SCIENTIFIC ABSTRACT OSTROVSKIY, F. - OSTROVSKIY, G. M.
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Collection:
Document Number (FOIA) /ESDN (CREST):
CIA-RDP86-00513R001238510016-4
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RIF
Original Classification:
S
Document Page Count:
100
Document Creation Date:
November 2, 2016
Sequence Number:
16
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Publication Date:
December 31, 1967
Content Type:
SCIENTIFIC ABSTRACT
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lYp L . P; . ; GFL ',-A'!, N, . 3 .
Dptpr.mination of thp oxygen concentration in blolo,-lcal f lu' ~~- -,-
thp mete od of polarography wlth stationary har~4 ole-tro(If-s.
Blokhtmalla 2? no.3:532-1;37 162. 'YTPA 1.P~
1. Ins ti. tutE of Biochpmi s try, Acaderr~v of Scl Pncei if t11 r - .- J,
ponsf-ow.
(P-,LA' OGRAPHY) ( tEDY FLT'IDS )
KULAYi~V. I.S.: USTROVSKIY. D....; BRIA)!~~iL)Kly, A-14-
Yirst productR of orthophool,hiite aoolmilation from the culture
medium by the my,-oli,in of lanicillium chrysog-num q-176.
Dokl. AN SSSA 115 no.2:467-470 i 160. (MIRA 13:11)
1. N-Aovekly goaudanitveniV, universitet Im. 14.V.Lomonsovii i
Inatitut biokhimli im. A.N.Bakha Ali SSSH. 2. Chlon-korrespondent
AN SjSR (for 3elozerakiy).
O'enicillium) (Phneyhorus motabolism)
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CSTRCV6,KIY, D.N.1 HWATIYAN, Ye.F.1 GELIKIN, N.i.
Effect of rAncrtatic 141riase on the protoplasto of Micrococcus
lyaodolkticua In connection with tho problem of the looaliz-
ation of respiratory onzymeo In bacteria. Blokbijaiia 29 no. 1:
154-160 Ja-F 164. (MDRA 1Ftl2)
,. Inptitut biokhijnii imeni Bakha AN SSSR, Moukva. Submitted
June 22, 1963.
Finl(l ex-p-ri--c-rts in in~rict co7:rzct.-,n c.,,.-rie~ c,.,t in t~-,e a--_n,
V-14 'J-,,b. no-15:221-231 '
p pr, 6C.
14: F
1. 5rcdncu-.iatr:.-.iy institut Irrif--atol",
71~.nl.kr,nt.
(~c,lodn,,~ya SI. --Irrigation camls and flumee)
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,,eolr)Flca,' ftn~ '-(ii In'#,-prp*,,,i*lon of aerogr-)jhy!~
mil-,~rlals. "Pol. Mont. red. eIrm. no.~C.1,2-84 16 " .
Oj.:I~A ~,;K
OSTRDVSKIY, -F.-,, inzh. ; TAR]-CIVSKIY, X. , t nzh.
Pressure vessel jsed fcr antiseptic cc-,ositions. Strcitell
Je '5P- (MIRA 11:'7)
(Pressure vessels)
KULAYEV9 I.Se; BEWZERSKIY, A.N.; OSThOV6YIY, L.N.
StAyIng acid-coluble phoophoruo compounda of
chrVoogenum Q-176 under different conditions of cultivation.
Biokhimiia 26 no. 1:188-199 Ja-F 161. (141F-A 14:2)
l.. I,vtitute of biochomistryp Acauemy of Sciences ~~f the t
P.nd Faculty of Biology and Soil Scionces, State University,
Mosc.m.
(PENICILLIUM) (PHOSPHORUS METABOLISM)
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LASHGI11TLRO F.M., inzli.; C6-,'hOV3KIY, G.A. , inzh.
Safety narasures concerned wit,,~ elFc'-rl-cf*-; In cc,113-j,~;ctlcn.
Mokh. stroi. .',' nc.11:2(~-21 N 161. (MMA lt:-)
(Excavntlng macidziory-Safoty reasures,
Mlaotr~c woldinji-Saf,-Ay masures)
KALTUCHKOV, 0. T.; PAVLOVSKAYA, V. S.; OS7ROVSKIY, G. A.
Method of the reversible change of the field of peruanent
magnet of a nuclear magnetic resonance-spectrometer. Zav. lab.
28 no.12:1457-1458 '62. (MIRA 16:1)
1. Moskovskiy institut stall i oplavov.
(Nuclear magnetic resonance and relaxation)
(Spectrometer)
ZELENOVA, V.D.; OSTROVSKIY, G.A.; -SHEPFkLYAXOVSK1Y, K.Z-
Growth of the austenite grain In steel during Induction heatinz.
Metalloved. I term. ohr. met. no.60(~-35 Je 163.
(MIRA 16:6)
(Steel-Heat treatnent)
(Metal cryntale-Growth)
SIMPELYAKOVSKIY, K.Z.,, kand.tekhn.nauk; &d.BiVA, V.D., kand.-tekhn.nauk;
OS-Tim'sill. G.A., lnzh.
Structure arM prop6rties of an induction-hardened layer of steel.
~bt&.Uaved. i term. obr. met. no.9:24-29 S 162. (141hA 16 -5)
1. 1-bakovskiy av-tomobillnyy zavod (ZIL) i Gosudarotvannyy suyuzn:,-y
ordena Trudovogo Krasnogo Znameni nauchno-issledoVatellekiy
avtowbillnyy i avtomotornyy institut.
(Steel-Matallogi-aphy) (Induction hardening)
I 10690=fa--
ACCISSIM IM: AM1653 S/0129/63/ODQ/OD6/0Q30/OQ35
AuTHO)j2 7AJenova, V. D.1 _Ostroysk~y, G. A.: Sheptljakaj!~% 9.2-
Tr=2 Growth of aultOnitic KrAin In ItselAduring Induction heating
SOURC]C3 M&talloyedenlys, I termicheakays obrjkv-tkik metalloys no@ 6# 1963P
3D-33
TOpjC TkGS: austgnitic grain,, 9teelp induction heatingg martensite steelp
austwdto steel
ABSTRACT: The Initial sustenitic grain., whose size depends on the disper-
91bility of the origina structures, determines the graln size of steel nade
by L-Auction heating. The rate of heating,, from 8 to IODO degrees per second
does not affect size of the original grain; but further auetenite growth de-
perAo on heat1mg rate, slow rate and high temperature causing grain growth.
Decreasing austenite grain size from No. 13 to 12 decreases roasting and in-
creases strength of martongite steel. Use of inborently fine grained steel
permits an extension of the temperature interval and induction heating rate
in wbich fine austenitic grhin can still be obtained. Use of fine grained
Card 1/2
-------------- --- ------
I 2069D-63
AMMON XR: 03=653
0
steel and of optimal inductive beating rates are the essential means for in-
cmaing the strength of machine parts. Orige art, has, 3 tables and 6 fig-
Urese
A IATION: none
bUBKrrZZD: 00 DATZ ACQ: 09Ju3.63 ENCL: 00
SUB CODE: 00 NO RV SOV t 010 OTM: 003
Card 2/2
--- -------------- ......
L 10690-63 WXq)/No%a)/BDS--.AFM/ASD--JD
IMMSION NR: 03001653 3/0129/63/000/OD6/OD30/0035
AUTHOR: -7410noTA, V* of ostpm% Go A9
TIM: Growth of austordtic grain in stt4 ing induction beating
SMC13 Motallovadonlys i tormicheakaya clfahpo't"ka notauoy, no. 6p 1963#
30-35
TopIC TAGS-. oustenitic grain, steel,, induction heatinSpmartensits steelt
austonite steel
ABSMCT: The initial austanitic grainp whose size depends on the disper-
sibility of the original structure, determines the grain size of steel made
by induction beating. The rate of heating, fhn 8 to 1000 degrees per second
does not affect gd2e of the original grain; but further austwdto growth do.%-
ponds on heating rate., slow rate and high temperature causing grain growth.
Decreasing austenite grain size from No* 8 to 12 decreases roasting and in-
creases strengtb of martengite steel. Use of Inberently fine grained steel
permits an extension of the temperature interval and induction beating rate
in which fine austenitic gruin can still be obtainede Use of fine grained
Card 1/2
L 10690-63
ACCESSION M AP3001653
Steel and ckf optimal Inftctive heating rates are the essential means f or In-
c"asing the vtrangth of machine parts. Orig. art. has: 3 tables and 6 fig-
AMIATION: none
%1$U1MTrJRJ: 00 DATE ACQ: OWul63 INCL: 00
SO CODM OD NO REP SOVS 010 MM: 003
Card 2/2
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,STROVSKlY Griguriy In7),.- 12 "Oil CVA,
[Automp-tior. of thf Tor, spar tat. or. r -oncre to f~.
experience of the :,.oinforc-d oncrete FrorAuctv, I lfln*..
In 'asl.kent' Avl-omatiza,slia trnnsportlrovar,~ifi
betona; 1-1pyt zav,jcr! ri., v Inrny"7",
,,oskv, , Slr-iizvit,
J.D.
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7irl~ J!"
OSTROVSKIY, G.P.
MDvement for a high level of sanitation in Pskov Province.
-Gig. i sam. 25 uo.11:59-61 N 160. (MIRA 1411)
1. Iz Pokovskoy oblastnoy canitarno-opidemiologicheakoy stantaii.
(PSKCYV PROVINCE-SASITAT ION)
nr, r ve '!I r v I!: 'r 1! 1
rr.
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snogo g0.9. ul.iv.
1,
ZALOGIV, Nikolay Savellyevich; OSTROVSKIY, G.G., reteenzent;
SHAPIRO, I.Ya., rod.; NOVIK, A.M., red.lzd-va;
SAVOKMALOV, Ya.A., lnzh., red.izd-va; STARODUB, T.A.,
tekhn. red.; VATUSn'ICH, S.M., tekhn.red.
[Mathematical problems for competitive examinations]
Konkursnye zadachi po materrmtike. Kiev, Gostekhizdat
USSR, 1964. 615 p. (MIRA 17:3~
c . .-A.
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J.
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3 J.;FOVE-Ml%'YY, L.1).;SUSI1K0%', I inzh.;
TYULE~T, Z. irzh. Frinirzli uchaoti:-e: GkU A: OVA, U.S.
F7TM,l'A*A, :.F. IZ',AYLGIVICY, 7o.A., Inz!,.; 7,.A.,
,-AffG,l'A, Z.S).; JKr1klVA9 Ye.A.; V.~.., inzh.; ',&,AS(-YA,
S.!;.; TA57HAYM', A.L., inzli.; FTLI'-'CTXV, I-ALICF, K.F.,inzh.,
naucb. red.; K.N., insh., imuclinyy red.; ',D.,~KCV,
S.!;., innh., nauclinyy rt~d.; FAK%U:LVlCll, Yu.A. , knmd. toklti. naul.,
nauclin-,~; red.; SJJT'D9 'YO.N., otv. rod.; LU'iO%, L.S., red.;
lVAI-CV V.S. , red.; t,l.,lv . rod. ; V(,LC]13G,~:~ETY , :".S.
mr. glav. red.; ',CNVT::' red.; I' AZILIOV9 I.A., .ed.;
red 1 1'. red. SIl K
I S.I.? .; -.-:L 1; 1 F C V, T.-p "C~ , A.A.,re(i.;
S-A,tO%M1,CV, I.G.1 red ILYTIT'A, L.L., red. i,-.(~-v%; r(,i)E
rod. izd-wi; toklm. red.
[1:i-nd~),)ok Cor the dr,rij-nor of l,-(ius'ri-,J, residential, and public
lxiildinj:s and structures; orjini-,ation of cc: struction wid rixecu-
tion of building and r,-qserbly ojc7,itions. Industrial conrtruc-
tion] Spravochnik procirtirovshchika pror~vshleniryl:hq zhilykh I
obsi.chestvenny'J. 2&x ;I I sooruzhenii; orgrini7~:Asiia stroitel'-
stva I p.-oi:-.vodstvo stroit#--llno-nontazhr*,kh rabot. Promsilon-
noc ctrk,` tel',Avo. lo~' red. I VoAv,,., Go~~.i.-.d-vo
li,-r-Y Flo rtroit. . irirD-At. I str~)it. m;~4erinlir: 61 . '72
,=kta~_
L 26U62-65 Wr(d)/EPF(n)-2 Po-4/Pq-h/Pg-4/Pu-J4/Pk-4/P1_h 12P(C)
33
ACCESSION NR: AT4045210 8/2688/64/000/006/0183/olga
'.~AUTHOR:
Ostrovskiy, G. M.
We of cii
Z' ~~Iating optimal atitomatio control systems
TITLE; -Some meth
SOURCE: Aytomatichoskoye upravlenlye i vyphislitell naya tekhnika, not 6, 19841
-183
TOPIC TAM varialtonal technique, dynainic programming, automatic control,
differential equation, boundary condition, contr system
optimization .01
A"TRACT: Ile paper considers a system. controlled autorhatically as a function of time
according to the spitem of differential qquations:
ds
m 01P .. 9 X111 (is) ... UjP
n,
where x are systean cDordinateB and are control restraints. It is denired to determine
U1 19 ut ~ so that, its the system goes7rom system state O(o , o) to stabe B(b, .... b4),
t] a functional
(XII (2)
1/2
carki
L 26062-65
ACCESMON MR: AT4045210
will be a minimum. It is assumed that the points xi u lie In a bounded region. The
7--, paper presents two techniques of solving the problei iAr various types of restraints.
A variational toohniquA In used to solve the problem La casei as a condition of the form
IPA (us
(3)
(av
b x condition of the form
7--
(4)
ore. a condition of the form,,
4p, (as. YJ dt go nof I ai 1. n.,
is satisfied. 7be second half ol the paper' ouUines a solution tc; the'piioblem by mms of
a dynamic programming technique. Orig, art. hut 43 formulas and I figure.
ASSOCIATION: none
SUBMITTEM 00 EXCL-. 00 SUB COM I F- 11 A
NO REP SM 007 OTHER: 002
Cord
Nom-
16L05-65 -L )i
tr7--(30M.DC(a)/Sa--D/A-'zD( a)-5/Aq' fX11AFrr a) wl,-c
ACCESSION NR: AP4047572 S/0103/64/025/010/1414/1420
AUTHOR: Volin, Yu. M. (Moscow); Ostrovskiy, G. M. (Moscow)
TITLE: One optimum problem
SOURCE: Avtornatika i telemakhanika; v. 25, no. 10, 1964, 1414-1420
TOPIC TAGS: automatic control, automatic contrai ASLi1n, automatic control
system, autornatic control theory
A13STRACT: The problem of quasistatic optimization of contact chemical
reactors is considered. The reactor in the form of a long pipe with a stationary
layer of a catalyst (a di stributed-pararne ter system) is to be operated in such a
ma:nner that the maximum quantity of a specified product component, is obtained,
T~,~i rate of decrease of the catalyst activity depends on certain parameters of
thl:: procese inside the reactor. Two subproblems are distinguished: (1) With
sj~ecified initial concentrations of some substances and initial state of the,
!.Card- 1/2
L 16405-65
ACCESSION NR: AP4047572
catalyst find the maximum component yield over a fixed cam
paign time;
(2) Wit~the same conditions, fird the maximum average productivity over the
It campaign time plus. catalyst- re generation time. Differential equations are set up
and solved for the above problems. Orig. art. has; 40 formulas.
ASSOCIATION: none
ENCL-. 00
SUBbUTTED: 17Jun63
SUB CODE: IE NO REF SOV: 003- OTHER: 001
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-K(Ithorml~ pr, :--SO9. Kin.', k-i*. '. n ., , , .I ~1,; ~ .
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L. Fi--ikc-khirL'rf,;- Lrv~ri L.Y., '
, ti I i zq SiLirokc)ro 1' 11 ' OT ' :,'H -IN .3171-',ii .
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r', . i "". -1 2, 4 " 1 1- .'I~J, - :.-
~ A": '~ t i -, , 0 n * ro I )
"The Use of Nonlinear Devices in Automatic Regulation Systems
of the Third Order," by G. M. Ostrovskiy, Chair of Applied
Mechanics, Vestnik Moskovs 080 1 Psiseta, Seriya Matematiki,,
Mekhaniki, Astronomli, Fiziki, Khi!!~ No 1, 1956, PP 51-56
The author studies an automatic regulation system whose operation is
described by a linear differential equation of the third order
x ;L~ Bx, ~ x : 0,
vhere x Xinput xoutput is the error and A and B are constants.
It is assumed that the variable is already substituted so that the
coefficient of x is equal to unity. It is also assmed that coefficients
A and B may be changed by changing some of the parameters of tile regulation
system within the following limits
a,.,' A ~ b1, a2!~- B