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Silicon dioxide at 25 degrees Celsius would typically exist as a solid, specifically in the form of quartz or sand. At this temperature, silicon dioxide does not undergo a phase change and remains in its solid state.
At 100 degrees C, malic acid is still a solid. At 130 degrees C, malic acid will decompose and form carbon monoxide and carbon dioxide gases.
At 30 degrees Celsius, bromine is in a liquid state. Bromine has a melting point of -7.2 degrees Celsius and a boiling point of 58.8 degrees Celsius, so at 30 degrees Celsius it would be in a liquid state.
Chlorine is a solid at 0 degrees celsius because it's also a solid at 25 degrees celsius.
Carbon dioxide is a gas at 10 degrees Celsius, as its boiling point is -78.5 degrees Celsius.
25 deg. Celsius is about "room temperature," and assuming normal pressure (1atm) carbon dioxide is a gas.
Nitrogen is a gas at 25 degrees Celsius, while carbon dioxide can exist as a gas or a solid (dry ice) at this temperature.
25 deg. Celsius is about "room temperature," and assuming normal pressure (1atm) carbon dioxide is a gas.
At 20 degrees Celsius and 25 ATM pressure, carbon dioxide would be in a supercritical state, exhibiting properties of both a gas and a liquid.
CO2, or carbon dioxide, will freeze at -78 degrees Celsius at normal pressure.
Carbon dioxide is a gas at 20 Celsius. It deposits into a solid at -80 Celsius.
At negative 150 degrees Celsius, carbon would be in a solid state.
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Dry ice is simply the chemical carbon dioxide in its solid state. Dry ice is very cold and sublimates directly into carbon dioxide gas at negative 78.5 degrees Celsius at sea level.
Silicon dioxide at 25 degrees Celsius would typically exist as a solid, specifically in the form of quartz or sand. At this temperature, silicon dioxide does not undergo a phase change and remains in its solid state.
There are thousands of substances which are gas at 20 deg C.