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Trypanolytic compound lines for treatment of trypanosome-related diseases

The invention provides small molecular compounds as potential drugs against trypanosome infection diseases including African trypanosomiasis (human “sleeping sickness” and cattle “Nagana pest”), Chagas disease and Leishmaniasis.

Forests endangered by climate change, international experts conclude

To broadly address this topic, an international group of 65 leading tree physiologists, forest ecologists and modelers from six continents met at the Max…

Melt Emulsification without Emulsifier / Protective Colloids

The section food process engineering at the Karlsruhe Institute of Technology (KIT) has developed a processing concept and the required homogenization valve to produce dispersions of solid particles with reproducible and uniform characteristics without the use of special additives (emulsifiers or protective colloids). The particle size can be adjusted within a broad range, with the possibility of even submicron-sized particles. Particles generated by this process are of particular use in paints, varnishes and pharmaceuticals.

Heat Forming with Innovative In Situ Heating of Inserts

An innovative, energy-saving heat forming method has been developed at the University of Stuttgart for the fabrication of thermoplastic molded parts, in particular fibre-reinforced composites from semi-finished products (organic sheets). The method provides a more effective and surface-preserving way of heating and forming semi-finished products. In addition, it is possible to achieve a process-integrated quality assurance, a documentation of the quality as well as an individual quality assessment.

Flow Surface for Three-dimensional Boundary Layer Flow

At the University of Stuttgart (Germany) a new method was developed to significantly improve the stability of laminar flow over e.g. a wing, tail plane or wind turbine rotor in order to reduce drag and therefore reach higher efficiency of machines.

Laser Optical Spark Plug Sensor

The novel measurement system permits minimally invasive measurements of tracer LIF-signals by a combination of fibre and microoptical elements integrated into a fully functional spark plug. Thus e.g. fuel distribution, temperature or air-fuel ratio can be measured.

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