Jump Assemble is a MOBA game focused on 5vs5 team confrontations. Players will participate in exciting bouncing and jumping matches where speed and strategy both play important roles. The game is developed by an experienced team and designed to provide an ultimate experience for both new gamers and MOBA experts.

Get ready to jump up and get down to the infectious sounds of Belgium Jump-Up Drum n Bass! This playlist features the best Jump-Up tracks from the vibrant Belgian Drum & Bass scene, all available for free download. Packed with bouncy basslines, catchy hooks, and high-energy beats, this playlist is perfect for those who love to dance and get gassed. Follow Ravers Assemble on Soundcloud to stay up to date on the latest releases F/DL & tracks, and be sure to check out our socials (@raversassemble) for more DnB goodness. Share this playlist with your fellow ravers and DJs to spread the word. Discover new tracks, find fresh sounds, and elevate your Jump-Up game with this must-hear playlist!


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The structural and dynamic properties of low ionic strength micellar solutions of the cationic surfactant perfluorooctylbutane trimethylammonium bromide have been investigated by cryo-TEM, small-angle neutron scattering, small-angle X-ray scattering, T-jump and rheological experiments. The surfactant molecules self-assemble into narrow ribbons with average dimensions on the order of 4 nm x 3 nm, either under salt-free conditions or in the presence of up to 30 mM KBr or NaF. Cryo-TEM also reveals in the salt-free systems the presence of networks of multiconnected micelles. Rheological experiments showed that these surfactant systems exhibit a strong shear-thickening effect even in the presence of up to 30 mM KBr. The T-jump response of the micellar solutions was found to be multiexponential. This observation rules out the presence of only linear micelles with an exponential length distribution and suggests more complex topologies of the micellar aggregates. The relaxation time associated with the predominant process in the T-jump relaxation is strongly correlated to the critical shear rate beyond which shear thickening occurs, thus indicating that this critical shear rate is controlled by the micellar kinetics.

A process has been demonstrated recently to assemble microspheres on a patterned electrode under the influence of an applied voltage. Here we examine the mechanics of this process, and describe both the conditions under which excess microspheres jump off the electrode when the voltage is applied, and the forces that attract the remaining microspheres to the desired positions. A quantitative mechanistic understanding of this process rationalizes experimental observations, provides scaling relations, and suggests modifications of the process. 2351a5e196

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