If you have any questions, you are always welcome to contact us. We'll get back to you as soon as possible, withing 24 hours on weekdays.
Customer service
All questions about your order, return and delivery must be sent to our customer service team by e-mail at yourstore@yourdomain.com
Sale & Press
If you are interested in selling our products, need more information about our brand or wish to make a collaboration, please contact us at press@yourdomain.com
Help
If you have any questions, you are always welcome to contact us. We'll get back to you as soon as possible, withing 24 hours on weekdays.
Customer service
All questions about your order, return and delivery must be sent to our customer service team by e-mail at yourstore@yourdomain.com
Sale & Press
If you are interested in selling our products, need more information about our brand or wish to make a collaboration, please contact us at press@yourdomain.com
In many areas, like geometric reasoning, computer modeling, implicitization, computer vision, robotics and kinematics, polynomial equations are used to model various behaviors and/or configurations. Frequently, it is necessary to derive direct dependence between parameters of the problem. Variable elimination helps to derive these dependencies and get direct correspondence between the parameters of the problem. In general, we are seeking to derive algebraic conditions on the parameters of a polynomial system so that solutions to the system exists. For some time now the Dixon resultant formulation has proved to be the most efficient tool to compute such a condition, called resultant. This work builds on the success of the Dixon resultant formulation to develop new method as well as provide number of insights, so that the Dixonbased methods can be applied more readily. The proposed method is able to better adapt to input polynomial systems with ad hoc structures with various optimization techniques. Besides the practical significance,the new construction bridges the gap between the DixonBezout matrix formulations and Sylvestertype constructions.
⚠️ WARNING (California Proposition 65):
This product may contain chemicals known to the State of California to cause cancer,
birth defects, or other reproductive harm.
For MAP (Minimum Advertised Price) violations and Intellectual Property (IP) or Trademark concerns, please contact:
support@ergodebooks.com
⚠️ California Proposition 65 Warning: Some products sold on this website may expose you to chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm. For more information, visit www.P65Warnings.ca.gov.