SCIENTIFIC ABSTRACT SIMANOV, V.A. - SIMANOVSKIY, M.A.

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SCIENTIFIC ABSTRACT
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'07 10 4 f) Y11.1 4' 2 of tho nwiti-IL117.,k] tho InhIbIti.iij, offect of the nhon,)t, tind t',1,) Ll el 5 n f he ab3 rmc, n of th Is 4 , n T1 q~ In 0 719 It.odl tho oxitlat; loit c', 13o~rn-),.,lb-inzonq insl thall 1111IM01 1-11., It-$ I'f o (7, 1; tivrons,31 in Ulu pra-unticti of !AOH. Thin -L; af;trib,itod to th(7 of conpoililds n1milro, to 1-juille neld. Tho addillon of 1-5 i-itophrinona 11110 110 Offect oil tho rnte of but In the 'la 011 1 ie:n-.1, of , tho weto.,henoyio rwlhcod thp rf): , of oxidnt~,on In stagen of' inci procoss. This ii tittr i-0,9.d to t1vt 11.lor, ~f t1l', -1(~ot-)I~innonci to bnnzole acid, fhe and Oili ~-nntrotlun 1r. 1-Jin 3 1'1411COZI tho froo-rildirq] mixtorn. Tho-ci are 7 f1grurozi and 2 tnblo:j. n,,,7; nw-ichno sledointn2lil, t1ch,fv'&cgo kRuchlikn Imani S. V. LobM_nva All- n1oil ~',,.-.1untific llaivarch Inst Iti-ite for .113yrithe'Un. Rubber !m. S. V. Lobednv) 11 ITT EI 1) A C, t 6 1. 21,2 5/070/62/)32/009/006/011 10413/1242 A P -'Imrtnov VOA. rind Nornteov) M.S, Invontigntion of thq alkaline oxidntion of iso,ropyl- p benzene. V. The affeat of sulf.ur-contnining im.)urities -/Jhi)rnnl obshchoy khimil, v,32, no.(), 119620 29125-292V This Is the f ifth part of a papar whose provio,is purt.!j appear- "T 0,-~] In Zbornn], ob,,jbchuy khimli (v. :50, 1960, pp. 1420 nnd 2153; v. 32., 1'102, pp. 2914 nnd 2925). This pRrt deals with the nffec'. of ;lilfur- rontnining Impuritios on tho rate of oxidation of' the inopropylben- zono a Procipitntion of the 5-contnining Impuritlaa -nith a ninrcurous sqlt (1),)n!g) renront) yielded a complex s6lid 3alf which Ceeotnpo3ed ,)X,')Jos1ve1y an hontinC,; decomposition of this coriplex (by troating wL~h H(31) yielded qn orgRnIc pbaso which was ana:Lysad nnd found to I)o 2,-Isopropylthiophone. Treatment with tho morCurolia 3nlt soltition. r-Ouced bothe the concontrntion of S-containing compm,indo (from 040.3 ,-;t ;4' S) and the iodine numbor (from 1.19 to Os6g-0*70); this Miovi,t thnt tha morourous salt - 2-isopropylthiopheno proclpttate S/107C)/62/03 2/00 21006,,1011 104Q/ 12421 ton of tho alkaline. 3opip iinontlArrAted compmuids too. Tho rvkts) of oxI60-1cn of trio tzioppol)-71banzona purified fvom S-crntalning conprrinds vi-.; mvich i "toll' thrin thnt of the non-trontod n!ntnr1nl; the '3opropylt-onzono priro.y1do content of thn purified materisl nfter 6 ld,s of oxJdntion i y 4"'; 1"";" %,11110 thAt of tho untr,3ated Isopropylbonzone vmz3 onl- P r,:m,oov(-r, tho) poroxide content of the purified Isolropylbon:,-Ino in- 11-ronnoil on r1irthor oxiclation, while thst of th-, iinfr-r4od mit-,orl-il to about 3% rlftar 10 lirs of oxldntlon. Thf. ~nhlbltlng effoet 1!3opropylthiophon.0 to attrib'It-A to t1-,Q stro-n- ricidl It on oxidrition; In fnct, thin Inhibiting offect was c omp .,It e, 1"' o1j,;:1J-,mtnd If Oo.3 wt of Na stoaroto woo nddod to tho th I,; I'll 9110-Contn in ing toopropylbenzanoo The rate of oxicintulon of Iso- Ibonzfir" iiirifind of S-containing impuritin-u by troatment with !12S04- was oliGhtly higher than that of Isopropylbonzene p)iv I f ied b., ;r-, r-bmont -,-.,*,.tb the rerourous salt; thia is Rttributod to !"il"Oval of Int-gor Fmounts of unsaturated compomrdo In the oulfurIc q~~ 16 trantmont, There In I figur,3 Rnd 2 tablo3a ,/62/,332/000/006/011 8/079 1048/1242 nvij tlrvit ton of tho Etlknltnee.. ~jCP-, V~T I o 111 Vuesoyuznyy nauchno-isslodovatollulAy Inatitlit aintoticheakogo kauohuka imeni SV. Lebedava (The All-Union Scientific Remenrch InatItuto for,Synthetlo Rubber im S.V. Lobedev) 5 T J J 17 Z'D AuCxst 7, 1061 "fin) S/079/(2/032/010/002/008 D214/X07 AUTHORSt Simanovv V.A.-,, and Nemtsovo M.S. TITLE: The study of the alkaline oxidation of iso-propylben-. zene, VI. The influence of organic acids PERIODICAL: Zhurnal obshchey khimii, V. 32#.nos 10f 1962# 3179 - 3163 TEXT; The aim of this work waa to study the influence of organic acids on the rate and path of the oxidation reaction of iso-propyl- benzene by H 202* Snall quantities of HCOOH did not affecT-the rate of this process; higher concentration (1.05 % Hj'b0H) noticeably re- tarded the reaction, This is thought to be due to the destruction of H202 by HCOOH with the formation of CO 2# Acetic acid did nA in-, fluence the oxidation process but gallic and salicylic acids retar- ded the oxidation while stearic and benzoic-acide accelerated the reaction, The retardation effect of the hydroxy-acide is attributed to their inhibiting action and to their ability to catalyze the de- composition of H 202" The acceleration of the ri.-actionby stearic Card 112 SIMNOV, V. A. Dissertation defended for the degree of Candidate of Biological Sclences at thpi Institute of High-Holemaar Compounds in 1962: "Study of Alkaline Oxidation of Isopropylbenzene.0 Vast. Akad. Nauk SSSR, No. 4, Moscow, 1963, pages 119-145 r'L 43116-65 M-1T(m)/j;pF(p)/zwp p0.,4/#pr..4 SU. ACCE=ON RR: AP5005735 S/0318/65, '000/00i/0023/0026 AUMOR: Seratova, S". D.; Slenoy V. A.; 0020yaneolm B. I .j_ TME: Chromatographic sn%4ais of tetEj~~n mdUtIon P2 oducts SOURCE: Neftepererabatka i 2-j-26 neft*khimiya, no. i,, i9651V TOPIC TAGS: chromatographic anaiois,- tetr&Un,- tetrali--i oxidation_ product, pol^-thyiene glycol adipate, diatomite carrier- helium ca=ier A ABSTRA.CT: The purpose of this study was to investigate the chromatographic se nara I tion conditions for mixtures of liquid-phase tetralin o;,idation products and to qualitatively determine the IwUvidual prodvcts. The 6eparation was carried cut with a chromatograpbic colu= in the fam of a steel tdie 4-5 M In length and --Ath~ an inside diameter of 6 =,, using 24 polyethylene glycol adipate on diatomi- Heli= served as the gas carrier. The chromatogram of tetralin disclosed 4 dla- tAnct Peaks corresponding to cis- and trans-dieceMn, tetralin, and na*thalene. The chrmatog= or llq~ull-phmse tetraIln mddatioa Prc ducts disclosed the pres- ence of cis- and trans-decalla I ., teta-alin, naphthalene, 1,2-AlhYA-maphthalene and, tetralone-1. The empmente were ideatified by compax--son vith reference coir Dn-. J L 43116-63 ACCEWXON MR., AP5005735 enta and verification-by an infrared spectrograph. It was found that in chroma- tographle separation at 1700 the tatralol-l-and tetralit.hydroperomide components -can be determined by their decomposition products. The quaztitative detemllra- tions were made byzaeans of a~a_lnternal-standar&_axa thf.. content at tetralin in the oxiddt:Lotl--products.-vas-,detdradned by.-thr-~iodcz6-tric method, 'I ta ble.;'- Orig. art. 3 figures and ASSWiATION: Nnnaftekbimicheskikh proizvodstv.. Vfa (Nil of Petrochemical Xn- dustries) SUONXTTED.- 00 ENCL: 0 0 SO CODE: CC, OC =W RM ALt; MR, AP5W6530 S=CZ CMZs UA/021~165/0W/019/0070/007 #11 0 ev AUTHORSs Golovananko, B. I ; Loychuk.-V.-B~; Liakmoviaby A. Gol Sifflonovi To AL'sl TeTelenokp L. Y&.; Muunianov,_T. ORO t none fy TITLEs Method for obtaining synthetic rubber# Class 39, No. 172228 Lranumced by �cientific Research Institute for Petrochemical Pr2ftato (A-Z-bno-ineledovateVokir inatitut neftekhimichookikh proizYodotV17 ff BOURCEt Byulleten' isobrateniy i tovarrokh zaakovo nos 199 1965P 70 TOPIC TAGSz rubber# synthetic rubber~Ltadisno# notlWletar:7enep dualin peroxidet copolymer ABSTRACTt This Author CartifVLoate presents a metho"or obtaining synthetic rubber by copolyzerizatiorPof buUtdionewith cc-ze!Nr1s!gEen&11.n an alueous emiulsion at low tenperatures in the presence of known exulsifierep buffers, rogulatorop stabilizerej and peroxide initiators, To increase the variety of peroxide initiators, domain peroxide io used as initiator.19The docalin eroxide in usod in the form of oxidation e products of domainoxydemain containing 3;?deoalin peroxid*. SUB CODEs OT/ SM DAM 31Aug64 C.'d 1/1 LILA? =C8 670-762.2-134-6= -71 SIMANOV, V.G., inzh. Mining with pneumatic blasthole chargirkr. Izv.v,-.rQ..uch.Cb.7av. r,or.zhur. no.4:53-56 159. WIRA 13:5) 1. Sverdlovskiy gornvy institut imeni Vj.Vakhrusheva. Rokomendovana ka?edroy ghakhtnogo stroltel'stva, (Mining anginearinp) (Pneumatic tools) S INA ADY, V. 0. , insh, Jiffact of the diameter of the bore bit on the efficiency of boring operations. Izv.vyo.ucheb.z#Lvo: gor,zhurs no*7: 40-52 1.59. (MIRI. 13:4) I* Sverdlovskiy gornyy inutitut iment I.T.Vakhrushava. Rekomendovana kidedroy shakhtnogo stroiXelletva. (Boring machinsi7) SDIAIIOV,_~ inzh. Nomogram for determining the optimum diameter and number of blasting holes in cuttIng drifts. Izv. vys. ucheb. zav.; gor. zhur. no. 12:29- 37 159. (MIFA 14:5) 1. Svordlovskiy gornyy in3titut imeni V.V. Vakhrusheva. Rokomendovana kafedroy shakhtnogo stroitel'stva. (Mining engineering) (Blasting) (Nomography (Mathematics)) SIMANOV, VIGG Iffect of the diameter of the bit on the rate of boring. Ugoll 35 no.llt49 1 160. (MIRA.13il2) 1. Sverdlovskly gonVy lustitut finent T.T. Takhrushevae (Boring machinery) F I J. J. ka.-d.tc 1-'ir..rauk; 7i starchly V a3aistent; A.I., a3oistent; liullding i;-,akht strol SIMANOV, V. G. Carv~,~ctlon f xtor in detcradnin,-, -h'j j~(~c-d ~f drillirg during tho chan-pe In the c1l,iroter of a boret,ole. T.1-udy Instogor,,ifala UFAN SSSH no.'ItI13-11t) 163. v , Ditrability of borj bits In optimil boreholes. Ibid.: 117-119 (MIRA 17:3) H-WROVf S.A.t doktor takha. nauk; SIMMU, V.G., gorn~7 inzh.; 101MIM, V.A., gurnly POLYAKOV, A.A., gr:.rnyy inzh. Air spuce as a means of controlling the effectE of blasting. Vzryv. delo no.54/11:153-157 164. (MIRA 17:9) 1. Sverdlovskly gornyy institut. G i '4*.h-.--7. ne-,rg. SIM&MV, Yu. P. (Mcusm) of 1962 PHYSICAL CHEMISTRY 1963/2 me 114 SVEC, J.; Technicka $Poluprace: SIMANOVA, J. Methods and results of check-upe on sterility in health institutions. Cask. hY9- 8 no-3:171-174 Ap 163. 1. Kra ska hygionicko-apidemiologicka stanice, Plzen. ~STERILIZATION) (HOSPITAL NUIPMMT AND 3UPPLIES) KUBTGEK, Vladimir; SVEC, Jaroslar. Technicka sFoluprace: SDIMOVA, J, . KOWAROVA, 14, --.aj Clinical experiences with a saponate washing emulsion and hexa- chlorophene in preoperative hand care. Plzen. lek. aborn. 239 91-96 164 1. Chirurgiska klinika lekarske fakulty University Karlovy se sidlem v PlznI (prednostat doe. dr. J. Spinka) Krajska hygIencko- epidemiologicks, stanice (reditelt 14UDIr. P*141ksl). -1 W. W.W;Jwtw M' W -as arl - - - - - - - - - - - - girl is 41 of Is of is IF !Rla SUN At -a is 33 Ad a a 11 a *0 "r At -L--z _I_j -11- a I A - 1 6 a . 4 41" valtil I MAN CIA, ~C -IV I's I '2 - Ogg, -00 002. 001 OOJ see 000 of big* "ii l N V 400 004 samoo ma . Mmnmvu, Zop"okepya 126"(IW).-A blM W18~16; fin tkt)ugh a swes, Soo 00, froomilloarval Wpid in a cyUm&v siod tbr those rrquirrol so Soo rorworlo btattom Im men . Tlar op is coskol. by cumporemoom ly we with a $t e l d t t l d l e 00 004 a os r a o mo v* ow coomm'. . =, i h = sufar n troxiscoonc shrour. a. Z. K. ; go goo alm-14.4 assail 0w69 colleatunt c I &%%VIC &low 44~.% -r. so- 401P.&RIF o v.. dot est. &I am save Ito Is 0 &1 so is rd a a it waste plan a 07W i 0 0 0 0000 0 0 0-f-CO-9 0 0 0 0 0 0 060o (Abrasives--Standards) Odda MIA tionolAs"bet"Myn ncY3&u4lS(ormedbYthG(m.")M- z action and In Irradiation Ylate. Me armlate. a, M=tudied. Thersdio- and AhO. and dhwoln. In 111.0 active As(IIII formed by the Ullard-Chalmers reaction is' mtkilited to Api(V) art standing or by boiflu&in eq. alk. soln. This oxhWlou is prohably owing to the on isingsninUnces liresent in trnces in the soln. In the boilln; coned. IICI milln. a rcvrt.ibk- excIrAnt rtuctinn between AW and AO* - takes pl;wr. IT - FW Lft- . ... ....... -.1 VIERER, A.; SVEC, J.; technicU spolupraces-SIWOVA, Tacnor Considerations on a new culture medi= for gonacocci. Cook. dorm. 36 no.7:475-478 161. 1. Mi - kosni klinika v Plzni , prednosta prof. MUDr. VlaBt. Rool Kmjska bygien.-apides. stanice v Plsni, reditel MUDr. V1. Stastny. (N3IMERIA GONORRHM culture) BZRKZOV, Te.L.; SIMANOVICH, A.N. Medical procedure in profuse gastroduodenal hemorrhages. Xhirurgiia, Moskva No.12:18-21 Doe 51. (CIML 21:4) 1. Honored Worker In Science Prof. Beresow; Assistant Simanovich. 2. Gorlkiy. w '.~ C'.'. . Y E . T . ; ' . 1: - -L L~ r.- i . Hemorrhure Medical procedure In profuse gastroduodenal hemorrhages. Khirurgiia, No. 12, 1951. 9. Monthl List of 14-issian Accessions, Library of Congress, I'larch 1952. MCLASSIFIED. SOV/ 124-58-5-5020 Translation from- Fieff-rativnyy zhurnal, 111.1ekbawka, 1958, ";r 5, p 11 -USSR) AUTHOR 'r vr t-. i., On Some Problems of a Flexible Coupling in the Case of Spin- ning-machine SpindIvs JO lwkotor~kh voprosakh gibko~ Svyazi k veretenam pryadil'i-tykh niashin) PERIODICAL Nauch.-issled. tr. Kostrornsk. tvkFt. in-ta, 1955, Nr 9, pp 140-145 ABSTRAC,r Ali effort is madc to rutine the c al( kilation oi it flexible coupling t ransini S Slott. A.S. Pet rov Card 1/1 KUBILYUS, Yu.Yu., IKubillus, J.] starshiy nauchnyy sotrudnik; �TMANOV1CH,_Q._4. Discussing the problems of the application of ultrasa~c waves, Tekst.prom. 22 no.6s69-74 Je 162. (MIRA 160) 1. Litovskiy nauchno-issledovatellskiy institut tek tilloy, promyshlennosti (LitNIITP) (for Kubilyus). 2. Star:hiy insh. tekhnologichaskogo otdela Grodnenskogo tonkosukonnogo, (for Simanovich). (Dyes and dyeing) (Ultrasonic waves--Industrial applications) SIMAINOVICH, I. [Symonovycix. I.], inzh. The SKK-l camera. Znan. ta pratsia no.3;21-22 Mr 160. (MIRA 13:10) (Motion-picture cameras) sli-iAli(. `111GH )I . P ! . Two stages in the metamorphism. of krehean crys~-alline rocks on Olik-hon Island. Trudy VSGI Ser.geol. no.,"::129-136 162. (IMIRA 1-5:9) 1. Guologicheskiy institut A14 SSSR, '.Ioskva. (011khon Island-Rocks, Crystalline and metammorphic) KOPF, 11,10'i ICH 1, A,V:~ Im Struct,ire of differential sliding in quartzite 5and!jtones of Jbtner strata in the LAke Onega region. DokI. AN SSSR 151 no.3%675..673 JI 163. D-M 16:9) 1. Predstavleno akademikom N.M.Strakhovym. (Onega Lake region-Sandstone) ~ I I ~ L . 1. .., 1. .. I I , 1 , . ..'t 1,~ '' -; -'r: 3f labo , cri,c),)vs fi, )r . .y [I., r )U4 -,I ),,,'y:,. V )1. 21, pp I'lt,, 1)52. SALIKHODZHAYEV, S.S.; SDWOVICH, T.D.; ARUTTUNINA, N.V. Hygienic characteristics of sulfur and osocerite production. Gig. i san. 28 no.7:97 Jl 163. (MIRA 17:1) 1. 1z Uzbekskogo nauchno-issiodovatellskogo instituta eani- tarii, gigiyeny I professionalInykh zabolevaniy. S [IMLANOV I* CHUS, L.E. (SirrAnov! dus, I..; A.M. ( Ipvins I I ene, A. 1; KAPPAVTrTILIS, A.P. [Karpavicius, A.) Electrodeponition of aluminLm from formam-ide solutions. Elektro- 2 no.1:87-88 Ja 166. (MIRA 19:1) 1. Vlllnyu5Dkiy gomudarstvennyy universitet Imeni. V. Yapqukasa, Litovskoy SSR. Submitted November 5, 1964. ACC NRI Al'7005.".6 I SOURCE CODE: uA/0371/661000/006/0084/0090 AUTHOR: Nayur, V. it.-Naers, V.; Riman, M. L.-Ramans, M.; Simanovskaya, A. Ye.- Sinuinovska, A.; Stafetskiy, L. P.-Stafeckis, L.; Shalenyy, E. G. -Salonijo, E. ORG: Institute of Physics and Power Engineering of the Academy of Sciences ILatvian SSR (Fiziko-energeticheskly institut AN Lat TITLE: Investigation of semiconductor thermopiles for cooling and heating of air SOURCE: AN LatSSR. Izvestiya. Seriya fizicheskikh i tekhnicheskikh nauk, no. 6, 1966, 84-90 TOPIC TAGS: semiconductor device, refrigeration equipment. thermoelectric cooling, thermoelectric equipment IV I Aln V AJ 7- 7 /9 ABSTRACT: The design and development of a semiconductor thermopile which is the basis of a prospective all-year-round air conditioner for passenAer railroad cars is described. The thermopile is made f rom materials whose z is in the range of (2--2.2).10-3 11K. The basic materials for its positive side are Sb Te and B12Te3; for the negative side they are B'2Te3 and Bi Se It 2 2 3' is zlJe from 96 thermocouple elements (20 x 20 x 3.8 mm each) connected in a series circuit with copper commutational plates which are finned on the cold and hot sides. The fins are 40 and 60 mm high on the cold and hot sides, respectively, and their thickness and the spacing between them are 0.5 mm, -UDC-L-noa '4CC N'~- Ai'760526_1 i~ and I twa. The hot junction is cooled by forced air circulation. The thermpile was bench-tested under simulated enviroumntal conditions to deternine its cooling and heating capacities. The maximum obtained cooling capacity was 425 w at a cooling factor of 0.57 for an airflow rate of 150 kg/hr. The heating capacity ranged fron. 170 to 600 w at a heating factor from 3.2 to 1.5 for an airflow rate of 222 kg/hr and an operating current range from 50 to 150 amps. A disadvantage of the thermopile is its low cooling factor in comparison to that of compression-type coolers. The thermpile heater is more efficient than electrical heaters, however. Since air conditioners on railroad cars operate as heaters for prolonged periods of time, It is economically advantageous to use semiconductor heat sources rather than conventional electric heaters. OrJLg. art. has: 4 figures. and 19 formulas. SUB CODE: 09, 13/ SUBM DATE: l4May65/ SOV REF: 003/ ATD PRESS: 5115 L Card 2/2 ACC NR: SOURCE CODE: UR/0371/66/000/006/0084/0090 AUTHOR: Nayer, V. i%.-Naers, V.; Raman, M. L.-Ramans, M.; Simanovskaya, A. Yes- 41" Simanovska, A.; Stafetskiy, L. P.-Stafeckis, L.; Shalenyy, E. G.-Salonije, E. ORG: Institute of Physics and Power Engineering of the Academy of Sciences Latvian SSR (Fiziko-energeticheakiy institut AN Lat TITLE: Investigation of semiconductor the. piles for cooling and heating of air SOURCE: AN LatSSR. Izvestiya. Seriya fizicheskikh i tekhnicheskikh nauk, no. 6, 1966, 84-90 TOPIC TAGS: semiconductor device, refrigeration equipment, thermoelectric cooling, thermoelectric equipment A11Z qv j Arn V A~ 7- /9 1 R AfC,9 rgc'e ABSTRACT; The design and development of a semiconductor thermopile which is the basis of a prospective all-year-round air conditioner for passenAcr railroad cars is described. The thermopile is made from materials whose z is in the range of (2-2.2)-10 -3 I/K. The basic materials for its positive side are Sb2Te and B12Te3; for the negative side they are B'2Te3 and Bi,3e36 It is maie from 96 thermocouple elements (20 x 20 x 3.8 mm each) connected in a series circuit with copper commutational plates which are finned on the cold and hot sides. The fins are 40 and 60 mm high on the cold and hot sides, respectively, and their thickness and the spacing between them are 0.5 mm C Ord UDG! none L ACC NR' AP7005267 ij and I mm. The hot junction is cooled by forced air circulation. The thermopile was bench-tested under simulated environmental conditions to determine its cooling and heating capacities. The maximum obtained cooling capacity was 425 w at a cooling factor of 0.57 for an airflow rate of 150 kg/hr. The heating capacity ranged from 170 to 600 w at a heating factor from 3.2 to 1.5 for an airflow rate of 222 kg/hr and an operating cxirrent range from 50 to 150 amps. A disadvantage of the thermopile is its ,low cooling factor in comparison to that of compression-type coolers. The thermopile heater is more efficient than electrical heaters, however. Since air conditioners on railroad cars operate as heaters for prolonged periods of time, it is economically advantageous to use semiconductor heat sources rather tham conventional electric heaters. Orig. art. has: 4 figures and 19 formulas. [IV] SUB CODE: 09, 13/ SUBM DATE: 14may65/ SOV REF: 003/ ATD PMS; 5115 DOBRYKIN, I.; SIANOVSKAYA, B. Strengthening steel trusses. Prom. stro i inzh. score 4 nool:27-28 ja,-F 163. 1- . (MIRA 16s3) (Trusses) . (Steel,, Structural) Is I 'W 0.1., kand. tokhn. nauk; S114MOVSKAYA, B.N., inzh.,* B-LOVA, Z.S., HT YNOVA P aasistent Remove- of soluble products of ion-exchanger materials from do- salted water, Trudy MEI no-0201-210 163. (MIRA 17:6) 0 _W-e AV " -W~~ ~W, a 0 40 is V 1 K f), 00 ~ 11, 1 , A C&I' % l d ,q t viiii-mA - VireFellk NA#tfi Mile Ift-)P : . Khl- K '11,: #0 /4.P. $W. Sr. 4. - Its isedi-1 I., 1,1.fv Ifte j.t1sIl,I-V - 616 C 10fisift-flWIN ell s,4AVIIMIYF#dJWtfIfW" IIW -11:~ I I.millerl.. Wel"Ityl., .%III. 1.11,ti . 09 FIW `sYR11WW% Ittil kAlIl- _ ermil Ity Ultnaltswuld JLIk)1 &lilt 110CHIC118 itfixogt, 11.1,0 04 imikorw v4stert hy ttw temeal irk it".1% (Ifir thC ACfkMl 14 alkill l h h i 4 d -00 i-st . t r A. I ca lw 'ir "I"" its l1w 1.1 eitow An ItI141114fir ChItirikherjIt" .141 11W NA ' lee l. tis I hs. Jnd It a4v I. At% 4 .11 w it Is jr,0 A.11 I , I I X age INY-f"'ILY Ile IM .9111 .114S 111"L ellse 1.1 wh# rid L(h str:4 11,0 with few hermilpiet 'A 1!,. Ismt,"1141. The yiekta .4 the go verse, &I Ulir.. I.MitivI.. And 1. ene't a 14ra"'If eaw[ .4,1 1. "-.1 1.-$ 00 N."y Intelems-. biwrl a ... I lee air 11'.0 4-111W.1 It, dw It . S A...1 seso* go 4 halm-Irrus, therill try thergi L. , A.%J is J- Ameol ail W I., "t&A is I ft~ 111, 1 A M Ifirr. R 44 Itirri. fire thr Imsti.- .4 Ill- isle; Ile* is Ifift, ".4. %1$ 0,11. lost. 0 Ill, x Jet, I 1 4 1 It it * er Ill 1-1, Is, I - 41 4 Il I, I bill -1$o Ikell 14 few I I trial k". -4 411,11 NIIII.4- I-W" isle" rVA.-IWISITIksmir it, it, t 1. 1 0.&1 00 6 .4 Ilse alkVI elf-41 r! .- -Ikvl liko 0-1 '4 di thdir I.... elf A f 4%. 1s# .".nesti.- l.kt1l6k44 1111441k trim, Is I I. lives e U It tv NJ Il ~ It It IF 4 0 to III 0 0 a 0 0 0 0 901 a a a a a a 0 0 0 0 0 0 0 0 0 0 di 0 0 IV 4111111111111 a asses 0 a G-9 0 000000000 0 00 r 0 Determination of the composit .ion-(aromadc- c- Wi content of perfumes and eAu do Colt9ves. L. N. etwn, It. N. Novikt;va. P. A. Sisnanovskiya, and A. P. Lkvdi- knvi- Maylabolno-Zhiroraya Prom. 16. No. 7. 26-7 (19---ul).-Twn methods are dc-vnl)ed. One is based an the -r%in. of thearomatic principle with CIICI: and the removal! of the solvent aS An azeotrapic mixt. with MeOll. This mpthod can be tjqed for the analysis of all perfume