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1 and removal of the DEPC-histidine adduct by sodium hydroxide.
2 release agents: puromycin, RNase A/EDTA, and sodium hydroxide.
3 tment with phenyllithium followed by aqueous sodium hydroxide.
4 line conditions using sodium borohydride and sodium hydroxide.
5 chloric acid as well as boiling concentrated sodium hydroxide.
6 ion from solutions of 137Cs dissolved in 1 M sodium hydroxide.
7 ed relative to controls receiving only 0.1 M sodium hydroxide.
8 cis/trans-2, designed for the extraction of sodium hydroxide.
9 ns of ammonium oxalate, sodium carbonate and sodium hydroxide.
10 ed meat sample was extracted with 30 mL of a sodium hydroxide (0.025 M) solution at 100 degrees C for
11 with methyl iodide in the presence of solid sodium hydroxide and can be totally avoided by treating
12 omprises an accelerated digestion step using sodium hydroxide and nitric acid in combination to diges
13 ased on gradient elution of aqueous solvents sodium hydroxide and sodium acetate, in contrast to conv
14 or of alkaline-surfactant flooding employing sodium hydroxide and sodium carbonate was predicted foll
15 ate (SDS) was considered the surfactant, and sodium hydroxide and sodium carbonate were the alkalis.
17 oration were oxidized with hydrogen peroxide/sodium hydroxide and the product alcohols were obtained
18 rom the high-level waste solids with aqueous sodium hydroxide, and then isolates the phosphate by pre
20 as the extraction solvent, 1.5 mL of 10.0 M sodium hydroxide as the phase separation trigger, pH 4.0
22 utions containing 4 microM PROLI/NO in 0.1 M sodium hydroxide at the rate of 1 nmol.min-1 immediately
23 pobromite (freshly prepared from bromine and sodium hydroxide) at 0 degrees C in 2:5 acetic acid/acet
24 d by treating the carbohydrate with powdered sodium hydroxide before introduction of methyl iodide un
25 tion, a process that involves treatment with sodium hydroxide, cellulose goes through a conversion to
26 njunction with shear force and at an optimal sodium hydroxide concentration we demonstrated a switchl
27 ol/L, 62.11min, 71.23 degrees C and 4.5g for sodium hydroxide concentration, extraction time, tempera
29 te constants (k2) for chemical reaction with sodium hydroxide, did not correlate to k(cat) for CinnAE
33 ation was found with strong alkali exposure (sodium hydroxide>ammonium, calcium hydroxide), even with
36 eaction of epichlorohydrin with concentrated sodium hydroxide in hexane under phase transfer conditio
37 lation reaction with methyl iodide and solid sodium hydroxide in methyl sulfoxide was used for the fi
39 ee hydroxyl group on serine and threonine by sodium hydroxide-induced beta-elimination has not been c
40 r component of sea-salt particles, show that sodium hydroxide is generated upon reaction of deliquesc
42 elimination of the epoxyglycidyl ether with sodium hydroxide may be operative and an alpha deprotona
43 intermediate-temperature (350 C) dry molten sodium hydroxide-mediated binder-free electrodeposition
45 aluated for two extraction methods [methanol/sodium hydroxide (MeOH/NaOH) and methanol/ammonium hydro
46 precipitate forms during N-acetyl-L-cysteine-sodium hydroxide (NALC-NaOH) decontamination, digestion,
47 ndard technique was N-acetyl-L-cysteine with sodium hydroxide (NALC-NaOH) treatment, smear concentrat
48 cal decontamination with N-acetyl-l-cysteine-sodium hydroxide (NALC-NaOH), alone and in combination w
49 l sample processing with N-acetyl-l-cysteine-sodium hydroxide (NALC-NaOH), chemicals that compromise
51 tection of MTBC DNA from N-acetyl-l-cysteine-sodium hydroxide (NALC-NaOH)-treated samples were compar
53 Anion-exchange (AE) chromatography using sodium hydroxide (NaOH) and sodium acetate gradients, co
54 g the concentration of two types of alkaline sodium hydroxide (NaOH) and sodium carbonate (Na(2)CO(3)
55 hot water (HW), hydrochloric acid (HCl), and sodium hydroxide (NaOH) extractions achieved up to 87% e
59 g the surfaces of woven jute mats with 1% of sodium hydroxide (NaOH), chromium sulphate (Cr(2)SO(4)),
61 ated by the almost 2-fold greater amounts of sodium hydroxide needed to titrate noncatalytic montmori
62 thesized in the laboratory from zeolite A in sodium hydroxide, nitrate, and perrhenate solutions at 9
63 1 eyes) who sustained concomitant accidental sodium hydroxide ocular burns and received appropriate t
64 of FAE-III; (d) the rate of hydrolysis with sodium hydroxide of the methyl esters in general is decr
66 l chemicals; waste could be transformed into sodium hydroxide or caustic soda (NaOH) and hydrochloric
68 ation of the resulting carboxylic acids with sodium hydroxide produces plastic-derived carboxylate su
70 neutral hydroxylamine, hydrochloric acid, or sodium hydroxide released incorporated radiolabel which
72 e aims were to determine whether exposure to sodium hydroxide results in predictable changes in phosp
73 ng effect on the strength and selectivity of sodium hydroxide separation from alkaline aqueous salt s
74 issues of both the strains was determined by sodium hydroxide solubilization METHOD: The affinity of
75 droxide-soluble pectin fraction (DASS), a 1M sodium hydroxide-soluble hemicellulose fraction (1MASS),
76 soluble hemicellulose fraction (1MASS), a 4M sodium hydroxide-soluble hemicellulose fraction (4MASS)
77 ent-soluble pectin fraction (ChSS), a dilute sodium hydroxide-soluble pectin fraction (DASS), a 1M so
78 (grass) and CO2 collected by absorption into sodium hydroxide solution provide excellent time-integra
79 tion of parabens from chloroform into a 50mM sodium hydroxide solution within 10s facilitated their d
86 ment of the RNA sequences with a solution of sodium hydroxide, the 2'-O-imino-2-methyl propanoic acid
88 IS(6x)-HA(3x)-IAA1 proteins was sensitive to sodium hydroxide treatment, indicative of ubiquitin oxye
92 cal fluid extraction (SFE) and purified by a sodium hydroxide wash of the ethyl acetate eluting solve
93 ng bit information into the concentration of sodium hydroxide, we demonstrate that our platform can a
95 For extraction, density separation using sodium hydroxide, zinc chloride, potassium iodide, and s