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1                                              BOD catalyzes the reduction of ambient O(2) to water and
2  of 0.1-0.5 mM (equivalent to 10-50 mg L(-1) BOD) was obtained with an estimated detection limit of 4
3 h an estimated detection limit of 4 mg L(-1) BOD.
4  earlier presented application, the use as a BOD sensor was reviewed.
5 the analyte DNA and its hybridization with a BOD-labeled complementary DNA sequence, electrically con
6 iocathodes, i.e. electrocatalytically active BOD surface coverage (Gamma), heterogeneous electron tra
7                             Complete aerobic BOD removal consumes 0.45 kWh and produces 153 g of soli
8 emical and biological oxygen demand (COD and BOD) in the aquatic systems into which they are discharg
9 10(9) kg/yr each of phosphorus, nitrogen and BOD are produced.
10 dentity with CotA from Bacillus subtilis and BOD from Myrothecium verrucaria, respectively, shows hig
11 deline was subsequently endorsed by the ASCO BOD.
12 robic digestion, can potentially remove both BOD and nitrogen with an energy surplus of 0.17 kWh and
13 to global organic pollution parameters (COD, BOD, and TOC).
14 orrelate with the same WWTP variables (5-day BOD, flow, ammonia, total phosphorous and suspended soli
15 tor for measuring biochemical oxygen demand (BOD) using Rhodotorula mucilaginosa UICC Y-181.
16 phorus, nitrogen, biochemical oxygen demand (BOD), and fecal coliform pollution from human excreta fo
17 Clinical Oncology (ASCO) Board of Directors (BOD) approved a policy and a set of procedures for endor
18 BF for BOD POD - HW and -3.0% to 1.7% BF for BOD POD - DXA, are likely due in part to differences in
19 ions among study means, -4.0% to 1.9% BF for BOD POD - HW and -3.0% to 1.7% BF for BOD POD - DXA, are
20 centrifugation and consequently employed for BOD-ErGO biocathode preparation.
21 identify an optimal charge density of GO for BOD-ErGO composite preparation, several GO fractions dif
22 le to those made using a standard method for BOD measurement.
23 y labeled GTP analogue, BODIPY-FL GTPgammaS (BOD-GTPgammaS), that binds to the alpha subunit of trans
24                                   This makes BOD from B. pumilus an attractive new candidate for appl
25 atalysis, an electrode modified with the new BOD is more stable, and has a higher tolerance towards N
26                               The binding of BOD-GTPgammaS occurs without a change in the intrinsic t
27           The rhodopsin-dependent binding of BOD-GTPgammaS to alpha(T) is slow, relative to the rate
28 , these findings suggest that the binding of BOD-GTPgammaS to transducin causes it to adopt a distinc
29 t catalytically to stimulate the exchange of BOD-GTPgammaS for GDP on multiple alpha(T) subunits.
30 hest kS of (79.4+/-4.6)s(-1) was observed on BOD-GO composite having different negative charge densit
31 a of (23.6+/-0.9)pmolcm(-2) were obtained on BOD-GO composite having the same moderate negative charg
32  The ring was coated with bilirubin oxidase (BOD) "wired" with PAA-PVI-[Os(4,4'-dichloro-2,2'-bipyrid
33      When integrated with bilirubin oxidase (BOD) and single walled carbon nanotubes (SWNTs), the AuN
34 hydrogenase (PQQ-GDH) and bilirubin oxidase (BOD) at anode and cathode, respectively, in the biofuel
35           For the cathode bilirubin oxidase (BOD) has been immobilized on PQQ-modified electrodes.
36  showed that an effective bilirubin oxidase (BOD)-based biocathode using graphene oxide (GO) could be
37 erized as a new bacterial bilirubin oxidase (BOD).
38 rseradish peroxidase with bilirubin oxidase (BOD).
39 0-23)%, and 35 (23-47)% (mean and 95% range) BOD, nitrogen, phosphorus, and fecal coliforms, respecti
40 on of rhodopsin and Gbetagamma from alpha(T)-BOD-GTPgammaS complexes, relative to their rates of diss
41 stimation of approximate 2-3% BF by both the BOD POD and HW.
42 ember 1995 and August 2001 that compared the BOD POD method (Life Measurement, Inc, Concord, CA) with
43                Few studies have compared the BOD POD with multicompartment models; those that have su
44 tary DNA sequence, electrically connects the BOD label to the electron-conducting redox polymer, whic
45                                Moreover, the BOD sensor showed good tolerance against the presence of
46                            Nevertheless, the BOD-GTPgammaS-bound alpha(T) subunit is able to bind wit
47             Excellent reproducibility of the BOD sensor was shown with an RSD of 0.9%.
48                                  Placing the BOD in contact with the redox polymer thus converts the
49 verage of the study means indicates that the BOD POD and HW agree within 1% body fat (BF) for adults
50 at (BF) for adults and children, whereas the BOD POD and DXA agree within 1% BF for adults and 2% BF
51                    The sensor was applied to BOD measurements of the water from a lake at the Univers
52 r tolerance towards NaCl, than a T. tsunodae BOD modified electrode.
53 e current obtained with Trachyderma tsunodae BOD.
54 e drop was O(2) at 1 atm pressure, the wired BOD disk scavenged the O(2) so effectively that the gluc

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