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1 is significantly affected by the addition of sodium carbonate.
2 d, pelletised mixture of kaolin (100 parts), sodium carbonate (100 parts), bitumen emulsion (or any '
3  and myosin-IIA resist extraction with 0.1 m sodium carbonate, a treatment that removes all detectabl
4                                              Sodium carbonate addition increased pH and caused a cons
5                                     However, sodium carbonate and ammonium bicarbonate can modify ast
6            Many foods contain additives like sodium carbonate and ammonium bicarbonate to ensure safe
7 ared with a geopolymer binder which included sodium carbonate and hydrated lime, GGBFS, Ag-PM-WCNT, a
8 h 8 M urea, but only partially with alkaline sodium carbonate and not at all with octylglucoside, sug
9 act nonlinear, we used partial hydrolysis by sodium carbonate and oligonucleotide-directed RNase H di
10 nds 28a and 31a, which on deacetylation with sodium carbonate and potassium cyanide yielded 2-bromo-5
11 ning step by addition of magnesium sulphate, sodium carbonate and sodium chloride, and clean-up step
12 dified water, solutions of ammonium oxalate, sodium carbonate and sodium hydroxide.
13       Isolated tapetosomes were treated with sodium carbonate and subfractionated by centrifugation.
14 salt minerals such as magnesium sulfates and sodium carbonates and mixtures of these minerals provide
15 ntact organelles could be made soluble using sodium carbonate, and digested with proteases in the abs
16  iron sulfates, silicon and aluminum oxides, sodium carbonate, and iron sulfide.
17 talyst, 4-iodoanisole as an arylating agent, sodium carbonate, and mesitylenic acid as additives in D
18 el of 50 ppb found in commercially available sodium carbonate are responsible for the generation of t
19 on of georgeite; with few exceptions it uses sodium carbonate as the carbonate source, but this also
20  resin washing step using a weak solution of sodium carbonate at pH 9.3.
21 us 70%, was obtained by treatment with 0.1 M sodium carbonate buffer at pH 10.
22 roteins that are detected after washing with sodium carbonate, but it enables the detection of other
23      In addition, further enhancement of the sodium-carbonate concentration altered the wettability o
24  modes (chloride/bicarbonate exchange versus sodium-carbonate cotransport).
25 washing isolated plasma membranes with 0.1 M sodium carbonate enables detection of a higher number of
26 strate using proteinase K protection assays, sodium carbonate extractions, and crystallography that A
27  CID: 2735032), Trolox (PubChem CID: 40634), sodium carbonate, gallic acid (PubChem CID: 370) potassi
28 e minerals, hence revealing how silicate and sodium carbonate govern REE mineralization.
29 onic acids can be used as coupling partners, sodium carbonate is the best base for the reaction, tetr
30       We note that the explicit inclusion of sodium carbonate, mesitylenic acid, and solvent molecule
31     High Eocene [CO2]atm is established from sodium carbonate minerals formed in saline lakes and pre
32                            The solvents were sodium carbonate (Na(2)CO(3)) solution, uncatalyzed and
33 ypes of alkaline sodium hydroxide (NaOH) and sodium carbonate (Na(2)CO(3)) to the oil rock.
34 sition of H(2)O(2) with addition of heat and sodium carbonate (Na(2)CO(3)), is proposed in this work
35   We report the results of a study of molten sodium carbonate (Na2CO3) which combines high energy X-r
36 erved sodium fluoride (NaF) and the expected sodium carbonate (Na2CO3), as well as the desired reacti
37  chiral phosphate generated by the action of sodium carbonate on BDPA is found to remain associated w
38 s, as indicated by spectra or measurement of sodium carbonate on the surface or in plumes(2,3).
39 her experimental optimizations revealed that sodium carbonate or sodium phosphate followed by DHB sub
40 released by washing with high salt, urea, or sodium carbonate (pH 11), treatments commonly used to st
41 ansition metal-free reaction is catalyzed by sodium carbonate, providing an important route to a libr
42             Electrolyte conditions of 50 wt% sodium carbonate relative to lithium carbonate at an ele
43             We have developed a new class of sodium carbonate/silicone composite sorbents that select
44  investigate the nature of these structures, sodium carbonate soluble pectins from strawberry fruits
45 onomeric protein, alpha-amylase activity and sodium carbonate solvent retention capacity (NaSRC).
46           PPTX is soluble in the presence of sodium carbonate, suggesting localization to the cytosol
47 istant to extraction by 1 M NaCl or alkaline sodium carbonate, suggesting that it is a peroxisomal in
48 the presence of halite, sodium sulfates, and sodium carbonates that were strongly correlated with kap
49                                         With sodium carbonate, the pyrochlore Y(2)Mn(2)O(7) forms at
50                               Application of sodium carbonate tissue doping and DHB sublimation resul
51 he cytoplasm, because it was not released by sodium carbonate treatment but was digested by proteinas
52                                              Sodium carbonate treatment of the phosphorylated fractio
53 tant flooding employing sodium hydroxide and sodium carbonate was predicted following the historical
54 red the surfactant, and sodium hydroxide and sodium carbonate were the alkalis.
55                                  Mixing 4 mM sodium carbonate with the 2 mM tungstate was enough to p
56  by mediating the electroneutral exchange of sodium-carbonate with chloride.
57 er containing 1% Triton X-100, or hypertonic sodium carbonate without detergent), followed by sucrose
58        It could not be extracted by alkaline sodium carbonate, yet it was susceptible to proteinase K