The present invention relates to a new, effective, price competitive, and environmentally preferable ionic fluorosurfactants for a broad range of applications.
The invention presented here is a procedure which can be profitably implemented into a graphics processor to contribute to a noticeable increase of performance.
Bridges need tob e designed against wind-induced vibrations as flatter, phenomena of capital importance in long-span suspension bridges. We introduce an invention based on fixed wings with no moving mechanical parts and no requirements for power source that increases the critical wind speed on 30%. High robustness, low installation costs and total adaptability to local climate conditions represent important advantages to the current state of the art.
The study of biological samples often relies on fluorescence microscopy. Image processing is often difficulted by inefficient methodologies, dependent on the operator. We offer a new platform for automated image analysis which can, in turn, automatically optimize image acquisition parameters on the microscope and can be adapted to any microscope control operative software.
The invention consits of a modular, self-reconfigurable cellular robot system with a plurality of interconnected individual modules, each of which has a tetrahedral fram with changeable shape.
The technology consists of a microfluidic check valve that offers outstanding performance while providing an easy manufacturing technique, independence from lithographic methods, size scalability and an unique set of system properties