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1 the vacuum ultraviolet photodissociation of methyl chloride.
2 ne-depleting halocarbons, methyl bromide and methyl chloride.
3 esponsible for the production of atmospheric methyl chloride.
4 loride (9) and [1,3-bis(benzyloxy)-2-propoxy]methyl chloride (18) to provide the corresponding protec
5 8a) was condensed with [2-(benzyloxy)ethoxy]-methyl chloride (9) and [1,3-bis(benzyloxy)-2-propoxy]me
7 as used to examine the SN2 reactions between methyl chloride and hydroxide ion and between 1,2-dichlo
10 yme is active and promotes the production of methyl chloride by E. coli under in vivo conditions.
14 thene (C(2)Cl(4)), chloroform (CHCl(3)), and methyl chloride (CH(3)Cl), are gases not regulated by th
16 mined using a l-[N-methyl]-[(3)H]scopolamine methyl chloride competition binding assay in the presenc
17 ver, the reactions of BrO(-) and ClO(-) with methyl chloride, ethyl chloride, and isopropyl chloride
18 oride transferase catalyzes the synthesis of methyl chloride from S-adenosine-L-methionine and chlori
19 ric radioligands, [N-methyl-(3)H]scopolamine methyl chloride (M(2) pEC(50,diss) = 6.73 +/- 0.10; M(3)
21 hloride (OR = 2.33, 95% CI: 1.23, 4.40), and methyl chloride (OR = 1.44, 95% CI: 0.94, 2.20) and tota
22 CI: 1.82, 14.15; P(interaction) = 0.04; and methyl chloride: OR = 2.37, 95% CI: 1.24, 4.51; P(intera
24 ylase gene and the expression of recombinant methyl chloride transferase in Escherichia coli and comp
26 e presence of the methylated (C1) compounds, methyl chloride, trimethylamine-oxide (TMAO) or dimethyl