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The succulent leaves are opposite and sessile. The small, white flowers of Batis maritima are self-incompatible and the morphology of the pollen indicate that the plant is wind pollinated. [3] Seeds are 1.1 mm long and 0.8 mm wide and have an extreme low weight (0.5 mg/seed). [4]
Chloromethane, also called methyl chloride, Refrigerant-40, R-40 or HCC 40, is an organic compound with the chemical formula CH 3 Cl. One of the haloalkanes , it is a colorless, sweet-smelling, flammable gas.
IC 35-47-2-1 prohibits carrying handguns or possession within dwelling by those convicted of domestic battery. IC 35-47-4-6 states that it is a Class A misdemeanor for a person convicted of domestic battery to possess a firearm. IC 35-47-2-7 prohibits transfer or sale of firearms to any person with a felony conviction.
1,1-Dichloroethane is a chlorinated hydrocarbon. It is a colorless oily liquid with a chloroform-like odor. It is not easily soluble in water, but miscible with most organic solvents. Large volumes of 1,1-dichloroethane are manufactured, with annual production exceeding 1 million pounds in the United States.
Chloroethane is produced by hydrochlorination of ethylene: [11]. C 2 H 4 + HCl → C 2 H 5 Cl. At various times in the past, chloroethane has also been produced from ethanol and hydrochloric acid, from ethane and chlorine, or from ethanol and phosphorus trichloride, but these routes are no longer economical.
Batis (turtleweed, saltwort, beachwort, or pickleweed) is a genus of two species of flowering plants, the only genus in the family Bataceae. They are halophytic (salt tolerant) plants, native to the coastal salt marshes of warm temperate and tropical America ( B. maritima ) and tropical Australasia ( B. argillicola ).
Bromodichloromethane is a trihalomethane with formula C H Br Cl 2.It is a colorless, nonflammable liquid which will dissolve in water, or evaporate in air. [1] Most of the chemical is produced through the chlorine disinfection process, [1] and as a result it can occur in municipally-treated drinking water. [2]
6.43 kJ/mol Std entropy change of fusion, Δ fus S o: 36.66 J/(mol·K) Std enthalpy change of vaporization, Δ vap H o: 21.535 kJ/mol at –24.21 °C 20.09 kJ/mol at 20 °C Std entropy change of vaporization, Δ vap S o: 86.51 J/(mol·K) at –24.21 °C Solid properties Std enthalpy change of formation, Δ f H o solid? kJ/mol Standard molar ...