SCIENTIFIC ABSTRACT PAVLIKOV, A. A. - PAVLINCHENKO, M. M.

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SCIENTIFIC ABSTRACT
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MERKULOV, Nikolay Ivanovich; P evich; FEDORDV, MIKQY#_Aj:~~A~Iekse ~ Aleksey Sergeyevich; LEEEDEV, S.A., akademik, reT.; SOLOVIYEVA, L.A., red.; MURASHOVA, N.Ya., tekhn. red, 'I JUSM electronic digital computerjElaktiennsia tsifrovaia vy- chislitellnala mashins EESM. Pod obahchei red. S.A.Lebedeva. Moskva, Fizmatgi2. Vol.3.[Memory systems of the BESM-2 computer] Zapominalushchie ustroistya BESM-2. [BY) N.I.Merkulov i dr. 1962. 286 p. (MIRA 16:3) (Electronic digital computers-Memory systems) PA V~- PHASE I BOOK EXPLOITATION 249 Pavlikov., Arkadly Alekseyevich Bystrodeystvuyushchaya elektronnaya schetnaya mashina Akademii Nauk SSSR; magnitnoye zapominayushcheye ustroystvo (High-speed Electronic Computer of the Academy of Sciences, U.S.S.R.; Magnetic Memory Device) Moscow, Izd-vo All SSSR, 1957. 76 p. 4,000 copies printed. Sponsoring agency: Akademiya nauk SSSR. Institut toahnoy mekhaniki I vychislitellnoy tekhniki. Ed. of Publishing House: Antrushin, B.D.; Tech. Ed.: Polesitskaya, S.M PURPOSE: This monograph presents the results of work done at the Academy of Sciences, USSR, in developing and designing a high-speed electronic co uter (Bystrodeystvuyushchaya Elektronnaya Schetnaya Hashina - BES7M and, In particular, its memory devices. It is intended for specialists in computing machines. Card 1/9 High-speed Electronic (Cont.) 249 COVERAGE: The present issue in the *BESM" series was written on the basis of the design material for the magnetic memory device (magnitnoye Zapominayushaheye Ustroystvo - XZU) for the high- speed electronic computer of the Academy of Sciences, USSR, and also from operational data. The process of develooing the MZU may be divided into three periods: 1) 1951 - desig7-Ling and building a model for experimental purposes; 2) April to December, 1952 - designing and building the MZU; 3) improving the MZU by the process of experimental operation. As a result of this Im- provement the number of electron tubes was reduced from the initial 1900 to 700 with a simultaneous increase of reliability. Since 1954 the device has been in normal operation. The magnetic memory device is the external storage device of the BESM. It is intended to extend the storage capacity of the internal memory device (Vnutrennoye Zapominayushcheye Ustroystvo - VZU; see abstract: V.N. Laut and L.A. Lyubovich, Zapominayushcheye u8troystvo na elektronno-luchevykh trubkakh bystrodeystvuyushchey elektronnoy schetnoy mashiny Akademil Nauk SSSR, Moscow, Izd-vo AN SSSR, 1957). It also serves for the derivation of computation results. Two types of MZU were accepted: a) a continually rotating Card 2/9 High-speed Electronic (Cont.) 249 drum covered with a thin layer of ferromagnetic material (Magnitnoye Zapominayushcheye Ustroystvo na Barabane - MZUB) and b) four magnetic- tape recorders of the B-2-52A type (Magnitnoye Zapominayushcheye Ustroystvo na Lente - MZUL), which are cut in.as needed. The drum is designed for 5 groups of 1024 codes each, or a total of 5120 codes. The storage capacity in each group is equal to the capacity of the VZU. The storage capacity of each tape is 25 to 30 thousand codes. There is no direct interchange of codes between the drum and the tapes. This interchange can occur only through the VZU. The record- ing of codes on the drum and tapes is done during the process of operation of the computer. It is done preferably In whole groups. As the drum is driven at 750 rpm, the average access time to a storage register is 40 jisec. The subsequent reading or writing occurs with the speed of 800 codes per second. In contrast to other devices of the BESM, both magnetic recorders, the drum and the tape, operate in series. The code transformation from parallel into serial writing on the MZU and from serial Into parAllel when reading, Card 3/9 High-speed Electronic (Cont.) 249 occurs in the receiving register of the arithmetic unit of the computer. In the majority of the circuits of the electronic automatic control systems standard units adopted for the BESM are used. These are described by V.A. Zimin in the book Bystrodeystvuyush- chaya elektronnaya schetnaya mashina. Standartnyye elementy (High- speed Electronic Computing Machine. Standard Components) published by the Acaderay of Sciences, USSR, 1952. Thus, the MZU consists of the following component units: 1) magnetic drum storage, which is built as a separate unit; 2) four magnetic-tape recording units (B-2-52A type magnetophones); 3) The code input and output system of the drum and magnetic ta es; 4) control system of the MZU; 5) perforated tape input device; 6~ control desk of the MZU. The author describes In detail the magnetic drum storage MZUB, the basic element of which consists of a drum 300 mm in diameter and 270 mm long. The surface of the storage drum is covered with a thin ferromagnetic film. Re- cording and playback ring-type magnetic hee.ds are placed along the drum at a distance of 40 to 60 mm from the magnetic layer. The total number of these heads is X. of which 80 are coding, 2syn- ehronizing and 2 reserve. With a recording density of 3 pulses per mm, Card 4/ 9 High-speed Electronic (Cont.) 249 the total capacity of the drum is 204,800 binary digits, which correspond to 5120 40-track binary digits. The linear speed of the drum is 13 m/sec (at 750 rpm). The maximum waiting time for the first signal, which equals the time of one turn of the drum, is 80 M8ec; the average waiting time is 40 msec. The access time with parallel recording is 30 lisec, with serial recording, 1200 Pee. Serial recording however, has several advantages as compared with parallel recording and Is, therefore, used In writing codes on the magnetic drums and magnetic tapes. The devices for recording and reading the codes on the drum are described and illustrated with photographs and diagrams (Pp. 15-18). A detailed description of the magnetic tape storage, and of the automatic control Oy8tem used In commutation, reading, and the triggering system fOllOW8. The operating process of the magnetic memory device is described step by step. In order to maintain uninterrupted performance of the KZZU, a preventive inspection of all the components is indispensable. The author enum rates the various conponent units subjected to such inspection and describes the methods applied. As a result of such inspection, the operation Card 5/9 High-speed Electronic (Cont.) 249 of the MZU was found to be satisfactory and practice demonstrated that for 3 to 4 days after a preventive Inspection was performed, no faults were observed, and for 7 to 10 days of operation there was no need of replacing any of the units cf the MZU. The following persons participated In the development of the MZU: in the first period of work, the engineers K.S. Neslukhovskiy, A.S. Fedorov and L.A. Orlov; in the second period of work, the engineers K.S. Neslukhovskiy, L.A. Orlov, V.F. Petrov, M.V. Tyapkin, A.S. Pedorov and A. A. Pavlikov, the author of the monograph. All the work in designing the MZU was done under the direction of Academician S.A. Lebedev, who is the chief builder of the BESM. In the third period of work, the improvement of MZU by the process of experimental operation was done by engineer M.V. Tyapkin and the author. The monograph is illustrated with photographs, 08Cillograms, connection diagrams, graphs and drawings. There are 10 Soviet references (including 1 translation). Card 6/9 High-speed Electronic (Cont.) 249 TABLE OF CONTENTS: Foreword 3 Ch. 1. General Part 5 1. Purpose and basic parameters of magnetic memory device (MZU) 5 2. Block diagram of magnetic memory device 6 3. Magnetic recording 7 Ch. II. Magnetic Memory Drum Device (MZUB) 12 1. Magnetic drum 12 2. Drum code Input-output system 14 3. Operation of input-output System during recording and playback 18 Ch. III. Magnetic Tape Memory Device 21 1. Magnetic tape and magnetic heads 21 2. Distribution of codes on the tape 23 Card 7/0 Righ-speed Electronic (Cont.) 3. Adjustment of magnetic heads 4. Controlling the start of the tape drive 5. Tape code input-output system Ch. IV. Automation and Control of the MZU 1. Commutation block 2. Reading block 3. MZU address registers 4. Code coincidence circuit 5. Elements of MZU control circuit Ch. V. Operation of the MZU 1. Preparing to work with the MZU 2. Starting position before operation 3. Recording codes on magnetic drum 4.: Reading codes from magnetic drum 5."" Recording codes on magnetic tape 6. Reading codes from magnetic tape 7. Rewinding magnetic tape 249 24 25 27 32 32 34 38 39 40 46 46 48 48 51 52 53 54 Card 8/9 High-speed Electronic (Cont.) 249 Ch. VI. Preventive Inspection of the MZU 56 1. Components to be inspected 56 2. Checking the magnetic drum 56 3. Checking the device with magnetic tapes 58 References 6o Appendix 1. Connection diagrams and specifications of MZU Standard units 61 Appendix 2. Abbreviations used AVAILABLE: Library of Congress JJP/Isb 10 July 1958 75 Card 9/9 PAVLIKOV,, F. Atom controls the operation of a bucket conveyor. MA.-elev. prom. ;n no.2s2l-22 F 163. (MA 16:8) 1. Glavnyj energetik Sal'skogo mellnichnogo kombinata Rostovskoy oblasti. (AUtomatic control) (Convoying machinery) ,PAVLIKOV, P. I.-I -- Eliminate breaks in truck-lifting platforms. Mak.-elev. prom. 28 no.1:24-25 A 162. (KrRA 16:7) 1. Sal'skiy mellnichnyy kombinat. (Flour mills-E~uipment and supplies) PAVLIKOV. F. )Wasures for improving the operation of electric equipment at the Sallsk Killing Combine. Muk.-elev.prom. 26 no.6:29-30 JS 16o. (MMA 13:12) 1. SallskV mellnichxyy kombinat Rostovskoy oblasti. (Ballsk-Flour mills-Equipment and supplies) PAVIaKOV, G inzh.; BUCHNEV, A.I., tekhni ; VATTMOV, V.K., slesarl - ~~V-~- Use of the BF2 adhesive in repairing friction clutches, Zlek.i tepl.tlao-a 6 no.5:15 My 162. (MIRA 15:6) Ziiesel locomotives-Maintenance and repair) (Adhesives) PAVLIKOV, 1. Proparin,- a balance sheet for the income and expenditures of the PoPalation of a province. Fin. &SSR 21 nnoll: 70-71 N 160. (KRA 13:U) I* Starshiy ekonomist po denezhmma abrashcheniyu Stalingr&dakogo oblfinotdela, (Staliagrad Province-ftmum) FAVLIKOVVY00 Polkovnik Air support of the troops. Voen. veat. 43 no.9:23-26 3 163. (Air warfare) (MIRA 16tlO) TEFIEKHOVSKIY B.I. [Terekhovalkii, B.I.1; SKRYABINSKAYA, I.V. [Skriabyns'ka, I.V.J1 PAVLIKOV, V..M. [Pavlykav, V.M.): ,; MALINKA, M.K. (Malynka, MA.] Incr+f ing the whiteness of a porcelain body by treatment with water vapors during firing. Leh.prom. no-4:62-64 O-D 162. (MIRA 16:5) 1. institut, metallokeramiki i apetsi:alInykh splavov AN UkrSSR. (Porcelain) I~JW_-66_ _34T~Jnj /T /r".,.TP( +~) /rTT ACC NRs AP6013347 __~0_'U'R_C__E CODE: UR/0363/66./002/004/0679/0682 AUTHOR: Pavlikov V N ; Lopato L.?~.; Trcsyyatakiy, 6.G. p ...... ORG* Institute of Materials Science ProblemsAAcademy of Sciences UkrSSR (Institut roblem materialovedeniva Akademli nauk u1crbmi) TITLE: Phase transformation~tof certain rare earth chromites SOURCE: AN SSSR. Izvestiya. Neorganichoskiye materinly, v. 2, no. 4, 1966, 679-682 TOPIC TAGS: chromium compound, phase transition, praseodymium compound, neodymium compound, samarium compound, yttrium compound ABSTRACT: Phase transformations were studied by differential thermal analysis, dilato- metric measurements, high -temperature microscopy, and high -temperature x-ray analysis in binary systems formed by chromium oxide with rare earth oxides TRO,, where TR203 La.03, PrO.,, Nd2O,3, Sm,O,, and Y103, LaCrO,3 was found to have a reversible endo- thermic transformation at 290 � 5C, associated with a change from a rhomble to an ortho- rhombic structure. This is confirmed by the conservation of anisotropy in the single crystal of the high -temperature form of LaCrO.. The effects associated with the transformation of LaCrOa are slight.' No polymorphic transformations were noted at 20-DOOC in 1/2 UDC 546. 651763 L 32047-66 ACC NRt AP6013347 prascodymium, neodymium, samarium, and yttrium chromites. However, the possibility of polymorphic transformations at higher temperatures is not excluded. Orig. art. has: 3 figures and 1 table. SUB CODE: 11Y 07 / SUBM DATE: 2lJun(;5 / ORIG REF: 005 / OTH REF: 006 Card /2 L 23805-66 EWT(m)/T/EWP(t) IJP(c) JD/JG F_ Xee-Wil-A P-AM729M fAl TV AUTHOR: Tresvyatsltly, S. PavlIkov V N Lopato, L.H. 4 2 7 ORO: Institute for Probleme'of Haterials 10 AN UkrSSR (Institut problem inaterisUovedeniya IN M=r TITLE: Phase diagran Of the system S0203-Or 7) ViF22_.'J SOURCE: AN SSSR. Izvestlya. Neorganicheskiye materialy, v.2, no.2, 1966 269-274 TOPIC TAGS: scandium compound, chromium compound, alloy phase diagram, wu;W A..+ 4,..-.4,.,4- 1 N: AV-t -vJ-1t ABSTRACT: _Ph&ee trayfafo tiond In the scandlun trioxide-chromium triox- Ide system were studied In samples subjected to beat treatment In a high temperature furnace In an argon atmosphere. A phtographic Investigation was made by the conventional method with penetrating and reflected light; in the latter case with the use of etching In a melt of KHS94 at 20000 1 for 2 to 3 min. An X-ray Investigationl0was made on YE�.-~aftnd URS-70' apparatus. Infrared spectra ofthe alloys werg obtained on UR-10 spectroscope over an Interval from 400-700 cm-1. The change in the oxide content during heat treatment was controlled by conventional chemical analysis. The article gives a phase diagram baved on the experimental results, a table showing the X-ray results, and microphotoe of the sam- Card 1 ACC NR. AP600729;0 ples. There was obsexved the existence of a compound which melts at 2130�.3000. The probable composition of this comyound Is: GroOVS0203 1:3 or 1:4. The Initial oxides form solid solutions based on-efiromium oxide with a specific solubility of chromium oxide In scandium oxide Is .10 mole %. With a decrease in temperature, the evecific solubility de- creases to 17 mole % scandium.oxide and 5 mole % chromium oxide. Orig. arti has: 6 figures and 2 tables. SUB OODE: I)/ GUR3 ]DATE-1 ONul65/ ORIG REP: D05/ OTH RBF-* 008 L-46LZ41 TMI __Ja___ ACC WR-s- AP6023918 SOURCE CODE: UR/0363/66/002/007/1244/12~71 II I Aurzfoi: Paylikov, V. N.; lopato, L. M.; Trefivyatskiyp S. G. ORG.' Institute of Materials Science Problems, Academy of Sciences. UkrSSR (Inatitut iproblem materialovedeniya Akademii nauk UkrSSR) LA TITLE: Study of the phase diagram of the Y2(~-.~:203 system SOURCE: AN SSSR. Izv. Neorg materialy, v. no. 7) 1966p 1244-1247 TOPIC TAGS: phase diagram, yttrium. compound, chromium oxide ABSTRACT: The phase diagram h ' O3-Cr21)3 System WaS studAed in the 1800-2500*C i Of t e 12 rangeq apparently for the first time. The diagram (see ,qg. 1) was plotted on the basis of petrographic and x-ray structural studies of samples subjected to heat t%at- Iment in argon. It was found that the system contains only one compound of composition 11:1, melting congrut-ntly at 2310-4300C. The compound undergoes a partial thermal dis- isociation in the solid phasep which causes the maximum on the fusibility curve to be I idiffuse. The compound forms two autecticst one with Y20~, composed of 72 mole % Y20~ 1: land 28 mole % Cr203 and melting at 2020i3O0C, and one with Cr2?3, conposed of 80 mole 1% Cr2O3 and 20 mole % Y20~, Melting at 2070�301C. No scilid soltLtions were observed in Ithe system. Orig. art. hass 3 figures and I table. Card 112 M3 L 46125-66 FdT(mj/~~ __ --- - __ -I ACC NR: AP6026203 SOURCE CODE: UR/0078/66/011/006/1442/1445 AUTHOR: Pavlikov, V. N.; Tresvyatskiy, S. G. ORG: none TITLE: The Nd203-Cr2O3 s'Istem 7 - , , ! SOURCE: Zhurnal neorganicheskoy khimii. v. 11, no. 6, 1966, 1442-1445 TOPIC TAGS: phase diagram, phase composition, niobium compound, chromium oxide ABSTRACT: The phase diagram of the Nd203-Cr2O3 system was studied in argon atmosphere in the 1800-25000C range. Samples varying in composition by 2-5 mol % were prepared by threefold fusing of powdered mixtures of Nd203 and Cr2C3 for 2 hrs at 12000C. The structures of various samples were examined on th"QRS-5~ x-ray machine Oa~d the tem- peratures were measured with an)optical pVrometer bPPIR-O" 17.it It was found that only one compound, niobium chrcinite--NbCrO3, exists in the Nd203-Cr2O3 system in the 180OF -25000C range. The NbCrO-. has a melting point of 23300 and a density of 8.08 1 0.02.~ g/cM3. Niobium chromite was found to form one eutetic with Nd203 which is composed of 76 mol % Nd2Oj and 24 rol % Cr203 with a melting point of 2060 1 301C, and one eu- tetic with Cr203, which is composed of 78 mol % Cr203, and 22 mol % Nb203 with a melt- ing point of 2100 1 300C. It was found that there are no Dhases in the Nb203-Cr203 system which contain divalent chromium. Orig. art. has: 2 figures, 1 table. SUB CODE: // 07 SUBM I)ATE - 20Nov64/ ORIG REF: 002/ OTH PEF- 007 Card 1/1 re UDC- 546.657-31+546.7(i3-31+541.123.2 jUl' rj -Acc 99- _a6o28301 SOURCE CODEt UR/0963/661,002/006/1055/1057 AUTHOR z Pa I V,_.~. L. I,%; )~ar2m!Lnl ~hovchonk( V. 0?,G: Jn2jj&ute of Mate;Li Acadeaky of 3ciopces, JikrSSR (Institi-it _!.,Is Science Problen i n ik R) problem matorialovedoniya ad~A ai TITIZ; Phase diagram of the Sm2(~-%03 system -i 7-7 _', -7 SCURCE: Ali SSSR. Izvest-,ya. ~"' y, v. 2, no. 6, veorganichriskiye material, 1057 TOPIC TA3SI samarium compound, chrorrdum covinound, phase diagram ,k~M~CT: The 5-1203-Cr:IG~ phase diagrain was Gtiidiod ~n tho range fro:r, 1606'c 1,o t'~-,a liquidus tomperatures. Potrographic, x-ray dliffraction and chemical data on svu,'.~os "'me n subjocted to thermal trei,. t in argon at 1~-00-24,00~; viere used to nlot t~.e -ias'3 r"_ 7 'rr,,3- ' 3 agra:m (see Fig. 1). Only one compound, jirCrv-~, is formad In tho sys-tom. congruently at 2300�301C. It forms eutoci.Ics w-Ith L;m-)03 of the composit~.or. ~,O molu Sm203 and 20 mOlO % %')) (malting point of 19")0t30'CL and with Cr2o~, Of t~" co".P' on 16 mole % Sm203 and' :34 mola % C`2C~ (moltinirr, point 20801-30'C). No sol',d sol i- tions could be detected In the system. Orig. art. hast 2 figiLros and 1 tablo. Cord 1/2 UDCi 9V6.659-3-31+9~6-76)-31 L U~-)1495-61 ACC NRt AP6028301 Fig. 1. Phase diagram of the SM2(~-C~r2(~ system 'M ~,Oj ZZOO r mCrO, Sm6f zo,~O ,,~5mCrD,-Cr,Oj J!"mCrol-Sm,O) Cr, 0, 10 w �0 do SMIDJ 1"04 :4 SUB CODER I I)o-7 SUB14 DAMs o6Nov65/ ORIG REF: 001/ OTH REFe oo4 Card /2 I I I-) , , 1 -, - :.~ - 7 - . . .17 - . I . . I .? ~ - - - . . - - . . . . . I : t - ~ (-~ . . . , r ?% '. .. r, " ~ 1. . .. .. REIKHj Y.N.; LUAUS, A.Ye.; DOGUSLAVSKIY9 D.B.; OFALEV, A.I.; DUBOVIK, L.I. BDRODUSHKINA, Kh.N.; FEDOROVA, Yu.1; Prinimali uchastiye: PAVLIKOVA, A.; EHUDZINSKAU, L.L. Triple copolymers of butadieneg styrene, and 2--methyl-t-vinylpyridine. Kauch.i rez. 20 no.3:2-8 Mr 161. (MIRA L4:3) 1. Vseso,.ruznyy nauchno-issledovatellskiy institut sinteticheskogo kauchuka Im. S. V. Lebedeva i Yaroslavskly shinnyy zavod. (Rubber, Synthetic) (1hitadiene) (Pyridine) YAKUBCIIIK, A.I., REYM, V.P.; TIMICHIROV, B.I.; PAVLIKOVA, A.V. Effect of hy-b-ogenation on the properties of polybutadienes. ().Ij..,,A 7 Zhur.prikl.ktLL-a. 34 no.11-2501-2507 14 161. ;. 5: 1 )' 1. Leningra.dakiy gosudarstvennyy universitnt i V'sc-soyuznyy nauchno- issledovatel'skiy institut sincticheakogo kaucluka im. S.V.Lebe~~eva. (Butadi4ine) (Hydrogenation) FAVLIKOVA E - KUH10, M.; UEISS, D. Contribution to the chemical analysis of tetrahedrite. Rudy 11 no.33$upple: Price vyzkumnych ustavu no,.2:9-13 Mr 163. 1. Ustav pro vyzkum rud, Praha. so - 'th .11ch th F b M . m me cd a b"A moull F mailited. has th kia, P'ted, L f~,~C-titfmlau of the UK amalpm %Tl FAVLITCrVP, F.; KVAPIL, M.; WEISS, D. Chemical analysli of birite. Pudy 10 no. 4:Suprl.i.3-18. Ap '62. 1. Ustmv pro vyzkum rud, Praha. VITIOTBIRG, I.M.; PAIlIKOVA, M.G.; SHCHNIIIIN, ?.I. Ilectric siculation of the characteristics of a turbojet engizie. Vop. rasch. i konstr. elektron. v7ch. mash. no.1:84-96 160. (WPA 14:1) (Aeroplanes-Turbojet engines) (LFIectromechanical analogies) iv 4A 41 30-900 S/(,,80/61//034/01- 1/0 13 llr-',2r-', D228/D301- AUTHORS: Yakubchik, A~I., Reykh, V.N., Tikhomirov, B,I., an~ Pavlikova., A-V, TITLE: Influence of hydrogenation on the properties of po:y- butadienes P-E'RI OD 10 AL: Zl~urnal prikladnoy khimii, v. 34, no. 11, 19bl, 2501 - 2~07 TEXT: The autt- -ors studied the influence of hydrogenation on s3-e physico-mechanical properties of sodium-polybutadiene (I) and c:s- i,4-po'-ybutadiene (II): moduius of stretching, tensile strength, specif-~c elongation, hardness, recoil elasticity, grindability, temperature of brittleness, frost-reF4stance coefficient, and permeability. Previous work by A.I. Yakiibchik et al. has shown that the hydrogenation of such co,.-,-.ounds gives both products with commensurate amounts of hydrogenated and unhydrogenated rinjs and polymers with predominantly hy4rogenated rings; the properties of the obtained hydropelybutadi4enes depend on the original 7clyner-s Card 1/5 30200 _/rjl~ Vri2r) Influence of hydrogenition on the ... D228/D301 structure. A.L Yakubchik's method (Ref. 4: Zh. priki, khImil, '1'4, 652, 1961) was folloried in the hydrogenation of I and in preparing vulcanized rubbers with different microstructures and degrees of unsaturation~ The) procedure developed by the same author (Ref. 5.- Zh. priki. khimii, 1.4, 942, 1961) was used to obtain similar spe- cimens - which possessed marked crystallinity - from the hydroge- nation products of II. It is concluded from the experimental lata that the tensile strength and specific elongation of the vulcani- zed rubbers obtained from the hydrogenation of I are at a minimum when the degree of unsaturation is decreased by approximately two- fold. The decrease of this latter also results in their increased hardness and resistance to heat-ageing and in their diminished brittleness-temperatureq gas-permeability, and elasticity; this re- duction of the chain elasticity is believed to 'be caused by the lessened number of double bonds in the chains and by the conver- sion Of 31de-chain vinyl groups into ethyl groups, The degree of regulation in the polymer chains appears to influence favorably the rubbers' specific-elongation and tensile-strength, even in tho- se cases when it does not lead to crystallization. The increased Card 2/3 FAVLIKOVA, Marie Outlook for the development of the Csochoalovak chemical induBtr7. Chem prum 12 no.11085-586 N 162. 1. Ustredr-i vybor, Ko=Lmisticka strane. Ceskoolmanska. 0. A. PAVLIKOVA an, H. V- -IFLKT'~A "G.,. - .. :~ ~, !W-cc a-, - :, , :. . . ",- " :." The Chemistry aand Metab:)lim of Carbohydrater, in Aniaa-I Euid Plant OrgantsmF. Couference in Moscow. Jgnuary 26 to January 30 1956. , : A I BUGOMLOVY V.S., inzh. (g. Novouzensk); PAVLIKOVA V.M. uchitellnitea; 5-- '*** ZHELTUKRIN, D,V., dotsent; TSIAF, N.~K,uc~eii Editor's mail. Xhim.v shkole IS no.2s82-83 Mr-Ap 163. (MIRA 16:4) 1. Srednyaya shkola No.39, Bryaiisk (for Pavji~ova). 2. Lesotekhnicheakaya akademiya; Leningrad (for Zheltukhin). 3. Srednyaya shkola NO-5, Moskva (for TSlaf). (Cher,dstry-Experiments) (Building materials) 1 z c tdele ri.~ ya -,rir- 'n,,y -j agn os t- 4 1 ec,vskava Z~l ;-n:i , r E, ri. FAVLIKOVSKAYA, N.B. Functional stato of the cardiovascular BYOtem in Patients with different course of rheumatic fever. Kaz. iwd. zhur. W0-12 JI-Ag'63 (MIRA 1712) 1. Sochinskiy nauchno-issledovatel'skiy institut kurortologii (dir. - prof. M.M.Shikhov). PAVLIKOVSKAYA.. N.B., ml.adsbiy nauclinyy aotrudnik Chaxige in basal metabolism in rheiLmatic fever as an effect of treatment. Vrach. delo 4:148 Ap 162. (:-i!,U 15 -.5) 1. Kabinet funktaionallnoy diagnostiki SocUnskogo institute- kurorto'o~,ii. (BASAL MSTABOLISM) (MET-ATIC FEVER) MOONS 'i1)0648/G3/G27/007/0S'?8/O8 0 1,40:' APM369D M--A- '--~EebarskajV _t . * , I V.G.- ACC 462 SUPDA-fluid of the proportion CY D, J`ADT'Stronmly deformj4d nuc3.6 -o t of the Tbliteehtb - Annual k Ifuelliar.-Bpectroscopy bold in Hism from 25 January U 2 February -1963 ~.w lizich6skaya, v.27, zo:.~7, 1963, 878-89D $OUT# 10, -TAOS zu alleir leve,11j- Dogolyubov tmtbod,, Oupbriluid ilualow modol - Du- in- -(V.G.Solov!yov) A 4WT*T-. r g the patit low years *. on6- of.the, authors a onc.and leri liumero it 16ns). publisbod calculations of the tationvith OU us 0 at arAcUrl ~an, rior: I -nuo lo '.energies I viioi- d~bchv~ ol levals h odds -i o tvio-quasi-parti-, 1. le~`Aatos in.' n jaucl' eve -oven oi 'afid tho influence 'ckf pair ng correlations on trans In strongly deformod nuclei in: the 'nass number regions.from 152:, 1,.E-to~188 And 225 U225. ~Dospito ~ the. lact tbzt , 4enitrally 'jb6d agreement was obtained i;~Oxorii"iai: data,. the: accuracy of the calculations stands in need of chockirg W ot4he:1act that~ certain approximations, re involved. In the present pa ical:nethod based'on the-7 auiii6 investii6ie the acicuracy of~.,tholaitiwiai: f.~Ssormation - h d :f I o1yubov. canonical tr v Ich wo s us a or. Ca culating the anor .g es i VOLKOV, M.K.; PAVLIKOVf';](I, A.; RTBARSKA, V.; SOLOVITEV, V.G. - - Exactitude attainable in calculating tae properties oil heavil'y deformed nuclei on the basis of a superfluid nodal. Izv. AN SSS11. Ser. fiz. 27 no.7:878-890 163. (MA 16:8) 1. Laboratortya tooretichoskoy fiziki Obl'yedinpnnogo institute yixdernykh isslodovanly. (Nuclear models) PAVLIKOVSIU, A., RYBA'~3KA, V. Accuracy of Boqoliubov's method In the theory of even-even nonapi-,erical wiclei. &lir. eksp. I tc-or. fiz. 43 no.2:543-550 Aj, '62. (MIRA 16:6) I.. Ob"Yedinenrl.ry institilt yadernykh isfiledovanly. (Nuclear reactions) PAVLIKOVSKIT, A.; SHCERUVNA, V. Use of the met;hod of added variables in statistical physics. Dokl. AN SM 124 no.1:69-71 Ja '59. (MIRA 1.2-1) I.Institut fiziki Pollskoy AN, Vrotelav. Predstavlene akademikem R.N. Bogolyubovy,m. (Statistical mechanics) LUTHORS: Favlikovsiri, Pfcarska, V. TITL-I-': I,ccuracy of the Bo~;olyLbov method in the thQory of non- spherical evEn-evun nucivi I?-'. ;-~ I OD I C A LZ hurn a I ek s ia!! noy i te or,-, _- chi? s I` oy fizil:1,v no. 2(6), 1S-62', 543-5cc) T :-:I T .The interaction of n particles with a putuntii.~! + doubly deZvnorEite equidistant lcvv's _G a a on analyzed. The Hamiltonia-a of this syoc-::. is G 51 1. Where a and a are re.,3pectively -.he productio-.. ani .rs of fermions in states with the quantum bcz-s s o,oerato (s 1s . , article __V~' is the ener6y of a -S Card 1/2 ,,-i V AUTHORS% Shchurma, v. 2~,- -v co TITLE% The Use of Zubarev' 3 Method of Additional Variables In Statistiaal Physics (0 primenaniiuetoda dopoini tell nykh pere- mennykh Zubareva k statisticheskoy fizike). PERIODICALt Doklady AN SSSR 1958, Vol- 116, Nr 1, Pp. 6i-c-,,1 ~U~33R) ABSTRACTe In 1953 D. N. Zubarev with the investiration of the problem of elementary stimulations in a real Fermi gas. developed the method of additional variables and used them for the calculation of the energy spectrum of these stimulations. The present work uses the method of the additional vaxiables for the calculation of the statistical sum of a system of N particles belne in interaction. For reasons of exactness the authors observe Fermi particles in a volume V which 'by means of a -entral two- particle potential are in interaction w-ith oneanother (Bose- particles can be investi(-ated analogous~y~. The -~iamiltrnia: Lf the system is represented in form H . 11 + fi l if /2 W l 0 ii The added operators QZ k1 (kc, k Q+ t - Q:-k* Card 1/2 The Use of Zubarev's Method of Additional VazI-ab-.es in 20-1-17/5~ statistical physics. + means here the Hermitian (Erm-it) are introduced. The ve-tor of state of the s,7stem is suff1c'-ent for th- added c,-,ndit~-or 0