k Cisdibromoethene molecule Cisdibromoethene molecule. Computergenerated molecular model of cisdibromoethene C2H2Br2. The cis form of dibromoethene has both bromine atoms red on the same side of the carbon atoms black, which are connected with a nonrotating double bond. Hydrogen atoms are white. Trans dibromoethene not seen has the bromine atoms on opposite sides of the carbon atoms. Dibromoethene has been used to fumigate fruit and vegetable produce to kill pests. However, there is concern about its effect on human health because it is carcinogenic cancercausing. See image A700212 for transdibromoethene. Stock Photo - Afloimages
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Cis dibromoethene molecule Cis dibromoethene molecule. Computer generated molecular model of cis dibromoethene  C2H2Br2 . The  cis  form of dibromoethene has both bromine atoms  red  on the same side of the carbon atoms  black , which are connected with a non rotating double bond. Hydrogen atoms are white. Trans  dibromoethene  not seen  has the bromine atoms on opposite sides of the carbon atoms. Dibromoethene has been used to fumigate fruit and vegetable produce to kill pests. However, there is concern about its effect on human health because it is carcinogenic  cancer causing . See image A700 212 for trans dibromoethene.
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Cis-dibromoethene molecule

Cis-dibromoethene molecule. Computer-generated molecular model of cis-dibromoethene (C2H2Br2). The 'cis' form of dibromoethene has both bromine atoms (red) on the same side of the carbon atoms (black), which are connected with a non-rotating double bond. Hydrogen atoms are white. Trans- dibromoethene (not seen) has the bromine atoms on opposite sides of the carbon atoms. Dibromoethene has been used to fumigate fruit and vegetable produce to kill pests. However, there is concern about its effect on human health because it is carcinogenic (cancer-causing). See image A700/212 for trans-dibromoethene.

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