ordering
- Branding: minimum 50 pieces (add’l costs below)
- Check Freight Rates (branded products only)
Branding Options (v), Availability & Lead Times
- 1-Color Imprint: $2.00 ea.
- Promo-Page Insert: $2.50 ea. (full-color printed, single-sided page)
- Belly-Band Wrap: $2.50 ea. (full-color printed)
- Set-Up Charge: $45 per decoration
- Availability: Product availability changes daily, so please confirm your quantity is available prior to placing an order.
- Branded Products: allow 10 business days from proof approval for production. Branding options may be limited or unavailable based on product design or cover artwork.
- Unbranded Products: allow 3-5 business days for shipping. All Unbranded items receive FREE ground shipping in the US. Inquire for international shipping.
- RETURNS/CANCELLATIONS: All orders, branded or unbranded, are NON-CANCELLABLE and NON-RETURNABLE once a purchase order has been received.
Product Details
Overview
The book offers both direct analytic methods for solving Ordinary Differential Equations (ODEs) and approaches for approximate and numerical solutions. This is particularly relevant because many real-world and engineering models rely on ODEs that cannot be solved exactly.
Additionally, the book covers mathematical modeling, providing clear instructions on how to create differential equations that represent real-life situations. It also analyzes common mistakes students make while studying ODEs, with exercises designed to help reinforce understanding of these errors. Furthermore, the book includes explicit numerical algorithms and MATLAB codes for solving specific ODEs, particularly in applications within the natural sciences. Many of the numerical methods presented address nonstandard situations where boundary conditions cannot be applied directly to the problem at hand.
While the book is accessible to undergraduate students, the inclusion of Chapters 5, 6, and 7 ensures its relevance for graduate students and professionals involved in the mathematical modeling of natural phenomena and their applications in engineering and industry.









