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Select your downloads for uploading We appreciate your appreciation. This is the atomix virtual dj pro 6 serial key or download crack. When in need of the atomix virtual dj pro 6 serial key or download crack. You can also receive the atomix virtual dj pro 6 serial key or download crack. When in need of the atomix virtual dj pro 6 serial key or download crack. You can also receive the atomix virtual dj pro 6 serial key or download crack.1. Field of the Invention The present invention relates to an improved method of producing a chemically-modifiable glass and a chemically-modifiable glass produced thereby. 2. Discussion of Related Art Materials with chemically-modifiable surfaces have wide-ranging applications in the electronics, healthcare, and other industries. Typical examples of such materials include glass, metals, ceramic materials, semiconductor materials, and polymer materials. Some of these materials have more limited uses due to their inherent properties. For example, glass has relatively limited chemical and physical properties compared to certain other materials. In contrast, polymers generally have excellent optical, mechanical, and chemical properties, but lack any incorporated functionality that could be readily modified. Also, in these situations, the modification of the material must be carried out without affecting its material properties. Various attempts to modify the surface of materials using chemical methods have been attempted. For example, the surface of inorganic glass can be chemically modified by treating the surface with various chemical compounds or elements. However, most of these methods are generally limited to reactive surfaces that can be reacted with the surface-modifying agent, and are limited to producing glass with functionalized surfaces that allow interaction with biomolecules, such as proteins. Another approach is to form thin polymer layers on the surface of materials, such that they are capable of chemically modifying the surface of the substrate. These thin, polymer layers can be formed, for example, by using dip-pen nanolithography (DPN) techniques. The DPN method is described, for example, in Chang, et al., J. Am. Chem. Soc. 124:1662-1663 (2002), the content of which is incorporated by reference herein. As described in Chang, et al. (see pages 1662-1663, supra), the DPN technique involves “writing” polymers using a sharp AFM (atomic force microscope) tip to selectively remove surface material. The technique can be used to pattern surfaces to create micro and nanoscale structures. f30f4ceada