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Sharpies contain a type of ink known as a "permanent ink," which is distinct from "liquid ink" found in pens such as rollerballs or fountain pens. Permanent ink in Sharpies is alcohol-based, allowing for quick drying, water resistance, and the ability to mark on various surfaces. While it can appear liquid-like when applied, its formulation is specifically designed to provide the durable qualities expected from permanent markers. Unlike liquid ink pens that rely on a consistent flow of ink from a reservoir through a nib, Sharpies dispense their ink through a felt tip that is saturated with the ink, allowing for precise application without the need for gravity or capillary action to feed the ink.
Yes, inkjet printers can use UV (Ultraviolet) inks, but it requires specialized equipment. Traditional inkjet printers are designed for aqueous or solvent-based inks, whereas UV inkjet printers are equipped with UV light sources to cure the ink immediately upon printing. This technology allows for printing on a wide variety of substrates, including non-porous materials like plastic, metal, and glass, which are challenging for conventional inks. UV inks dry instantly, reducing smudging and allowing for faster production times. Additionally, prints made with UV inks are more durable and resistant to fading, scratches, and water. However, UV inkjet printers tend to be more expensive due to the specialized technology and the need for ongoing maintenance of the UV light source. For businesses requiring high-quality, durable prints on diverse materials, investing in a UV inkjet printer could be highly beneficial.
Acrylonitrile (C3H3N) can be synthesized through the Sohio process, which involves the catalytic ammoxidation of propylene. The reaction is as follows: C3H6 + NH3 + 3/2 O2 → C3H3N + 3 H2O. Assuming 100% yield, the mass of acrylonitrile produced depends on the molar masses of the reactants and the stoichiometry of the reaction. Propylene (C3H6) has a molar mass of 42.08 g/mol, NH3 has a molar mass of 17.03 g/mol, and acrylonitrile has a molar mass of 53.06 g/mol. For simplification, if one mole of propylene (42.08 g) is used, theoretically, one mole of acrylonitrile (53.06 g) is produced at 100% yield. This is under ideal conditions, not accounting for practical limitations such as incomplete reactions, side reactions, or process losses.
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