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Decane undergoes combustion, just like other alkanes. In the presence of sufficient oxygen, it burns to form water and carbon dioxide. 2 C 10 H 22 + 31 O 2 → 20 CO 2 + 22 H 2 O. With insufficient oxygen, carbon monoxide is also formed. It can be manufactured in the laboratory without fossil fuels. [9]
Carbon dioxide: 3.640 0.04267 Carbon disulfide: 11.77 0.07685 Carbon monoxide: 1.505 0.0398500 Carbon tetrachloride: ... Decane [2] 52.74 0.3043 1-Decanol [2] 59.51
The following is a list of straight-chain alkanes, the total number of isomers of each (including branched chains), and their common names, sorted by number of carbon atoms. [ 1 ] [ 2 ] Number of C atoms
This is the list of the 75 isomers of decane. [1] [2] Straight-chain. n-Decane; Nonane. 2-Methylnonane; 3-3-Methylnonane; 4-Methylnonane; 5-Methylnonane; Octane
In the case of pure carbon or carbon monoxide, the two heating values are almost identical, the difference being the sensible heat content of carbon dioxide between 150 °C and 25 °C (sensible heat exchange causes a change of temperature, while latent heat is added or subtracted for phase transitions at constant temperature.
The acentric factor ω is a conceptual number introduced by Kenneth Pitzer in 1955, proven to be useful in the description of fluids. [1] It has become a standard for the phase characterization of single and pure components, along with other state description parameters such as molecular weight, critical temperature, critical pressure, and critical volume (or critical compressibility).
Carbon dioxide: CO 2: 200 10.1 300 15.0 400 19.7 500 24.0 600 28.0 Helium: He 100 9.6 200 15.1 300 19.9 400 24.3 500 28.3 600 32.2 Water vapor H 2 O 380 12.498 400 13.278 450 15.267 500 17.299 550 19.356 600 21.425 650 23.496 700 25.562 750 27.617 800 29.657 900 33.680 1000 37.615 1100 41.453 1200 45.192
Carbon dioxide is the lasing medium in a carbon-dioxide laser, which is one of the earliest type of lasers. Carbon dioxide can be used as a means of controlling the pH of swimming pools, [139] by continuously adding gas to the water, thus keeping the pH from rising. Among the advantages of this is the avoidance of handling (more hazardous) acids.
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