SCIENTIFIC ABSTRACT SHEVLYAKOV, YU.A. - SHEVTSOV, A.A.

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December 31, 1967
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SCIENTIFIC ABSTRACT
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S/198/62/008/005/003/009 Contact problem for ... D234/D308 surface and a aymmetrical,~die acts on the top layer. The image func- tion*C((p) for the top layer is sought in the form a C((p) = 12'- S, X(t)JO(pt)dt (2-5) lp ,0 10 denoting the cylindrical function of the first kind. The problem is reduced to a Fredholm integral equation [Y (0+x), a Y"(x sin )d~ + X(t)K(x,t)dt (2.11) 0 0 Card 2/ 4 8/19 62/008/005/003/009 Contact problem for D234YD308 where y(x) is a function determining the shape of-the die, and K(x,t)'= X pl~ P) JO Px) JO (pt )dP (2.12) 0 A(P) (P) (2.8) S1 0(1 pA(p) (1.6) -Abstracter's note: 1 not defined, probably Eq. (2.6) in which the' eft hand side is missing._,7 The image functionso( and 6 were de- ~ fined by the authors in a previous paper (Prylkladna mekhanika, v. 8, 1962, no. 2), 2a is the maximum width of the die. When the layer --thickness tends toco one obtains the solution for a half-plane C'~rd 3/4 Contact problem for ... S/196/62/008/005/003/009 D234/D308 / -Abstracter's note: The meaning in which the authors use this term' is not clear '~ Bq. (2.11) is reduced to a form suitable for nume- ri-cal computation. Tables of auxiliary coefficients which do not de- pend on the shape of the die are given for the,case of a layer placed on a half-plane and on a rigid base. The method of computa- tion is described and the results quoted for the two above cases, the die being rou-nd and the contact segment.four times as large as the layer thickness. The forces P have the form P = mR'ba2/(j_V2)R. The radius of the die R is assumed to be sufficiently large. The coefficient m is equal to 0.21 for a layer on a half-plane and to 0.51 for a layer on a rigid base. There are 2 tables.and 1 figure. ASSOCIATION: Dnipropetrovslkyy derzhavnyy universytet (Dniprope- trovsk State University) SUBMITTED: March 10, 1962 Card 4/4 FOT: , A. F . : (Dnu~~opvtrovrkj' ---- "Solution of ccrt.:in basic *)oundar-~- value problems of elasticity for _r7ultiLm.-cred foLmdations" Report presented at the 2nd All-Union Congress on Theoreticaland Applied Me~hanics, Moscow 29 Jan - 5 Feb 64. TERVIIN, S.I.; CHEKHOV, V.N.; ~HEVLYAKOVI Yu.A.; SHEVCHENKOJ V.P. (Dnepropetrovsk) "General solution of the ecuations of shallow shells and some estimates of the bending theory" Report presented at the 2nd All-Union Congress on Theoretical and Applied Mechanics, Moscow 2.0 Jan - 5 Feb 64. 7~7 L 10440-65 EWT(d)/EWT(M)ffr-WA(d)/EWP(w)/EWP(k)/ERA(h)p b_'~ ASDU )'2 f Pe EM :ACCESSION NRt AP4043300 S/0198164/010/004103821(tigt-.:,~, AUTHORI Shovlyakovp Yu. A. (Dnipropetrov&)i Shevchenk6s:~~* -0.0hi propetrov&-) TITLEi Solution of the problem of the flesure of shallow ophe cleat shells =SOURC dna makhanike, vs 100 noe 4gL964s' 382' 391 U41V RAM A particular solution of differantial.equations~-for_ ABST flexure of a shallow spherical shell~under-tfia action -of cancan forces and bending moments was found by the metho4 of Fourteir-Ranket iintegral transformations. The axially symmetric deformation of the-. shell was studied. The application of the superpo4ition method made it possible to obtain par.ticular solutions for circularand anaulat'', loading, Nonaxisymmetric loa-diu'g by a concentrated farea'ai an arb'L- trary point and by a concentrated moment -was alao at4died 'i. - 'A partic- a -be ular solution for move complex asymmet'ric.loadl.ng.ca 0~ tattle d~.. from the solution for a corresponding er~mmetricj*ad 46d~~by:4slnx'-_the Card 1/ 2 SHEVLY,`~FOV I Yu.A. (Dnepropetrovsk) ; SHEVCMIKO, V.P. (Dnepropetrovsk) Shallow spherical shell under the action of concentrated forces and moments. Prikl. mekh. 1 no.2:74-77 165. (MIRA 18:6) 1. Dnepropetrovskiy gosudarstvennyy universitet. 1- -0252c5-67 EWT(d)/jrVT'i rn)/E'YIPf-r6/ PW - - IjP(C EM- ACC NRt AT6020971 SOURCE CODE: URI/3207/65/0130/002/0075/0-383 AUTHOR: Sbevlyakov, Yu. A. (Doctor of technical sciencesj Professor); -T 10 RG:: Dnepropetrovsk University (Dnepropetrovskiy universitet) I.) ITLE: Thermoelastic stresses in multileyer plates and bases VY ;S OURCE: Gidroseromekbanike, no. 2, 1965, 75-83 OFIC TAGS: thermoel9sticity, stress analysis .BSTRACT:,\The article considers the problem of the state of stress of a iultile-ye 1-~late which is under conditions of plane deformation, 'and 'hich consists of m layers which have different mechanical and hermophysical properties not dependent on the temperature. On the free urfaces of the first and last layer the temperature is given as a 'unction of the'coordinate x~jsteady state process) or as a function of he coordinate and the time nsteady state process). The state of tress of a multilayer bundle on an elastic or rigid base can be obtained ,y infinitely increasing the thickness of the last layer, h 00 . 'Iter setting the initial conditions, the authors s iolve matuematically he problem of finding the thervioelestic stresses due to steady state t 02525-67 ACC N" AT6020971 temperature fields, and then those due to unsteady state temperature fields, Orig. art.~bas: 37 formulas, SUB CODE., 20/ SUBM DATE.- none/ ORIG REP: 002/ OTH REF: 003 SHEVLYAKOV, Yu.A. (Dnepropetrovsk); CHEKHOV, V.N. (Dnepropetrovsk) Approximate solutions of the axisymnetric deformation of a spherical shell. Prikl. mekh. 1 no.4:12-18 165. (MIR.A 18:6) 1. Dnepropetrovskiy gosudarstvennyy universitet. 1IL".11!"MR: V.J. (Dnepropetrovsk) j PRIVARNIKOV, A.K. (Dnepropetrovsk); I I J.- - I Sli'i,',','LYAKOV, Yu.A. (DneproFetrovuk) Soh,,'~ion olp problems involving multilayer bases. Izv. MI SSSR. Mekh. ro.2:138-143 Mr-Ap 1650 (MIRA 18: 6) SNSVIIY.IIIKIJ~~Iy ~ti.A. (O.,ieF-,ruT:etr-uvsk); CHUM,, V.N. (Dnepropetrovsk) of tine influerce of a s.-herical E'hell. P-,jkl.melk~. I rc.707-,/~ 165- ( "C' Rbk ~- 8 : a ) 1. Dnepropetrovskdy gosudarstvenni.,n *,vf y uni- arsitet. S/149/6Z/000/003/009,1011 AOOI/AlOl AUTHORSt Kamenetskiy, M. V.,_~~ TITLE: Electric conductivity of binary systems consisting of sodium and titanium chlorides or potassium and titanium chlorides PERIODICAL: Izvestiya vysshikh uchebnykh zavedeniy, Tsvetnaya metallurgiya, no - 3,1962, 89 - 93' TEXT: The authors studied electric conductivity of binary systems used in electrolytical refining of titanium at 800 - 9500C in order to select*an effective composition of electrolytes. The device used for resistance measurements was a conductivity meter with an operation range from 10-2 to 107 ohm. Molybdenum and tungsten were used as materials for electrodes. The specific electric conduc- tivity of the M'-MC'3 system was measured in the concentration range from 0 to :L, 38 mol.% TiCl3, and thiLt of the NaCl-TiC'3 system in the range from 0 to 30.8 mol.% TiCl Isotherms of specific electkic conductivity of both systems are shown gra;Lcally at various temperatures and compared with data by Ya. K.'Deli- marskiy and R. V. Chernov. At a content of 25 mol.% TiCl3 the isotherms show de- Card 1/2 c propexties of Baskunclialk table salt and ur- - e12=1CIII rialts.. E. 1. AL-humov, -P. f. Ntkalacva, and T. N. ' Shtvlyakma. Zhu,, P74104. Kkim. 29 - 159%-01 .-TIPSM Er M~TS, 11147c.-Tbe bygroscopkitim of the follovdngsalts weredetd. in 10fl% 4 hamidity: NaP, NaCl, NaBr, NaBr.21420. N"I, Nal, 32HO, NatSO., NaSO..1019.0, NaNO, Na,Co,, Nillco;'- IOH~O and Baskunchak table %It cow,,-. 91~ 42c," ': -t (: 1. The hygroscopicity of the table salt v-as Itm cT tfLul timt of NaCl, 797.2 and 869.5 g. /sq. M- in one day, resp. 11 -- - - - - 1, 13 5(4) AUTHORSs Lantratov, M. F., Shevlyakova, T. 11. SOV/78,-4-5-34/46 TITLEs The Thermo-dynamical Properties of the Solutions of Melted Salts in the System PbBr 2"KBr (Termodinamicheskiye svoystva rastvorov rasplavlennykh soley v systeme PbBr 2-KBr) PERIODICAL: Zhurnal neorganicheskoy khimii, 1959, Vol 4, Nr 5, PP 1153-1158 (USSIO ABSTRACT: The thermodynamical properties of solutions of melted PbBr 2_KBr were calculated as follows according to the data of electric conductivity in the reversible chemical chain: (Graphite)PblPbBr 2(a,, 11j)+JCBr(a 2,"f2 )lBr2(graphite). (a, and a2 denote the activities, N 1 and N2 '* the ratio of molar weights of the components). Tile lead metal and the initial salts PbBr 2 and KBr are of the highest degree of purity. For the purpose of measuring electric conductivity the high-ohmic potentiometer PPTV-.l., and as zero-instrument an optical galvanometer with a sensitivity of 1.10- 9a were Card 1/3 used. The construction of the eell for measuring electric The Thermo-dynamical Properties :)f the Solutions SOT/78-4-5-34/46 Melted Salts in the System PbBr 2-XBr conductivity is shown by figure 1. Measurements were carried 0 out at 380 - 5900. The E0-dependence of the chemical chain (graphite) PbjPbB_12lfBr2(graphite.) on temperature is shown by table 1. Table 2 shows the E of the chemical chain 0 (graphite) PbjPbBr, + KBr(N2)lBr2 (graphite) and the thermo-d~rn-aai eel data concerning PbBr2 and KBr at 589 and 539 0 and the different composition of the solution Ni. The activities of PbB::-2 at 5890 (1) and 5390 (2) and of KBr at 589 (3) and the activity coefficients PbBr2 at 5890 (1) and 5390 (2) and KBr at 5890 (3) are shown by figures 2 and 3. Figures 2 and 3 show that a negative deviation from Raul's law occurs in the system PbBr 2-KBr. The activity coefficients of PbBr2 and KBr are in all concentration Card 2/3 ranges smaller than unity. In PbBr2- and KBr-solutions The Thermo-dynamical Properties of the Solutions of SOV/78-4-5-34/46 Melted Salts in the System PbBr 2-XBr the complex ions -Br - and bBr 12 - are formed, which [Pb 2 51 1P 4 cause the negative deviation. Figure 4 shows the partial data concerning AZ1 and 6Z2and the values of the molar isobaric-isothermal potential ( zZ). The thermodynamical data of the system PbBr 2-KBr at r89 0are given in table 3- It was found that the formation of the solution PbBr 2-XBr is accompanied by considerable heat generation. The maximum value for the mixing enthalpy is 7460 cal/9-mol. There are 4 figures, 3 tables, and 6 references, 3 of which are Soviet. SUBMITTED: February 20, 1958 Card 3/3 III.F.; Sj':~11111:!A.~OIJA, -I .-- Tjjcz,:.,.ody-ja.,r,ic proy-er', o: '-sod 3alt solutio-,js in tile systm, F'bBrq - 1a3r. Zhur. neor--. *--h-i-~!- 6 no.1:192-"193 161. ('MI (Lead brcmide) (sodium )rondde) (Laai c*11ovId'o) IAIITRAT(YV, M.F.; SIOI~YAKOVA, T.N. Thermodynamic properties of fused salt.solutions.in the CdBr 2 - NaBr system. Zhur.prikl.khim. 34 no.11:2570-2573 N 161. (14IRL 15.1) - 1. Leningradskiy elektrotekhnicheskiy institut im. V.I.Ullyanova (Lenina). (Salts) (Systems (Chemistry)) SHEVLYAr\-0-M1 USSR/Forestry Fore~--t Cultures. K. Abs Jour Rof Zhur - Diol., 11z) 21, 0 1953, 95842 Alffli.~r Stimtonnvic!,., A.Ii, S,icvlja1,.ova, T.Ya- I --a S t Leiliii~yad Scieiitific -Res ca-rch Institute of Porestry. Title Plantings of Conifers = Old MtDverc (Rocinstruction of Poar Deciduous Undcrr;rowth). OaAr; Ptfj 13yul- muchno-tekli-i- infmi. Lenin6T. :i--i- L-1-t-a lesn. Idl-va, 1957, 113 4, 34-43- Abstract Dm-in~; reconstruction of lz~v-valuc plamitatic:,.s, it is ,)loj7ji-.r- ~c trec-shrub L, t. Ll prop,,,sed t3 prepare the strips by i vInd E;r3ss vc:;etation, wiVi subseque-,it rallin,,.; and paclciu~; of the cover on which pim-itin:;s are set. By Livesti- Lations in the Oredzhenskiy, Gatchinskiy and Siverskiy 1cs1dv:)Zes, a difference was established in the takiiiC; ~-crit 3f trees crcated by plantiLC; or scedii-aug. Card 1/2 L 31120-65 h-WT(m)/h-PF(c)/E'dP(j) Pc-4/Pr-4 RK ACCESSION NR: AP5067172 S/0286/65/000/003/0042/0042 AMOR: S.hkol'nikov, V. M.; Sh_~~akov,_ V. v, B. K.; Tseytlin, 1. M. __L; BorovitskL TITLE: A method for producing antiager f r rubber products. Class 23, No. 167935 SOURCE: Byulleten' iwbreteniy i tovarnykh znakov, no. 3, 1965, 42 TOPIC TAGS: antiager, rubber, paraffin, asphalt ABSTRACT: This Author's Certificate introduces a method for producing an antiager for rubber products. The antiager is based on crude paraffins. In order to pro- vide a wider choice of raw materials and to simplify the process, the asphalt from deasphaltization of tar is deasphalted in a solution of propane, the deasphaltizate is treated in a selective solvent and the resulting product is depar-affinated. ASSOCIATION: none SUIBSITTED: 09Aug63 DICL: 00 SUB CODE- MT NO REF SOV: 000 OTHER: 000 Card SHEVLYUGA, N.G. Data on the nature of riboflavin activity in certain food products of animal origin. Gig. sanit., Moskva no.11:35-36 Nov 1951. (CLj4L 21:2) 1. Of the Department of General Hygiene, Tbilisi State Medical Institute* ,-SEERYLYUK, 1T.Ya. Method of conserving steam locomotive boilers. Zhel. dor. transp. 40 no.8:75 Ag '58. (MIRA 11:9) l.Nachallnik parovoznogo depo, predsedatell Ilauchno-tekhnicheskogootdela, st.Kerch' II. (Locomotive boilers--Maintenance and repair) -0" '906T %--*MY 6-T 'PIn's. I,= q, I- p"o-90A %~d" alli 1:1 AllAlily :rIaNvyRo-io lio MOM SISAM9 T ly SHEVNINS A.D. Calendar of geomagnetic activity-in the U.S.S.R. Magn.-ionoef. vo-.M, no-1:70-73 '59. (MrU 13: 1) (Magnetism, Terrestrial) 86390 S/020/60/135/002/013/036 3, 2..? a o BO19/BO77 AUTHORSt Antsilevich, M. G. and Shevnin, A D TITLE. Evaluation of the Geomagnetic Observations Obtained From the First Soviet Cosmic Rocket PERIODICAL: Doklady Akademii nauk SSSR, 196o, vol. 135, No. 2, pp. 298 - 300 TEXT: The measurements made by the first Soviet cosmic rocket showed that the geomagnetic field strength decreases much faster with increasing height than had been calculated. The measured field strength varied as follows; There is a minimum of 4-10-3 oersteds at a distance of 20,800 km, a maximum of 8-10-3 oersteds was found at 22,000 km, and above that height the decrease is very slow. Antsilevich concluded from studies of a magneto- gram of Tashkentskaya observatoriya (Tashkent Observatory) that a small magnetic storm must have occurred on that day causing the disturbances of the magnetic field. Observations of 16 stations indicated that a magnetic disturbance started on January 2, 1959 at 11 h 20 min universal time. This Card 1/2 86390 Evaluation of the Geomagnetic Observations S/020/60/135/002/013/036 Obtained From the First Soviet Cosmic Rocket B019/BO77 storm reached its peak after 12 hours and its lowest value after 14 hours. The earth had passed through a weak corpuscular current which caused this disturbance. Since the first Soviet cosmic rocket went through the same system, the magnetic storm showed up in the measurements. The authors conclude that the corpuscular current created an equatorial current belt, and assuming the mean diameter of the belt as r mean = 26.280 km, the current is calculated to be 6.3-105 a. There are 3 figures and 2 Soviet references, ASSOCIATION: Institut matematiki im. V. I. Romanovskogo Akademii nauk UzSSR (Institute of Mathematics imeni V. I. Romanovskiy of the Academy of Sciences Uzbekskaya SSR). Institut zemnogo magnetizma, ionosfery i rasprostraneniya radiovoln Akademii nauk SSSR (Institute of Terrestrial Magnetism, Ionosphere, and Propagation of Radio Waves of the Academy of Sciences USSR) PRESENTED- August 5, 1,960, by Ye. K. Fedorov, Academician SUBMITTED: August 4, 1960 Card 2/2 7 D207/D307 AUTHOR: Shevnin V Magnetic field of a toroidal current PERIODICAL: _2? 1963, 213- Geomagnetizm 1 abronomiya, v. 3 ho. . 222 TEXT: -_ The generdl problem of the magnetic field of a toiroi dal current of . constant density issolved. 'Formulas Are derived for,-,._,_, calculation of the magnetic field in toroidal and cylindrical:sys- is tems of -coordinates. 'Using thelatter system the magnetic field calculated and ~ shown graphically-forcurr ent If Imring along a simple torus and along a system of tTIio,toruses one inside-the other with'- their boundary in contact. The latter'case represents the io'nospher-- -, ' ic ring current writh . Mzntgnetic f ields f or the - two cases are compare d each other and with the- experimental geomagnetic data. AUs compari.";-. son indicates t he erastence of a system of currents'at a distance 25,730 - 26,800 1cm from the center of the earth and another system (only about 1/5 as strong as the first) at a distance of about Card 1/2 5/0293/64/002/003/0478/0484 ACCESSION NR- "4041570 J% AUTHOR: Shevnin, A. D. 77TLE: Analytical representation of the earth's magnetic fibld In.an orbital system of coordinates SOURCE: Koamicheskiyo Issledovanlya, v. 2, no, 3, 1964, 478-484 TOPIC TAGS: terrestrial magnet I- field, geomagnetism, orbital coordinate system, magnetic field, artificial earth satellite ABSTRACT: Computation formulas have been derived as a function of -time and the elements of an elliptical orbit for the components of the strength of the earth's main magnetic fiold in an orbital system of coordinates. For investigations on artificial earth! satellites it is important to know the character of the magnetic field at that point of the orbit at which tho satellite is situated at a particular time; the derived analytical exprqs- sions facilitate such determinations. The point of departure can be understood fro'm Fig. I of the Enclosure. The projection of the elliptical orbit on the celestial sphere is represented: Yis the point of the vernal equinox, 0 is the ascending node of the satellite orbit,.N is the north celestial pole, p is the projection of the point P on the sphere, NA is the geographic meridian passing through the point p, 31 Is the projection of the perigee 3rd 1/4 ACCESSION NR: AP4041570 on the sphere, Y R A is the plane of the geographic eqtator, 031 p is the orbital plane of the' artificial earth satellite, OD is the normal to the satellite orbit, &awn from the center 0 of the sphere and, >, u -is the longitude of the point p from the ascending node. The posi- tion of the satellite orbit is determined by the angles: the longitude of the aacending node 12-and the Drbltal inclination i to the plane of the geographic eqiator. Fortheelliptical orbit R and-i are -considered constants. However, duo to deviation of the carth's gravita tional fiaMrom- central, the satellite orbit wiU experience perturbations which can be represented as the two following effects: 1) small periodic variations of the angle i with aw amplitudaef about -0*011; Uds perturbation can be neglected and i assumed constant; 2):; orbital precession -_ an almost uniform change in the longitude of the ascending node 2, determined by the formula: '~HEVNIII, A.D. Measuring the X, Y, and Z componentz of the ge(~n-vqnetlc filleld, "Id of sat' . "" w.'t,h the a , ~ I .L -.ellites and rockets. Kosm.ii, -.# 3 no.2,~231- ,36 Mr-Ap tb5. (MIW. *,'.ri~~4) _L 15217-66 M(I)/ER(m)/FS(v~-3/=(k)-2/~WA(d) GW ACC NR: AP5026050 SOURCE CODE: UR/0293/65/003/005/07OOAY708~ AUTHOR: Shevnin, A. D. 78 ORG: none TITLE: On the perturbing moment of a satenite movtrAn the earth's magnetiAleld SOURCE: Kosmicheskiye issledovan1ya, v. 3s, no* 5. 1965p 700-708 TOPIC TAGS; artificial satellites perturbed satellite motion, earth satellite orbit, artificial satellite orbit, geomagnetie field, iron.. magnetic moment ABSTRACT: The sign of the field-strength components in an orbital coordinate an is evaluated, A surface type described by the strength vector relative to t4e.bi- normal to the satellite orbit is established, The perturbing moments of satellites of magnetically hard and magnetically soft iron and current coils are examined.- On the basis of a dipole approximation of the earth's magnetic field.. the strength components of a uniformly magnetized earth in the coordinate system of the satellite are: M X0 Xx Cos a Cos Cos cg, % Ye Xu'sin a me r3 cosysesina, 2M9 Zo ZA ard 113 UDG: 521.61 L 15217-66 ACC NRs A-P5026050 The scalar magnitude of the geomagnetie field strength H=j[exl"1+33in2jj~~ A diagram of a surface type, described by the geomagnetic field strength-vector relative to the binormal of the satellite orbit,, is shown in Fig. 1. The perturbing. moment from current coils can be considered as that from magnetically hard.iron. In the case of spherical sy=etry of the soft iron of the satellite., the perturbing moment from the magnetically soft iron is equal to zero. Card 2/3 ACC NRi AP5026050 vc zc Fig. 1. Orig. art. has; 30 formilas, 5 graphst 3 diagrams.. and Itable. S CODE: ., 22/SUBM DATHs I27YAY64/ SOV REFt 004. L 38W)66_66) ACC NRz AF6007749 SOURCE CODE: UR/029)-166/o-o-4-/cdi/df6!~/6f6i- Author: Shevnin, A. D. ORG: none' TITLE: Components of the geomagnetic fields strength in the solar-ecliptic c;ordinate system SOURCE: Kosmicheskiye issledovaniya, v. 4, no. 1, 1966, 165-167 TOPIC TAGS: geomagnetic field, satellite, coordinate system, space coordinate sy STRACT: The geomagnetic field strength is expressed in the solex ecliptic coordinate"syst in order to describe the complete orientation of artificial satellites or the type "Electron-2.11 WThese coordinates are given by: S - in the solar direction; S1 - perpendicular to the ecliptic plane, and S2 in the diree complementary to a right-handed coordinate system. Starting from a spherical coordinate system,.this leads to the expressions SU (-sin (P COW cosA - sin (p cin).- cos e sin A + cos (P sin z sin A)X8 + (-sin).* cos A + c08) * Cos e sin A) Yo + + (-cos 9 cos X* cos A - cos (P sin 7' cos e sin A - sin 4p sin e.sin A) Ze, s, - (sin qp cos X* sin A - sin 1p sin A.' cos e cos A + cos tp sin a C03 A)Xe + (sin X* sin A + eos).* cos e cos A) Ye + + (cos cp cos X* sin A - Cos (p sin ;L* cos e cos A - sin (p sin a cos A) Zo, Card 1 /2 TTnr c:c~r% 'A ACC NRt AP6007749 81 - (ain 1p sin 1, aln a + Cos q C,03 6) Xf + + (--COs X, sin 6) Ye + (COs 7 sin X* sing - Bin 9 Cos IB) 4 Orig. art. hast 3 fomulas and 2 figares. SUB CODE: 08.v 20/ SUBM DATE; 29Apr65/ ORIG REFt 003 2/2/~),/ /-; ACC NR: AP6029355 SOURCE CODE: UR/0203/66/006/004/0733/0742 0 AUTHORI Felldshteyn, Ya. I.; Shevnin, A. D. ORG: Institute of Terrestrial Magnetism, Ionosphere,and Fe Propagation, AN SSSR (Inatitut zemnogo magnetizmag ionogfery i rasproatraneniya radiovoln AN SSSR) TITLEt Magnetic field of annular currents on the earth's surface according to observations during the IGY SOURCE Geomagnetizm i aeronomiya, v. 6, no. 4, 1966, 733-742 TOPIC TAGS: geomagnetic field, magnetic storm, magnetosphere, pwdm=- aurora*% afte**_4RWWM " -jl-- - - %P~ 1 165.;9X==G:tW**m ABSTRACTi The ring-current field DR during the maFneti_e_n8_tDLr_m\?" regeneration phase is examined. Using deviation values of the H-com- ponent of the field during the quiet state obtained in the period from I November 1957 through 31 December 1958 as reference data, different values for the DR field were found for the day and night sides of the earth during the storm regeneration period. The latitudinal distribution of the ring-current field is found to follow the law of the cosines for the geomagnetic latitude. Data obtained during the magnetic storm of 11 February 1958 show that the asymmetry of the disturbance field -L 43936-66 ACC NRt AP6028355 during the buildup of DR, i.e., before the maximum of the main phase is reached, in the case of intense storms can be explained without having to assume that the current belt DR1 subsides in the ionosvherd\'~ on the night side. Orig. art. hasi 2 figures and 2 formulas. TD-M] SUB CODE: OB/ SUBH DATE: 07Dec65/ ORIG REP: 018/ OTH REP: 016 ATD PRESS: !~-o& / . hs ACC NR: A116032685 SOURCL CODE.: Ult/0203/66/006/005/0822/08.26'~ AUTHOR: Ivanov, K. G.; -Shcvnin, A. D. :ORG: Institute of Terrestrial 11agnctism, Ionosphere, and Propagation of' :Radio Waves, AN SSSR (Institut zemnogo magnetizma, ionosfery, i ~rasprostraneniy&i radiovoln AN SSSR) ITITLE: Geomagnetic phenomena observed during the passage of the earth through the tail of Halley's comet in 1910 SOURCE: Geomagnetizm i aeronomiya, v. 6, no. 5, 19669 822-a26 TOPIC TAGS: comet tail, comet' head, 1-~~~~,Imagnetic dis- turbance, solar wind,f'Sro'ck uyave,_,_~ LD 4k !ABSTRACT: On 18-19 May 1910, the earth passed through the tail of, lHalley's Comet. At that time the comet was in the lower conjunction ;with the sun, and its distance from the earth was approximately 24 mil- !lion km. The tail's length exceeded th.at distance. The orbital :velocity of the comet *was 45 km/sec, and the orbital velocity of the learth counter to the comet 'Is head was 30 kmlsec at an angle of 30% !'Ihe'computed velocity of-the.tail at the earth's orbit was 80 km1sec. In one hr the earth travelled 300,000 km in the comet's tail. Magnetic disturbances were observed at-the moment of passage. Magnetograms of rnr,4 I /A UDC: 550.385:523.6 ACC NRz AP6032685 S. K. Vseklisvyatskiy, and Yu. 0. Kalinin for their intercat and din- ures and 4 for- cu.-;sions of the problem. orig. art. has: 1 table, 2 fip mulas. OUB CODE: 6308~16/ SUBM DATE: 15,May65/ ORIG REF: 008/ OTH REF: 013 Card 3/3 itEVYAKINY Vasiliy Petrovich, doktor tekhn. nauk; SHMD1, Aleksandr IL14kliaylovich, dots.; KHAVINSOV, Yu.I., red. [Organization of machine repair on a year-round schedule on the collective and state farms in Eastern Siberia] Or- ganizatsiia remonta mashin po, kruglogodovoma grafiku. v sovkhozakh i kolkhozakh Vostochnoi Sibiri. Irkutsk, Irkut- skoe knizhnoe izd-vo, 1963. 87 p. (MIRA 17:4) KASHIRTSEVA, M.F.; SHETNIN,.A.N.; VOROITKEVICR, L,V. Uranium-bearing glauconites. Sov.geol. 1+ no.11:131-137 Ii 161 (~LIRA 34: 11) 1. Vsesoyuzny.,f nauchno-issledovatellskiy institut minerallnogo syrlya. (Uranium) (Glauconite) VLA-SOV,, V.N,,, goravy inzli., SHEVNIN~ 13,1,, gornyy Inzh. Breaking ore in chqmbers Irf uIng borehol-~s drilled tbrough the ore blof.-k. Gor. zhur. no.9,-71-72 S 164. (WIRA 17i'12) 1, institut gornogo dela Silbirskogo otdelenltya All SSSR, Novosibirsk, NOSKOV, B. M. ; BORISOV, G.K.; SHEVNIN, Te.Y. Using diffusion techniques for investigating the elimination of martansite transformation traces during high ta=eratura annealing. Fiz. met. i metalloved. 3 no.2:278-281 '56. (MLRA 9:11) 1. Nauchno-isaledovatellskiy institut khimii Gor1kovskogo gosudarstvannogo universitata. (Martansite) (Diffusion) (Iron alloys--Metallography) -SHEVNINA, N., nauchnyy sotrudnik Fantastic play of light. Starsh.-serzh. no.2:28 F '61. (MIRA 14:7) 1. Akademiya nauk SSSR. (Auroras) S12031611001100610121021 D055/Dll3 AUTHORS: Felldshteyn, Ya. I., and Shevnina, N.F. TITLE: Seasonal variations in the frequency with which aurorae appear PERIODICLL: Geomagnetizm i aeronomiya, v. 1, no. 6, 1961, 936-938 TEXT:~ The authors investigate seasonal variations in the frequency with which nolar aurorae appear and exclude the effect of differences in duration of cbservation by taking data for a definite Deriod of time each day from a number of stations located in the aurora and polar regions of both hemi- spheres. The results confirm the conclusions of other authors that equinoctial maxima in the frequency with which aurorae appear occur in the aurorae zone and also show that there is no maximum in winter months in the polar region. There are 3 figures, 1 table and 7 references: 4 Soviet and 3 non-Soviet. The English-language references are: C. St'c'rmer. The Polar Aurora. Oxford, 1955; B. 'McInnes, K.A. Robertson. J. Atmos. and Terr. Card. 1/2 ACC NR:AP7007330 - - - --I within the oval auroral zone regardless of the decrease of solar activity. The central line of the zone at night observed duri.ng the solar acti~-ity mini-mum was shifted toward the pole. At night,-the oval zone was located between 68* and 71* geomagnetic latitude. The diurnal variation in the frequency of.occurrence of auroras has one maximum at midnight at geomagnetic latitudes less than 680 and two maxima at mid- night at 710 latitude. The observed maxima were attributed to the asymmefry of the auroral zone, which is nearer to the pole during the morning and evening than at midnight. The change of the position of the oval auroral zone in the IGY and the IGYQS was the same. Azimuths of stretched auro7ras changed markedly during the IGY as well as in the diurnal and yearly periods, Orig. art. has: 3 figures. (EG) SUB CODE: .Card 2/2 . . FELIDSHTEYN, Ya.I.; SHEVIIM, N.F. Position of the auroral zone in the southern hemisphere. Gecmag. i aer. 2 no.2:286-288 Mr-Ap 162. (MIRA 15:6) 1. Institut zemnogo magnetizma,, ionosfery i rasprostraneniya. radiovoln AN SSSR. (Antarctic regions-Auroras) FELIDSHTEYN, Ya.I.; SHEVNINL, N.F. Some results of visual observations of polar lights in the northern hemisphere during the IGY-IGC. Geomag. i aer. 3 no-4.-679-692 JI-Ag 163. (MMA 16:11) 1. Institut, zemnogo magnetizma) ionosfery i rasprostraneniya radiovoln, AN SSSR. ACC NR~ AP6011700 SOURCE CODE: UR/0203/66/006/002/0312/0321 AUTHOR: Felldshteyn, Ya. I.; S hevnina, -N. F. I -Lukina, L. V. ORG: Institute of Terrestrial Magnetism, The Ionosphere, and Radio-Wave Propagation, ~IXSS�R(Institut zemnogo magnetisma, ionosfery I rasprostranenlya radiovoln AN SSSR) TITLE: Polar auroras during magnetically disturbed and magnetically quiet periods SOURCE: Geomagnetizm I aeronomiya, v. 6, no. 2, 1966~ 312-321 TOPIC TAGS: aurora, magnetic field, magnetic field interference ABSTRACT: The distribution of the frequency of the appearance of auroras at the zenith in relation to latitude for magnetically quiet and magnetically disturbed periods Is derived on the basis of observational evidence from a network of cameras covering the entire sky during the years 1957 - 1959 and 1963 - 1965. - The position of the zone of polar auroras.on the night and day sides of the earth during magnetically quiet and magnetically disturbed periods is obtained and the presence of a noticeable asymmetry for both periods is shown. The cyclic changes in the frequency of the appearance of auroras during the night hours are dis- cussed. The latitudinal distribution of the mean diurnal values of the frequency of appearance of polar auroras is derived. It is shown that the ratio between A Thor at the stations Tromso Norway, and Tikhaya, and also the distribution of magnetic activIty at Canadian stations, C.,d 1/2 UDC 550.386. BRAUDE, A.I.; SHEVIYUK, L.A.; URYANSKAYA, V.N. Effect of polymixin M in experimental toxicosis. Antibintiki 8 no.6:540-545 Te'63 NM 2T:3) 1. Laboratoriya-novykh antibiotikov pri kafedre mikrobiologii (zaveduyushchiy - chlen-korrespondent MIN SSSR prof. Z.V. Yermollyeva) TSentrallnogo instituta usovershenstvovani-ya vrachey. SIE-TV-DROSHKIDI, V. (Moscow) "Ancient Texts and the Problem of Machine Translations." Theses - Conference on Machine Translations, 15-21 May 1958, Moscow. AUTHOR: Shevrin -N.--(S-yerdlovsk) SOV/42-13-3-20/41 TITLE: On Some Classes of Semigroups (0 nekotorykh klassakh polugrupp) PERIODICAL: Uspekhi matematicheskikh nauk, 1958, Vol 13, Nr 3, pp 232-233 (USSR) ABSTRACT: A semigroup (an associative system) is called a semigroup with torsion if all its cyclic subsemigroups are finite. The author considers some subclasses of this class of semigroups and investigates their relations.to each other, e.g.: A semigroup is locally nilpotent then and only then if it is a locally finite nil-semigroup or if it is a locally solvable (in a certain sense) nil-semigroup. A locally finite semigroup is a semigroup with torsion. The author gives necessary and sufficient conditions that all subsemigroups of a semigroup P are ideals in r. Several assertions of the author are not new, they can be found in Kurosh (Izvestiya Akademii nauk SSSR, Seriya matematicheskaya, 1941, Vol 5). Card 1/1 69500 1.10,2o0i S/020/160/131/04/14/073 AUTHOR: Shevrin, L.N. TITLE: -Tn--Densely Imbedded Ideals of Semigroups PERIODICAL: Doklady Akademii nauk SSSR, 196o, Vol.131, NO-4, PP-765-768. TEXT: A homomorphism which is no isomorphism is called proper. The ideal N of the semigroup T is called densely imbedded (Ref.1,2) if 1) every proper homomorphism of T in the ideal N also induces a proper homomorphism; 2) let S be a semi-group containing T and being different from T, where N is an ideal in S; then there exists a proper homomorphism of S which induces an isomorphism in N. Principal result: A semigroup having a non-trivial annihilator, cannot be a densely imbedded ideal in any semigroup. The proof is given by a construction of a semigroup S, S DT in which N is an ideal and every proper homomorphism of which in 11 induces also a proper homomorphism, The author mentions L.M.Gluskin. There are 4 Soviet references. ASSOCIATION: Urallskiy gosudarstvennyy universitet im.A.M.Gorlkogo (Ural State University im.A.M.Gor'kiy PRESENTED: December 8, 1959, by A.I.Malltsev, Academician SUBMITTED: December 3, 1959 Card 1/1 85520 16-2000 3/020/60/133/003/022/031XX C ill/ C 333 AUTHOR; Shevrin, L, N. TITLE: Subsemigroups"of Free Subgroups PERIODICAL: Doklady Akademii nauk SSSR, ig6o vol, 133, No.3, pp~ 537-539 TEXT: Let A be the set of the symbols a a2.,.; let B be the set of the symbols b1, b 2"" - It ' a assume t4at to the a. there correspond in one-to-one way new symbols a, , the set of which is called A, . Every finite ordered sequence of symbols from the union of A,j ' and B is called a word, if in it for no 0,,1 the symbols a., and ao, are placed side by side. If a multipiication is defined on the set of all words of the symbols of A, A B _~y writing together two words, then thl free semigroup r- = j 9, , Biwith the free generators ai, ai bi is obtained. If A is empty, then r- is called a pure free semigroup. The system M of free generators of F is called a basis, if for every x E- M it holds x 9 j M x I . Every semi- group possesses the ideals r 2 F "L _2 r-3 :? . -_ 2 rn-2 _ Let r~,3 = n F, ; if f-0 is empty, then F~ is called W -semigroup. At first the author formulates 9 lemmata concerning the simplest Card 1/3 85520 S/020 60/133/003/022/031XX C 111~ C 333 Subsemigroups of Free Subgroups properties of the free semigroups, e, g, Lemma 7: The pure part of a free semig-roup is an W -semigroup. Lemma 8: If the pure part of the subsemigroup H of a free semigroup is an W-semigroup, then H possesses a basis, Let H be a subsemigroup of a free semigroup, let F be its kernel The basis M of H is called regular, if M r\F is a free basis of ~, Let H be a subsemigroup of the free semigroup 7 and let it posses a basis- The element s C-F- is called H-element, if 1.) there exists an h in H so that sh C- H, hs C- H; 2.) if here it is s E- H, then there eTist representations, unshortable in H, h = b,- b k and s" = b 11 .., b l' of the elements h and s-1 by el6ments of the regular basis 0f H, such that it holds at least one of 'the inequalities b, / bl' ~ b k bl'. The subsemigroup H of the free semigroup is called closed, if its pure_part is an Gj -semigroup and if in r- outside of H there are no H elements, Card 2/3 2 0 S/020/60/133/003/022/031XX C 111/ C 333 Subsemigroups of Free Subgroups The fundamental result of the paper is now proved: Theorem: The subsemigroup H of the free semigroup [- is free if and only if H is closed. There are 4 Soviet references. ASSOCIATION: Urallskiy gosudarstvennyy universitet imeni A. M. Gor1kogo (Ural State University imeni A. M. Gor'kiy PRESENTED: March 30, 1960, by A. J. Maltltsev, Academician SUBMITTED: March 27, 1960 Card 3/3 SHEVRIN, L. N. Cand Phys-Math Sci - (diss) "Several structural problems of the theory of subgroups." Sverdlovsk, 1961. 14 pp; (Ministry of Higher and Secondary Specialist Education RSFSR, Leningrad State Pedagogical Inst imeni A. I. Gertsen, Chair of Higher Algebra); 170 copies; price not given; bibliography on pp 13-14 (39 en- tries); (KL, 6-61 sup, 196) SHEVRI-N,-L.N.(Sverdlovsk) General tAeory of semigroups. Ma.t.sbor. 53 no.3-.367-386 Mr 161'. (HIM 14:3) (Groups$ Theory of) L.N. (~verdlovsk) Nilpotent semigroups with certain conditions of finiteness. Mat. sbor. 55 no.4:473-48C D 161. (MIRA 15:3) (Groups, Theory of) -.S-HEVRIN -L-N - Structural properties of.semigroups. Dokl.AN SSSR 138 no.1:73-76 MY-Je 161. (MIRA 14:4) 1. Urallskiy gosudqrstvennyy universitet im. A.M.GorIkogo. Pred3tavleno akademikom A.I.Malltsevym. (Groups, Theory of) -4-SHEVRIN, L.N. Semigroupo with certain structur9l types of ouboemigroupo. Dokl. AN SSSR 138 no.4:796-798 Je f6l. (MIU 14:5) 1. Ural'sXiy gosudarstvennyy universitet imeni A.M.Gorlkogo. Predstavleno akademikom A.I.Malitsev7m. (Groups.. Theory of) SHEVRIN, L.N. Semigroups whose stbeemigroup structure contains relative complements. Dokl.AN SSSR 144 no.1:72-75 Yq 162. MU 15-5) 1. Urallskiy gosudarstvennyy universitet im. A.M.Gorikogo. Predstavleno akademikom A.I.Mal'tsevym (Groups., Theory of; SHEVRIN, L.N. Semigroups of which all sub-semigroups are nilpotent. Sib. mat. zhur. 2 no.6:936-942 N-D 161. (MIRA 15:7) % (Groups, Theory d) SHE~,-~111'IL.N. Demigroups, all subsemigroups of which coincide wit]h their idealizers. ftIat. zap. Ural. mall. ob-va UrGu 3 no-1:85-87 ,61. (MIRA 19:1) SHEVRIN, L.N. Structural characteristics of semigroups. Sib.mat.zhur. 3 no.3:446- 470 My-Je '62. (MIRA 15:9) (Aggregates) (Groups, Theory of) SHEVRINP L.N.;,KOPYTOV, V.M. Semigroups having subsemigroups with relative complements. Do)cl.AN SSSR 145 no.5:1012-1015 162. (MIRA 15:8) 1. Urallskiy gosudarstvennyy universitet im. A.M.Gorlkogo. Predstavleno akademikom A.I.Malltsevym. (Groups, Theory of) S/020/63/148/002/013/037 B125/B112 AUTHOR: Shevrin,,L. N. TITLE: Semigroups with Dedekind structure of subsemigroups PERIODICAL: Akademiya nauk SSSR. Doklady, v. 148, no. 2, 1.963, 292-295 TEXT: The set of all subsemigroups.of the semigroup is semiordered. Semigroups - for which is a Dedekind structure, are considered. The following result is obtained: The structure is a Dedekind structure only if F is a strong bundle of subsemigroups-each of- which is an extension of a periodic module &oup by a nilpotent semigroup in which the union of any two subsemigroups agrees with their set- theoretical sum. ASSOCIATION: Ural'skiy gosudArstvennyy universitet im. A. M. Gor1kogo (Ural state University im. A. M. Gor'kiy) PRESENTED: July 6, 1962, by A. I. Malltsev, Academician SUBMITTED: June 26, 1962 Card 1/1 SHEMIN2 L.19. Semigrcrups with a Dedelcind structute of subsemigroupar. Dokl. A14 SSSR 148 no.2:292-295 Ja 163. (MIRA 16t2) 1. Urallskiy gosudarst7ennyy universitet im. A.M. aortkogo. PrIedstavleno akademikom A.I. Halltsevym. (Ompap Theory of) - SHEVRIN L.N. (Sverdlovsk) Semigroups, all subsemigroups of which are compostion subgroups. Mat. sbor. 61 (103) no.2:253-256 Je 163. (MIRA 16:10) SHEVRIN, L.N.; FOPYTOV, V.M. Semigroups, the semilatItice of whose subseudgroups has relative complements. vat. zap. Ural. mat. ob-va UrGu 4 no.1:74-83 163. (MIRA 17:9) SHURIN, L.N. ' %4. ---nta A*7-; - - Comutative 204 JI-Ag samigroups of finite rank. Usp. mat. nauk 18 no-4:201- 163. (MIRA 16:9) SHEVRIN, L.N. Subsemigroup structure characteristics of commitative nonperiodic groups. Sib. mat. zhur. 5 no-3:671-678 My-Je 164. (MIRA 17:6) SfRNKIN. L.N. Rer,Lark3 on the article I'Structaral proFerties o-',' -emigroups." Silb. mat. zhur. 5 no.3:727 Illy-Je 164. (MIHA 17:6) S HEV Rl N, 7 4:1~ Str-Tictur-al subsemigroup characteristics of ordered groups. Usp. =at. nauk 19 no.5:157-162 S-0 164. (IMURA 17:31) SHEVRIN, L.N. (Sverdlovsk) Structu,ral isomorphdsms of commmut~ative nonpariodical semigroups subject to a law of contraction. I-lat. sbor. 63 no-1:43-58 ja 164. (MIRA 170) SIU,'VRIN, L.N. Projective mappings of somilatticefs. Dokl. AN SSSR 154 no. 3: 538-541 Ja 164. (MIRA 17:5) 1. Urallskiy gosudarstvennyy universitet im. A.M.Gorlkogo. Predstavleno akademikom A.1.11-lalltsevym. SHEVRIN, LoN. Structural properties of idenipotept semigroups. Part 1. Sib.mat. zhur. 6 no.2:459-474 Mr-Ap 165. (MIRA 18:5) SHFITUN, L~ti, I Fwidar-~,ntal tspp,,--ts of the theury of p--ojpctions of semiStruCt~es.' 1-19t. 65 (MIRA :L8t6) Pp t65. n..3 SHEVRIN, L.N. Local firdte semigroups. Dokl. AN SSSR 162 no~4070-773 Je 165. (MIRA 18.-5) 1. Ural'skiy gosudarstvennyy universitet :Lm-. A.M.Gorlkogo-Sub- mitted December 21, 1964. S:,Ell-'?-TN, L.N. (Sverdlovsk) Strong bands of semigroups. Izv.v-ys.ucheb.zav.; mat. no.6:156-165 t65. WaRA 19:1) 1. Submitted October 14, 1964. L -4911"-66 C I ACC NR: AP6030376 SOURCE CODE: UR/0199/66/007/002/0437/0454:: AUTHOR: Shevrin, L. N. ORG: none TITIE: Structural properties of idempotent seirdgroups. II SOURCE: Sibirskiy matematicheskiy zhurnal, v- 7, no. 2, 1966, 437-454 TOPIC T~'GS: mathematics, isomorphism ABSTRACT: Earlier the author found the necessary and sufficient criteria for struct=al isomorphism of two commutative semigroupi;~of idempotents. The next logical problem in the study of the structural properties of the semigroup of idempotents is -to find the size that a class of cummutative semigroups of idempotents which are structurally isomorphic with noncommutative idempotent semigroups must be in order that one of the former be structurally isomorpidc with a given noncommutation semLig oup. The analogous problem for rectangular semigroups was solved in part'I Of this work (Sibirskiy 14atematicheskiy Zhurnal [Siberian Mathematical Journal], VI, No. 2, 1965, 459-474). Orig. art. has: 4 formulas. [JPRS: 36,1391 'SUB CODE. 12 / SUBM DAMIE: 23Nov64 / CRIG REF: 003 KUZNHTSOV. V.A.; ZAGAYNOVA, L.S.; MVTSOVA, FI-P-; SHMI'fA# Z'A* Studying electrocapillary phenomena In thallium - gold alloys. Yauch.dokl.vys.shkoly; khim. I khim.tekh. -no.2:268-272 '59. (MIRA 12:8) 1. Predstavlena kafedroy fizicheskoy khtmii Urallskogo goeudar- stvennogo imiversiteta im. A-11 Gor'kogo. I -(Thallium-gold alloys) i3lectocapillary phenomena) 1/11~ 7-% i, I "I C ACC NRs AP6015287 SOURCE CODE1 UR/0365/66/002/003/0318/032~~ AUTHOR: Kochergin, V. P.; Shevrin!Lj..~.* Fomina, T. 1. ORG: Ural State University im. A. It. Gortkiy (Ural'skiy gosudarstvennyy universitet) TITLEs Iron orrosto in molten chlorides,and phosphates of alkali metals and calcium SOURCEs Zashchita me tallov, v. 2, no. 3, 1966, 318-322 TOPIC TAGSt chloride, phosphate, corrosion rate, iron ABSTRAM Iron corrosion processes were studied In the following meltal UP% - LICI, UAP,10~ - L0, LUO, - LiCl; NaPU. -NaC1, NaA07 - NaG1, NaR04 - NaC1, NaM - NaF, KP07,_ KC], KX20~ - KC1, KsPO, - KCI; Ca (P03), - CaCla, CA[2p2()~ CaC11, CB3 (pot) 2 - cacl'. A decrease in the corrosion rate of Iron was established in the series of meta-, pyro- and orthophosphate melts, and for molten mixtures of phosphates and chlorides, in the series of cations Ca2+ _ Li+ - Na+ - K+. The corrosion rate of iron In these melts decreases with increasing exposure and decreasing temperature. In melts kept In a vacuum and in a nitrogen atmospherej the corrosion rate of iron is lower than in melts Card 1/2 UDC& ACC NRt AP601 not subjected to such treatment. In chloride-phosphate melts, vustite forms on the surface of Iron; in chloride-pyrophosphate melts, magnetite In formed, and in chloride-metaphosphate melts, polymer phosphatesand Iron phosphide coat the iron surface. Orig. art. hast 4 figures. SUB CODES SUBM DATES 2SJan65/ ORIG W73 024/ OTH REFS 011 PIMINA, N.L., kand.med.nauk; SBEVRYGIN, B.V., ordinator Otogenic abscess of the brain and candidamycosis in children. V'est,otorin, 23 no.2:89-90 F 161. (MM 144) 1. Iz kliniki bolezney ukha, nosa i gorla (zav. - zaaluzbennyy doyatell nauki RSFSR prof. I*YA. Sendyllskly) Moska7okogo oblaotnogo naucbno-iool6dovatellskogo klinichookogo instituta imeni M.F. Tiadimirskogo. (MONMASIS) (M) (BRAIN-ABSOMS) NAZAREV-Sh-lYip L.) Sh=YGIII, P. Grain purchasing in the Russian Federation, Muk.-elev. prom. 27 no.10t~~--4 0 161. (RM 14:12) 1. 1-finisterstvo 7,agotovok RSFSR. jGrain trade) NAZAIRTVSKIY, L.; SHEVRYGIN, P.; S40ROVAROV, M.; MANUYLOV, A. Receiving, cleaning, drying, and storing beans. Pbk.-elev. prom. 28 no.5:14-18 My 162. (YIRA 15:5) 1. Ministerstvo proizvodstva i zagotovok sellskokhozyaystvennykh produktov RSFSR (for Nazarevskiy, Shevrygin, Skorovarov). 2. Ministerstvo proizvodstva i zagotovok sellskokhozyaystvennykh produktor Kazakhskoy SSR (for 14anuylov). (Beans) NAZARKVSKIY, L,; SHEVRYGIN, P. Receive and preserve grain of durum and strong wheats in an exemplary mann r. Muk.-elev.prom. 28 no,7:3-4 Jl 162. (MIRA 15:9) 1. Ministerstvo proizvodstva i zagotovok sellskokhozyaystvennykh produktov RSFSR. (Wheat--Storage) NAZAREVSKIY, L.; SHEVRYGIN, P. Receive and preserve efficiently the grain of groats crops. Muk.-elev. prom. 28 no.8:3-6 Ag 162. (MIRA 17:2) I. MIniaterstvo 1)roi7,vod.-3tvn i zagotovok sellskokhozyaystvannykh pro- duktov RSFSR. K 9 VILINIANSKI-T, S.I., professor; YUKS, S.L., professor, otvetstvenny7 redaktor; SHEVSHIINKO, A., redaktor; C.HEMSHENKO. TA.T., tekhnicheekir redaktore [Kreditno-raschatnye pravootnoshaniia; uchebnoe posobie [Kharlkov] Izd-vo KharIkovskogo univ. 119551 55 r [microfilm] (MiRA 10:5) (3anks and banking sa~VSIIEMTY 1% "The reciprocal ,jcticn of regions with different physiological activity. 'The role of an abrupt change in the gra,;ient system.", (p. 581) Section of Experimental Zoology (Chief: E. Ye. Umanskii), Zoological-Biological Institute, Kharkov University, by Shevchenko, N. SO: Biological Journal (Biologicheskii Zhurnal) Vol. VI, 1937, No. 3 C-1 SHEVTS. L. student V Icursa; OZIMINA, N.G., student V kurea Ghanges in the cells of some organs of cold-blooded animals under the effect of vibration. Gig. i san. 21 no-9:37-40 S 356. (MLRA 9:10) 1, Iz kafedry gigiyeny truda i obahchey biologii Leningradskogo sanitarno-gigiyenicheakogo maditainakogo institute. (VIMUTIONS. eff. on cells in cold-blooded animals) IaJZ'MINA, N.G., SHEYT Effect of vibration and noise on general morbidity in the garment industry. Trudy LSGMI 45:13-18 '58 (MIRA 11:11) 1. Xafedra gigiyeny truda a klinikoy prof%avolevaniy Leningradskogo sanitarno-gigiyenicheskogo meditsinshogo instituta (zav. kafedroy - prof. Ye.TS. Andreyeva-Galanina). (TIBRATION-MYSIOWGICAL EFFECT) (NOISE--PHYSIOLOGICAL EFFECT) SHEVTSOV, A.A., inzhaner. Utilization of data of sound wave logging in deep-well pumping operations. ~rady Akad.neft.pron. no. 1:237-247 '54. (MM 8:2) (Oil well logging)(Oil wells--Gas lift) AID P - 269o Subject USSR/Mining Card 1/1 Pub. 78 8/21 Authors Teslyuk, Ye. U., Usachev, P. M. and Shevtsov, A. A.- Title Combined action on the zone adjacent to the well bottom in a hydraulic breakthk-ough or the bed Periodical Neft. khoz., 33, 5, 37-41, MY 1955 Abstract The author discusses the method of secondary recovery by means of pumping a vJSqOid6''salt-acid liquid through the well bottom to achieve a breakthrough of the bed adjacent to the well bottom. Different factors are analysed In order to ascertain the proper viscosity of the fluid pumped. Institution : None Submitted : No date -,-SH&TTSOT, Aleksandr.Aleks.eye.v~ch; ZASKIND, Lyubov' Hisonovna; PALIMPSESTOT, M.A., prof., otv.red.; PASHCHINSKAYA, G.N., red.; TROFIK9NKO, A.S., tekl=ed. Effelminths and helminthiases of domestic water fowl] Gellminty i gellmintozy domashnikh vodoplavaiushchikh ptits. Khar1kov. Izd-vo Khar'kovskogo gos.univ. im. A.X.Gorikogo. 1960. 444 p. (MIRA 13:7) (Worms. Intestinal and parasitic) (Parasites--Ducks) (Parasites--Geese)