SCIENTIFIC ABSTRACT FR:OGANESYAN, S.S. TO:OGANESYAN, B.A.
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Document Number (FOIA) /ESDN (CREST):
CIA-RDP86-00513R001237800023-6
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RIF
Original Classification:
U
Document Page Count:
Document Creation Date:
November 2, 2016
Sequence Number:
23
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Publication Date:
December 31, 1967
Content Type:
SCIENTIFIC ABSTR
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Q~I1M'~1~FAb1, Z.S. ; a8I4UTiY.A~, (i. Ye. ; OG~A;~SYI'~' S, S.
Some dat$ on +~oPtical evitoB~i�g in man. isrr.,i~f I~.S'~,.81,~1. i
~e1'khosi.nauki $ no.2:77-8b F '55. {~LC~- 9s$)
1. In~tltut o~taped!! f vo~staaan;ttel'~~ay khlrwr,~!! M!bl~teraty~
s.d>~~vcakbrsne~S ,A~. .
(G0~DITIQ~iD P'iJp,&~)
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{~..
Category : UgSR ~ Plant Diseases. Diseases of Cultivated Plants N-?,
Abe Jour Rif Zhur -Biol., Igo 6, A4arch 1957, Ito 2294i}
Author a~~l.ka~tyan, V.G. , pgane s:~~~ $. (~. , Ogane syaa, A. A.
Title E:~fect oi' Nutrientg~ o~`yl+'anga~ ~~eases Affect~.ng Whea.~k.
Orig Pub Irv. AN Arm55R, biol. i s.-kh. n., 1956; 9, No 6, 59-76
Abstract I.~? studying the ei'~'QCta oi' nutxi pion by NPK, N~ � ~a~caux~e one
diseases caused by forms of Lust, firebrand and part~sitic
fungi on wheat varieties Artashati 42, Grekum 21+, ~'~~itroleukon
1, Yevgardi ~, Eritrospermutn ~ and Eritroleukon 2; i.t was
e ~tabllshed that the index of resistance against ftuigal ''.3.s-
e~~ses is very constant. Independent],y of the time nutrients
were administered, the plant vigor was increased, t,~ze vege-
t;~tive period lengthened and the diseases of the van�ieties from
r~ist and F.a.rasitic fungi were somewhat increased.
Cara :l,rl
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~'AI~A?~Zl3Yl4A, VwA., prop.; MOV"3~Y~, Z.G., p~~o~'. } _~~~~y-.~ 3.A., dt:ktor
med.nauk; ~i~~N, 9.A.~ r~ladehiy nauolmy9' ~lotrudn~
7Wre~y diagnosis oP m~d~t tumor�a. Vop.rer-t.i anl~. ~ llbt2~
t61.
tt~z~sT~au~-~.n~c~~~ tnz~c~a~~s, x~~nzc~coPxc~
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oG~:t-~, s.a~
~~
Cases of armored h~s+rt. Is~r.LH ~rm.~>.?~$t.t~k! no.l~~Xg3-~i49' '~Y1'.
QxT.B1- g:8~
~,. IastAtut rent~enoiQgi! ! onkol.ogli Miniateret~~a sdrav~~okhra~aeniya
l~o~ran~~ko~ ~.
(g~igT_--DX~II-~5)
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~GA~IE,~YA~1, a, 3 kand..~konom, r>~.uk
Indl.~e~ c~~ ~i~o praf`~~~~~ af* ~c~~~a:l.i~at.~ari ci:t~y~r~~.t;~ r~!' ~::c,r~cmi.e
leveled Pr~am.Arm, 6 no.14s13-1~ 0 '630 (~~SRA 17s1)
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�~,
ACCBS5IOl~ Nlts AP34t1~3;~2 ~;~Op93~~3/`04iy/00~4/t?7`~~1/~y53
AtJTliOR: Vardaayan, V. A. ~ tlganaayan, A., S.
&Mx~'ntiFip'Kpq.~ .
11M
TITLE! Tha theory of twagn~acogravitetionitl instabil:Lty of~'~,a sphere w~~th
variable det-sity
SOURCE: ~st:ronomicheslciy zhurnal, v, k0, no. 4, 19163, 151-'~53
TOPIC TAGS : �agnetogr~gvitat~ional instability, sphere of va,riax-le
density, variable density, magnetic field, nancomprlessible 'tigti~id
sphere, gravitating nonco.mpressible liquid spheres
ABSTRACT: Ths iastabilit.y of a gravitating noncompressible lictuid
where with exponentially d~acreasinR density in the presenGl~ of~ a
magnetic fi~!Id is conaid�,red. It is found that sucih a configut-ation is
uastable u~eaative to d~afalrmatians of the form Y~ { g ,~) and sttould,
as a rule, break up in~ta equal parts, if the magnetic fi+~ld euceedF~ same
critical ti~a:lue! which deF-ends on .~. Orig� art. has: 1 figure, and ii
formulas.
Y'~tEYAi3 STA`.~F U~IY.~3SITY
Card l J 2
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3295
On the theory of st.abzl:.t S/040/62/02g/t)O1/Ol2/C-2~
y ��� D23?/D30~t
and U ~witJiout) Lhe system are solved by means of ~'our~.er and LApla~~e
a.ntegral;~s the solutions be in
g~.v:ixag file total enemy ~:hange psrot~tainedotyTt�~.i~~ihun 'the~e~ th� e~~uatxo~.
brium of the system can be stable or unstable9 hair thedprel+~enc:el~ofgthe~~
rnagns~ric field has a stakgilizing influence and thta intens:it;Y clf a magnetic
field wha.ch completely ca.ncela the unstmble harmonics is
maxx.mum i.lneitable harmonic is found by u~a,ng the L~cigrange funct�ie-neidr, the1e
equation o,f' motion� The authors thank Ao fJlasov 1'or dscus~~.ion. of the
results obtained. There are 3 figures and 4 Soviet:-~blloe ~re:feren~cecp
ASSOCIATIONS Yere~vAnskiy gosudarsty enn
University} y YY univex~.if,et (YerE~vun SxA~e
SUDMIT~1't~:!)� October 24 ,, 196I!
~~ i,1 r f~ r
4/ ~.~.
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~2~95
ll~~~/~~~c~a
~ ~. i ~~ ~ Q
' Oit`i ` Varlianyan a V 4 ~l o andM1,d~et~~esyati g 1t~S~{ ,~revan)
AUiH
mane Layer of ~-c,avy fluid
I':l1`L~E,~ Cis the tf~crory u~ F3tabil.ity of a ~
in its t~wr- gt~�-vi.t;y f:iel.d with ex~>oti.c.ti'iel,d dxm~-~ish-nEa
density i-~ th-- pree-e-lce of a magr-e
(, ,: Aka.demiya --aulc SSS~t~ Otdeleniye tekhr-i4�he.~ki~ nauk' P:r~i~
pLitIOllICA ~ v, ;;G nuo 1 r 19629 104109
I~laldnaya ;u~-tematikn i r,~e,khanrka 9
r~s consider F- layer of fluid of th:ie.kn~`cal~;ln ~ap~ane9ty
'f~JCf o Tk~e autho { (~ ~, p) synu,7-etr t,~
Eq o (1 ~ exp � ~y~ ~" ~(
f' ~ ~0 ~~ in tla~e presence of an inner
Equaiion of tlbe disturbeo~~
An equi Ix brium ir- its own gravity f ie1d,
homogeneous magnE~tic ~~ieldei~)th~ x-hi}~~ ~onah + ~- coe kx end they p
surface c-f the 1g-yer i~~ Eq {
billit of they system with regard tO peBoundaryCC~ondit~ons
lem of t~-e sta y considerat~~.ons.
type (2) is inve.~tiga~~lans~rrepresenting the change of F-otenti~3~1 V {within.)
are give~i and the aqua
Card 1/~
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{~
m~~.riEfi,o-c~~~i1.7.w~x~u~ 4. a
3t~39~-
~~/o~ ~~/~ 1 /~~ ~ 4/oo,a/ooa,~o 10
~~~~~~~ ~~o~
:iii ~;t~x1_rnal fo~~ ~j. r~c;:ri;~.~,ira ve.lue ym. ~.ihe ~aas~.t.~.an of t'ne rnaxi-
Wum deepen+is an t:he f:LE.ld strength. The wav~elezYgth of the maxi�um
unstable .~armonic ~m = 217~,/ym h.as dxop dimension. T:he order of mag-
nitude of volume and mass of the drops can be esti:paated by means of
the fo:rmu;las
V ' ~'~2~m' 'M ~ ~2~m~
It is noted that the drops are elongated i.n t11e directlo~l of the
magnetic .fields though the elongation is observed even ia1 the ab-
sence of the magnetic field, yet it greatly increaacs as a result
of the magnetic :ei eld� The change in magnetic energy is i~:lways po~
sitive, hence the decczmpos:Ltion of the stY~eam is due to 'the pecu-
liaritie9 of capillary forces. The above resu:tts are ill~~strated by
the ex,~mp l e of a mercury column (1 cm in d.iametsr) ; t'rom the f or-
mulas thus obt~~i�ed i�t follows that, in tree abeenc~e of surface ten-
sion, anl;y A~.fven waves propagate in the n~edi~~. There are 3 fi~re~s ~
Card S/ 1~ ~ ~'\
f
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On the ma ~neto-cF~.pill~zry .. ,
3ta39~s
S,/p?.2/61/ 14/~i0tt/d08/'01 p
D.?99/D~42
drops. In the regian of i.nstabi].ity (y~ya, H~H~,/~~ a harmonic ex-
fists, far which the inst~~bi].ity fie maximal. In ordez~ to .find the
u~r~velengtb~ of this harmonic, the equation of mation i~, derivE-d by
means of Lagrange's function, assuming ti~~e-dependence) a.f amplitude-
The equation of ;motion iii
d2a d' YIi~y)
dt2 + ~~~ ~Io ~ ~~y):~ = f~
~~
whenc e
a ~ co~net~+ ma(y) t~
where
pR
Gard 7/ 1~ !/
YTS ~Y) F ~~ )
(gig)
(a9)
(40)
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On the magna tc--capillary .. .
H� ~ D (Y)
~T ~�
or H2~ H2a.D~(y )
(whexe :D is gi~ren by an expreeaion). for
Ho ~x~~(y)
3~y39~
s/p22 61 /01 i~/~~p4/da8/�14
D29q D~Ci2
(30)
( 32~~
instability occurs. The following particular oases are con+~idered:
a) A longitudinal magnetic f:~eld (~, : 0) is e~pplied. Ire; this case,
instability occurs w~.th small y, i. e. in the long wave range ro~-
vided condition Ho~Ho,/~2' holds. With Ho H~~/'~; no unstable harmo+
nits can. appear, b) Transverse magnetic field ~t)t`.- ~p� In this
case, stability can be ensured in the 1�ng-wave range {)in contra-
distinctivn tv eases) with relatively small Field strengths. If
conditi~~n (32) is satisfied, the stream dee�mposse rota separate
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m ,
On the ~;nagneto~capillary ..,
F~,~~Y)
Ylo{~~) ~
1
{29}.
where Bc and B2 axe constants which have already been determined.
Asszgnir~g actual. values to OL and ~ , a family of curvets
tained k~hich represents bE ss a f~netion Qf y in the iri~(y) ie o~t-
In the case of stabilitY- F~O,and with inetabilit~r ~"~0. sThe~im(0 e~}
tic field stre:r~gth Ho whicsh ensures, stabilit,~ f d~pend,e on l~A; anad
being determined by the condition ~"~
Card 5/~~ t%
3e394
D2992D342~"~~~~ooe/0~0
.~2+ Ylo{Y) Y~o{Y) co 2 yRo(Y)1~2(y}
,'
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Cn the ~agneta-c~ap111.~~rY . � �
~~394
s/c~~ ~ ~ ~ /o ~ ~/ooa/~-C8/~ z a
surface Energy of the cap~.llary farces, due to the diatu,rbancs ie~
exprsssed. by Rayleigh' a formula: '
bEn = 2 acs' (k2R~ _ ~) aR
(4)
0
w ere ~ i.s the capillary constant. t~lith ~,> ~~, ~ instability occurs
( En~O), and the stream decomposes into d.rop~~. The magnetostatia
potential ~ is found to be
Io(kr)
~'(r,z) - - a kI R coskz
1
k
(8)
After cor~iputations, one obtains formulas for the t-v�ra11 ehan,ge 1n
capillary and magnetic energy, viz.
2
c~E = ~~o'R F~{Y) X25}
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On the magneto--capillary . , .
~39'!~
w/x22/6 ~/a~~ ~/o~a~/oo8/c~~ o
7~~~9 Ja~42
i$ repret,,ented by an infinite cy~.indsr of radius Fto ~ ~~ee Fig. 1 } ,
In cylinc,.rical coordinates, the compon~ent~s of the homogeneoua~ mAg_
netic fiE:~ld are
Haz = HQ cosc~,
Har ~ HO s inoC c o s
HO~ = -- HO sinoLeincp (~)
The free surface of the fluid is subj ec~ted. to the symmetr:~c;al dis_
turbance
r = R + acoskz
where a i,~ the amplitude (considered a:~ small.},
wave number, R - a mean radius of the halinde~~.
Card 2/
(3)
k ~= 2~'/~ -the
The cr~ange in
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i/ ' y~ ~
AUTHOR; Ogane9yan, R. S.
�S/022~ ~~i '014 j004 f pOB/010
:D299 Da~02
_~ _~..~.. --_ _-~-------~...._.~..b
TTTZE; On the magr~.eto-capillary :instability of a st:rea~t of
c oncluc t ing fluid
PERIODIC~I,: Akademiya ~~auk Armyansko~t SSIt. Izveetiya. Se.riys, fizi.~
ko-n-atematicheskikh nauk, v. 14,no. 4, 1161, 131-i41
TEXT: The instability with respect to synametrl.cal disturlbancee is
considered of a stream of an ideal eonciuel;ing fluid, unde;c the ac-
tion of capillary forces and in the preF~enc;e o:f a magnrtic field.
The investigation. procelsde from the enE3rgy principle, wit~~in 'the
framework of linear theory. Tt is establi~~hed that the stream dose
not decompo$e into drop:s If the strength clf tl:~e magnetic field ex-
ceeds a certain critica~ value. Otherwise, the stream decomposes,
for a certain range of j'rec~uencies of the disturbance, Wii;hin the
region of instability, i;he rels,xation time rer~uired fog the decom- .
position Oaf the stream, and the size of the damps, are largely de-
pendent o3~ the strength of the magnetic field. The stream element
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s/�~3/~ta/o:3 `7~4C-~/�o ~~/0,1.2
Eo3 ~/~:3.:~ ~
On the F~:rsdami.narit Orie:ntati,on of 'rat;nneni~s I+'ormec3 as a
Resu~,t o.t` the :~tratifio,~t.~.oan, of a Tiamc~~~en~aesu~l G.ra\r:i,~a�'1,ng
A�iedium i~1 the Fx'asenaa ~~f' .a Magnet:,~.er 1''~�e,1e!
Linear d~~monsalans are 1a1 the d~.r~eo~~:~.ort of they rnagr~e~:~,. f~.t-l.d~
~`ha~~e r~ee-u:lts may be oaf i,n�t.eros~: i.n astrophy~s~�c,eo For.�
exaffip.1.e~ ~.t has rECent.l.ryr been es~t,ati,~.:~.~;b.ed {RE~��~, ~1, 10~ ti~a;at ~,,/
tht~x�e ex~ st a number oaf nelaulae consist~,nu; a.f, o.r~~~nt;ed
....
filament, or. f`xagmentr~ i`orcping Long chains u These. ars aari ..
~.iclered ~n an apprax~,.rnat.e aaumer�,ica1 e~s.t~mp~ea A~kn.a~+r.~edga~en~;
is made fry Professor 11b~~~ Vlasov for ~raluab.l_H~ suggestxax~sv
There are L figure ~ 1~ t a,b,l,ex na d 1.0 Sdv:i.e�t~: x�lef'ex~enc es :;
A~SSOG:I1#TION;. Yere~rar~skiy gos a univers i,t. et� Fi ~icheska~.Y
~'aku:l 3 t. e~ { Phys,i.eas Depe,:~~ment of Ye.r~cu&n
SUBMITTED o Sept ember 30: 19.5"
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Gr~avi t a t i.ona.l. $/d33/6p/d
'~~~'ansuor~se ~ Instaba.l.:~.t / ~~'/d.~/(}46
Y o f a .baye.$d~~t~~~.~`~
~~spect to Twr~~�.di.m~~~r~Y:~~f.anE~~.1.
:~~, l~rt,a arr5
Y E~,~ { ~3) arrd
carnbinatiens~~~n b
~~~+~ arnplil.ucl~~~o~` ~h~ haz~manal~s ttrelr~~ ~ For stable
with t~-r-e e ~s a 1~exodi~;,
amp.lx.tude inc:reasE~s 9 while fQx. Gh~~ngc in
exponerlt.iall ~nstab.le harm-~nic;>
~~ the di.sint:e~ratxan ~' '~~:t7z ti-i~e, the
-omb~21a~;ions wh.:i~;h 14;~
of the ~.aYe.r. Arrr~a.r~,
,~ ~ �f the hartn4na,c,~ ads
.d 2 ~~ tlic~ u~~stable
~l ~" ~~ fib. 0, 6~t
these i~~ ~:, eombi;r~atx.oxr, for w
the instabi.li.t~1 a.s hseh
by nraximisin a maximum
~ t.~e ~:unat � ~ This Gomb.%nat~
laeln~ .liven b r ion given b.Y ~ ~ 1On i~a obtained
of the .IaYer~ } Thy 1en~ and (26) ~ 'w'here (~~ ~' the x�esu~l.t
s~~t;isfY E gths ~`1m an~i ~ ~s tlx~l th~..clcr~es~:~
wl-i.ch th.e~ (~6) rE'~resent 2m wl~:z.ch surt~u.ltaneaus.l-Y
1a Qr the s3a.rne~~sxons of the a
Tl:se~re are $ Y divides xn view
ASSOCZATI S��v'~. et ~'ef erenc es ,
dN~ Fizic
~ard5/5 (Ph s . he=rlci~y faku.t � tst Y
'~uBMII"1'ED, _ Y ics Departure e
c ruary nt of Yer~~'sn
?7,x,3"------__~
0l~~~
' of zts ~ rt,~ int�
-na~t:.imum in;stabilitY.
~'evansk:;,~a
$tat go:s p Un.1vE;~rs;~ ii eta
r._._
V
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s/a ~ 3/~>al o37/a~,l ~o~/~~=~
�~ A~:~vitatior~al Instability of a Layer ~3~~I~J~~~spect ~to Two�~d.aJi3e3isiana2
t z~ ~ras've~'se Perturb~tion~
Eqs (5}, (6) and (~3} inta Eq (lay} and neglecting terms
of seGe-nd-~ox`cia~~ in the am~~,:i.tixd~~, ~.t is fc~uncl .hat the
c:~~~~r~g~ iii Ci~~~ ~~at~~~~~~.t.~:l ~~~~~~~�~;~` bW :~~ ~;i~~n ~~y ~:r~ 41::}
and (lo)o It is sliow`t~ t,1~at if :i.iz t:he ~'e~urier e,~pan,sio3~
for f(x4 y} thexe exists at 1.ea~st one ~~omponE:nt a~ tl~e
~ortn given by Eq (2) , in wh:i.ch Ai and A~ .sin~ul~;aneau:~1}~
~+atisfy the condit~.on given by ~cl (17) , then the layer
becomes an, unstable conf~.guratt.~anG Tn t:2ae op~~osite: ~�ase.,
the Layer is stable. Eq (16) c~xu lt~e used as tiie sf�abilil.}~
cri.tert.on. `tie kinet~.c energy :i.s given by Eq (18} ~ where
W is the va.l.ocity ~otentia~. wh:Ech sati.~fies t:he La.Ia~a4e
equat:~on s~,nce it ~.s asqumeri thi~t the ~ubstan~:e is
.~ncorrupressiU_le and nQn~~�v~src~us. Thc~ sc,7:ut~.ot1 ;Car ~}
wlri.ch. descr'i'bes the absence of ~u~ert.ical part c:le ve~loc.it:i-es
at y' =: ~yh is sought in the form at' Eq (l�~) ~ where the
constant B ~.~ given by Eq (24,1. Using; Ec,s (, ~.~3) ~� (2t3 } tine
r:.t~ange in tl~e ~~.netic energy is sh~,w~x~ tc- be ~slx~~rax,~.tna.~ka.I,~~
by Eq (21) . The Y.agrange funct:~on is tften o~ the .f'c~riu
gt.ven by Eq (~~) and the equatit~n. cif motion has the
Gard~~~ '/~
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..
Gravitational Instability of a LayerE~~L~~~'~espect i:o Two~�~dimer~siana:l.
Trans~�ers-: Perturbations
where Vo rand Uo are the equ:ilibriun~ salut.ions and.
are g.zven by Eq (5) 6 The quantities b~~ anci bU are
then found to be a method put f~~rward bar Vla*~av (R~;f ~)
These additional potentials are ascribed to f:he ap~-earanc:e
of th.e so-�ca.iled. "perturbed mas,~" lacatf,d on the sU.rface
of th.e defartned lwyer and havin;~ a surf~ice dc;nsity o�
given; by Eq (6) 1 where cr ~ 0 ;i.n the ak-s~anc e: of
perturbation (a = 0) Tn this far.mulat:ion, bV a.nd btu
must satisfy the Laplar.e equation and tY:-e boundary
cond~.tions given by Eq (?) , Th~~ soYutic~ns fc-r bV
and bU are sought in the .farm given by Eqs (8) anal (9)~
'rhe constants can be determined witl;a they aid of the
baund.ary candita.on given by Eq I;?) ~~nd can bcr shown to
be given by Eq (10) ~ The change in the pot~,~rtial energy
of a prism lYraving a height h ~~nd ~~ bas of unit area
can l:~e ca~.eulated from Eq (11) , wherre ~V~~(X ) is the
9Y
gravitational pQtentia~. on the i:raa sux~�ace a.nd ~ is tl~,e
Card3/~ surface r,>~nsa.ty of t~ac Perturbed mas~!~ G Sub$titutin;; ~.
~~
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~/Q~;~/6aic~3 7~'a~/0~)~/4~ ~
~~ra~i.t~x~Yional Instability of a Layer W~$~ ', s pe:ct i.o Two-dime}~s.iona:~
'i s:~ansvers~~ Ferturbations
frequencies pf th.e oscillatory s;yste-t- w~.i.h spacial
rei'c~rence tv pert.urbations which may ].Qati to e~ reduc,tian
in the poten,t.ia1,. energy as mea;~u,~ed from the ~~quilik-rium
.level.o Next ~ usa.ng tl~e La~;r.~n~e functx.oix the equat:i.on of
motion is set. up and a seaxr.'n is macl~~ foss the pertux�bat i.G~~a
corresponding to maximum ins~tabilitvA Since i.lie grc~biem
is co~as~.der. ed in the linear apprl~xima.t.:ioii the discu~~sic~n
~i.s co-ifined to they staba.l.~,ty of ~rl~e 1,ayes� :sub4j~:cted ~:.o
gertu~wbatxor-.:~ of type
2 - a cos lclx cos key (~)
:in wl~zieh a .s the amp_ltudr~ an~:i ~~~ sn.d 1c~3 are t.hi~
wawa numb cr.:~ cvhi,ch can atr~sume a.si;y uo.l,ues betw--,r~ ~,-~:rc~
and inft.nity~ ~`he internal and exterrsal gx�au1L~~atior~al
potentials V and U are g.i~ren by E;a (i) avhf;re ~ ~~ V.Y~
tiTe ma+::rosccp~.c density an,1 i_s assv~rr-ed to bE? const,~n.t o
SoTtxii.,7ns of ~q (3) are 1;.tien sou;~h+ :i..tx tY>,e f~orr~ of E~q (~f)
Card2/5
. V ~.
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S/�~~.~/~ca/~a~?/~3/oc~~~'o~~
AUTHOR;; Q~anesyan, R.S. E432,/E3~.~t
TITLEo ~ Gravita'tiana]. Instability of a L,~yex� r~litt~ Resi~e~.t 4c�
Two-~dimansicsna~. Transverse Pertu:rbat.~,~ans
k'ERlOI~~[CA~~~ ~'VAstrano~n:icir'n. of i:he
perturk-ed surface is written in rthe forrnA
where f {x,y~) ~.s a small. bY.~t a~~bi'~raary pert:uy,~bation,
The str~tdy cif the ~xa'v.lt~xtional s~:abi.lit;y of ti~-e layer
with respect to two-dimensional i,ransverw�e pe~r~turbatians
of the type described in Ref l i;3 carried; out in acco~ dance
Cardl/'~ with the ener~~y principle, A caa!cu].atiar,~ is rr~ade o~ the
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~o(Z~,~o(~) ,
/~U~i`~OR,: Ogane~~~aa~.~.~~.~ SOYf Z;?.W 12~3~-,~/9
~ti
TITLES On the Gra~~it,atiana,,l Stability of a i~aye~~ With an Inne-r ~'agrietic
Field. Di~~ectE+d Along th~a Layer
PrRIOD'J:CAL~ IzvestiyFC Aka:demii nauk Armyanekoy SSFia S~eriya fi~aiko
matematicheskikh nauk, 1959, Vo]. 12, ATr ~~, pp l~1~~~.8 (t~SSR~
ABSTRACT: The author conside~;s a plane la3rer of a conduci;in,~ incompressible
fluid ex~>osed. �tc the own graaitEttional. i'ield and an inner ma.gnetie
field parallel to the bounding planesa The soluti+~n ifs given. in
a linear appro:~iraati.on (small di.sturt.anoes of i;he freE. Surface).
The instability is ~ogsible for every finite H.. With ar_ incr~asj:ng
H~Hs, vrhere A$R~hIrG (G - gravi.tat3.on constant, 2h -~ thickness
of the layer, ~ ~- density, the r-e~v's lengths o1' the mf~ximall,y
inste,ble harmonic of the appearing disturbance l,ecoma greatero
The author thanks Pxofe$aor AoAaVlac3ov fo;.^ valuable hj.ntsv
There are 2, tablas, and 5 r~efere~nces3, ~. of ~vhic;h are ~yoviet,
and 1 English.
ASSOCI.ATIOIVs Yerevanski;~� gassudarrtvennyy univerq~.tet (Yerevan ,State) Unive3�sitY~
SUBMITTED � September 22, "J 95S
Card; 1 f 1
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' A~THGR; Oganesyan, R."~. SOV~22-11-��-6~1~
TITI,~s ~ On the Gr ~'taxa Inst~,h~.~.ify ~f a ~':B.an,~ Paralle; ~,a;~er of a
~ondu sting L:~qua.a in a ~diag~net ~.;~ FieZ~: (0 gra�~ritatei.on:nay
neustoyo:h~.:1rc~F;t~, pl.caskcparal.lea.~7~ogo s~loy~~ prov~adyashc;hey zh:i.d-
kos*~ pr:~. r~s�:lich:La, rnr~gnitnc~ga pi~lya)
F ~,~7IODI"~.5,~ T~vo:~T:y~~ A~kri~.em~~, nauLc A~~~~yu.izslcc~y ~Sf~, :,a_';ri.y~a fizlkc~~~tatew
metichPelc~.k:h n'~=`:~P 1~~
yob �!'~ n tdr ~p l~P '~~ ~j~2 (ITi,l:i~.~
ABSTRAC Ps The auth~~r Gt-nsi~~er-e tha gxavi.t~~tiona]. instab2:L:it;y~ of an in-~
finite p~laz~;e p;~rall~al l~.q~.~.d l.a,~ter ~rit~h rRgard to the trans-~
verse os~~:-~lla.ti~~~~�~~. The 1ayGZ� ; w! ~.nf1,,.,ez~f;ad by 4h~~ o~rs~ gra...
s~.i;ation~~I. f,e;~.d ~.n~3 oL a z~agn~~,,~,~ f~r~.d �~ertic;al to i;,he lay'~ero
In:fi.nitu Lon~.u~;1~.~r;i4y~ of+hA rr~�cl:t~m i~~ supgo4ecl. the ~>oluta.an
of she p3�c~biem ~.s carr~.ed oat atsoCsrdi~xg {:o the liyzear theor~�
by the sc~mewh.a~; vax.Ied met~a_o~q. c~` Chs,n,;lras~ekhar attl.i Fei:'mI
Ref 1~ It 11~ stateol tha.~=; 3~ 7she tt.!nsxon cif the= ma~hnet~'.
'
fie
Id e:~rlN~eds ~~ t�o~'~;a7:I1 cx'it`i~~.~. '~"a.~.1I~;!~ t~~1e layer fa Eltab~.e
~i~~h regn>:~d t~~ ~~ransve:r~~3e ns~~~ii].at~.ox~r;~ of ar�bitraa�y length.
Otzierwa.se; +=hs :Layer becomes ~ansf~abl~ a7;nd deoompos~!s far
Card 1 f~' s'a.ffic,~en;"Iv 1t,1-~g oe~'.~.1at~.o:n~.
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OG!'I~i~nsXi~I~, i~,. ;~, ~.~ ~~C;n the '~i?~~r~ ~f Gr~v~"t.tr~ti7ru~I :.~~st~il~ty~,~ ~~{,~;n,,,~
a}~.~~ Ti ~.x:~~t?.. ~�i, ~. :.~7,'~.`,s~ZIt7.'�r~V~ .r'~"fs~.CB I'Es,l:s311~,~. i''~,~:e^,-~~, ~7iis
{Dis~~ert~ti~n fn~� the D~~;x~~U '3i Ganci:lt3.at~ : rt PYi~y*s~.carr�~tY:e~zr~tic~al
:~ G ~.~ 21+~ r3 S
S'): hna.zhr{~y~ Z~~,ouia~, tY~ 1y 1.~15~: ~!} 1(72-1~~, 1.ti~.
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CK'~A'd1S!CAN~ R w ~.
OMIa~N5I~iY, ~S.M.; K.tIATLDV, Ye.P,; VOSKAHY~;, V'.A.; A$U7'YU~'l~i~, P.Z.;
CHI~'CA~, 5. !~. ; 4t3AAN A. 5. ; KHOY~~'S'~AN, _R_, 2r.
I~tatea'ialss ot~ the elau~hter and anato~;iical
asf the cons+Nitttt.lon oP Tonne local cattle
Schw~~z cattle. ;Cs3v. AA Ara. SCR, ,Biol. i
2~..3t~~ Mr 'S7.
1. Yer~svantNk~iy ssi-oveteriaiaras~-y in~titut.
{ Armesuie-Cat tle-~-A~-te~aq~}
and hiat�,1�>~;fcal. etud~-
csstd their c.rl~astea witty
aol'kho~, nsQUki 10 no.3s
(fig 10a5~
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ISApiT'1IANTS, P.I. {~aningrad ~ 1'ISI~O�,~, P.$. .
(Len,~n~ra.~ )~ ~~ (Leni i~rad ). FAPC~SKAIA, 81.x,
8.0. ~Leu~ugrad)
~ttbei;ftuted shaded phenols and their use as anti~aaidant additf~ves
of mineral oil praducts, Tr, frgm the Tuesi~~~n. $~m.twd~kosl.MT.~ 12
no.4:363-381 '59.
(~A:i 9; t~)
1. ~nix~radi '~udomangegyetam.
{~'henale) {Mineral oils )
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ACC NR: Apbi?29920 ~~'~~~~"`"~"~'
:-~ _~; SOURCE CObE:
IIdVEh'TOR: Kc~rsh__ a ~ ~ zamyatiria, V. A. ; O~anes~ari,
ORG: none `~~r
TI1'LI:: L'rep~ rc~tive method for an
SOURCE:
oxganaboron polymer
Izabret prom obraz tov zn, no. 15, 1,966, 8 if
TOPIC '~"AGS: moron co~apound, organoboron polymer
UR/o4a.3/66/ooo/oar/~iw$$/ao,sa
A . M. ~ ,,.~'~ '~
.~,__.,,, ~~/i
~,
i ~!
Clara 3~, lNo. 1$4k441
ABSTRACT; ,An Author Certificate has been issued for ;~ pr~IparatLve mef:hod for ani
organoboran p~~lymer based on borazine.
the polymer, ;~~,N'_~ t;ri hen r.Ibo~~~and dfhadroval.E~ab1~~ prop~:rties [unspec,[ft.edJ to
heated togei:h~r. y -thyldecaborinene [sicj are.
SUB CODE; J.1,
.
Cord
.~ ,., t:~..rt r. _
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
ACCESSION NR: AP401901.4
4391.3, "The authors express their
A.I. Ko~~redov for placing at their d~~pos~ldt~heobieI' Zakharlrin and
diethyl ester of trimethylenadiboric a-cid." Orig,l art; hasi~12
formula`s
ASSOCIA~'ION: Institut ~~lementoorganicheskikh soyer~ineniy ,Rkademfi
nauk SS:-R (Institute c~~," ~'ganometallic Cor~pounds, academy of Scienc:e~c
SSSR) ~
SUBMITTED : O~Ju163 SUB CODE . OC
~ATE~,ACQ ; 27Marb4 ~ NR REF SO~II': Q~'~3
~/~ ~ ,
Card ,
..,. ....... :.._~. ._ ... .......~r.w.�drraa~.... .._...
EN Cx. ; 00
OTHER 9, 001
i
~.�..~m~�^.+y., ~.,n+w-,r~^,^~..,e.~w.......+.+...tr.....~t+,!~,w4y...w,p~.~w:.:sww~g'`.~0'~y'~'I~
wry -_
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.... :,~.2...-
~. _. -� '"~: t:)N NR.... AF'l,A19014~.. 5~00~-2/6~.,1000~'002~03f~~2~0,1b3
~ACC~SSI
AUTHORS ; Korsha~c, V�V � ; 0~-nesyan, R.A. ; Za~'atin~~, V.A. ,
� ;col condensation of N-substituted bor~-zola with bi.s- ~ ~ ~ ~ "' '~
TITLE. Y
aminodi athyl �ster of trimethylenediboric ac.ld
� AN SSSR. Irv. 3eriya khimiche,~kaya, Sao, 2, 19b~, 3bz~~-3b~
SOURCE.
.mQthylntriph~r-ylborazol, borazol, '
TOPIC TAGS fd bisbetabntaracpinodiathyl, trimethylene diboric acid
diboric ac
~a - N bond
xBSTR.ACT : Th� relation of the hydridionsaof cNetY�iphenyl'bora,zol with
in barazol which appears in the rea.~t
diols c.nd polyols, was investigated particul;arly~~o~eandllofiEin ethyl-~
N-tripheny].bora a
of thi band to the arninogroup.
-tri Y;enylborazol with bis-p, p~-a~rinodiethy,l ester of trime~thyleri.e
SincEa this estez� is at~~
diboric: acid was reacted for tiny Pi~Pig�suf'ficif3ntly stablEC both
the sar-e time a da~secondary asufficiently stable. Polymers were
hydrol~-tically and thermally
inc~d whose structure is descr~,bed and d~,scus;aed. ~~~`frcaimr ~,25(~ to
obta
linear or latticed structures and have molecular w�i �
card 1/;Z _ _ _._ .. _.. _~ ..._.. , a ....,~..., _
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LAK, V.V.; Zt~1YATINA, V.A.; ~KASgVA, N.I.; q(tANESXAN~ R.M,;
SOLOMATINA~ A.I. ..,w''�".:"~`T:;".`~"~.: -
~olyeaters of borio acid. Tzn.AN 3S'ft.~z~.khim. na,$~],4~--:~~f~2
Ag '63~ {M~RA 16:9)
1. Tnstitut elementoorganicheskikh soyedir.~eniy AN SSSRq
($oric acid) (Esters)
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-H ~ ~. V ~ ~ ~AMXAT I2dA ~ V. ~, ; OG;ANESX~lN,~ ,~ae.~�..--
Pnlycondensatinn of I~-t~iph~lborazole ~rl.th pa~,~*alei ~a~v. ~;N 58,
e~d.~.n~auk TIO~~.o:lg5a-ZSSz o sb~. I; ~.5:~0)
1. Tnstitut e~smentaorganicheakSkh aoyedfneniy AI~t 553.
(Bore~ine) (Ai~chole) (Palymari,~a~t;lnn)
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KOFi~t~:9 y'~y,; x,AMyQT~N~~ VrA,, t1GAN,Y~AN, ~t.M;,
+Capolymaaix~tian p,f nit.-~a~~r,~.~,~b~tttuterd ba3~a~o~~~ ~.td~ ~I
dfisacyanateo xzv..9.N S 'y'R.Otd6khf~aa.nav:k no,~9.1bf1670 S i~ 1~'~ylene
(~IYRA ],.5.1,0)
i� Inetitut e1,~entoarg~raiahaekikri ~oy~din~.niy Allf SS5R0
(Bora~ine~ (Cyalahexun~)
(Pa1y'mnxi;~tio~a)
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APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
r
f-~ ry ~,
r_'~
~~~ f~~~
AUTHORS:
TITLu:
PF,'PIODTCAI:
Yoz�srak, V. V. , zamyatina, 'V. A. ,
.~ ~ }.<
~/~ ~~ ~z/o~~~/A~,I~/f~19/~'~ ~
8117~1~8
O,~;anesye.n, R. rd.
Po].ycondensation and copolymeri7z~t:an of ~tweu~st~ltut~~~d
boroazolQ with bifunctions.l cor~pour~de
Yysokomolekulyarnyye soyedi;neniya, v. 4, no. ~, "1962,
615-6~6
TEXT: This letter to tree editor contains tie information. that N-�sub~~tituted
borazale is suitable for polyeoridensation a~ad copo]~ymerizatian. Hea~L-�
resistant polymers are formed thereby, ~vhioh, in individual case,, e,;re
highly elE:stic over a pride temperature range (up to X50�r). Hyd~~oge~~ was
sepaxated`durin~ thQ reaction of N-phenyl boroazole with eicosa.nE~-dial, and
a polymer, rubberlike at .roam temperature, was found. Migrational c~apoly-
merizatior of N-triphenylboroazole with hexamethylene di:iaocyar,ai:e produced
a polymer. with s relative viscosity of the solution in cresol of 0.1;3 and a
brittle point of 145oCs C30H~6B~N603. A similar polymer with a relati.~�e
viscosity of 0.54 was obtainea from triar8thylboroazole. CapolymESriz~ltion o:f
N-phenyl toroazole with divinyl benzene produced a polymer insoluble in ,~
Card 1~2
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333'l5 ~j
S~19i~~o2~GO4/~00~/'i.;O~~ Gt i
Polyes tF~rs and polymeric salts ~ � ~ P110,/B1O1
pol,yestErp boric acid ws,s condensed with pentaerythritE; equi.molecul.s.rly
for 10 } x at 150 _ 1 ~OoC in ld2 flown mhe polymeric salts af' I1:I h~l.d line ~~r
strur tut *v ~> She molecular weight of un:~o1ub14 po].ymc.r;~ hydxol,y~~l.nfr :tn
aqueous ai~tali could not be determined The Zn ~-a1t of III cor-tairis morn
organic and fewer mine.rel fractions than }lad beexi calculated Po1}~conden
sstion c~f I Frith TI yielded a polyester of calcu:latod compo:sit'~on rv}i1,ch w~~ti 3
hat~rever; not linear and ungolub].oF., Anhydr~.de wa.~ forYr-ed durir.~,r th+
synths 7~~.s of polymeric salt of I from metal acet~~tes ~ and some tributyl
corate ,rag sepc~,rated out during t;hs.t of Zn salt:, PolyQsters and salts
resembli~ each other in Mechanical. and tl-~errrcrnschr~.nical re::pE~c~~ an+'I in ~~u*Fr
TY-e brittle a~hite polyesters melt aY ~3CiOoC~ Thy p^~`.ye"'`.
apl?eara:ice F
of I. do's nog Y'tydretyzF in the cold: that of hor:ic acid does;. Tr~G ;re~.a,�,~.
brittle Sn-organic s~,.l*,s hydrolyze in the r,old, ~.nd have law sof ~el~~.n~
temner,~ Gu,rE~;; 7'x,2 Vr}'~7. tE? 7rn sa1?~+~~hydral,yze ;yell ~ r~r~d .melt NT ~t=,Ci~;'-"
'P~F}ni:-~ ;3 .U i j'1~UI"~'y C t:il~.it?~; ~71d ~ referenc~~S ~ -~GV~.e'C ~.271~ ~ nf;i'1 `~'i3 :l .,
the xer'rence to the EnglisY-,language publication reaels as fu:}low~ V'r'~ il.~
~smford~ S~ Fordham~ H;.gh Temperature Regist~ance and Thermal. Degradation
of Polyners. Symposl.um4 5rpt� 7ybO>' Lor_don~ ~?~ ~2`f~.
Card %~~
,~
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~~~~
1~ ~~~~~ ~/~90/~~/oo4/r~o~/c~o~/oz
B11O/r~10~
1~U`['HORS; Korshak, V~ V~, 2amyatina, V, A~, l~~a Jui-jan~ O~;a.ne~lyan, R,~N~,....
TTTt,~;< Pol.ye~:~texs and pc~ymera.c saltcl of boric and 1,~-phr.r,yl~~ne
t~ibo~'~.r.; ap~ci~t
p~.~RTGi~I~;AI~: Vysakamolekuly�~rnyye soyed:lneniyay v. ~~ no., 1, tg62,, 1U8~-1 ~'
T~X~: '"~ Ao Zamyatina and No Ia Bekaaova (Usp~ khimii, ~, 4$, 19#]1)
desaxibtld the synthesiq of high~.y thermos table polyesters off,' bclric and
substiti,~ted boric acids In the present .study, the palyestf:rs of l:loric
acid anc. 1 ~r~-phenylene diboric acid (I} with pentaerythrite (I7:} y ~~he Zn~
and Sn�-clrganic salts of pentaerythrite hydroxydiboric acid (I7:I) ~tnd I
vrere syrtthesized~ and their properties compared Polypentaerythri~~A phen,y-
_ H r 0 B ~OCII2 C CH2 OH
lene 1 ,r~�-diborate, ~ B
H 0 ` OCH2 CH2 60H
is unme:.table and resistant to heat and hydrolysis F'or producing a linear
Card 1 /7,
J
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,,f ,
~~~Y~, ~.~.; ~ca7aii~xr~x, a.M.; o~.a~~~x, ~.~.; us~~rnx~ ~.x.
lnvaetigati~ e~ter$ of aulfaacl+i~s, deport gyp� 1: 9pn.the~si~ tiur~l
aaArlclde pxa~~ertlets of certain ot~t~,rs~ of ''~tl�chlararral,yle~alfa
ac~.d. Isv. IAN A'rm 3SR ~e-r. khim. Weak 10 Ao.l~~r2'7`1-2~2 ~ �i7.
1, 1~lmichesk9lp inetitut Alit ~rmS58 i Inetltut zeinledell~ra M:l,nisterasto~.
eel'skt~;o khoscyayatva ArinSSa.
(Su1f ota:ic ac i da
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
U,~SI~/t~z~~;ar.:~c Choi;zlstry - 3ynnc~rlc; C~zgr~r~.lc t,hc:r~iw't,ry l;w~
tit, �: ~~c3?~i Io~;~'~'r:~t ~~~~.~r. - i':};~r;9.;~~~x, t~~i ~, ~.~~~~ ~~~~;3
N1P 91-~20. rinalo~;c>~~sl~ w~:re PrePt~,red the other IT.
(1:t;t~.nl, t,h~: l~, ciu:rar,-i,~;;;~i of to.tlin~ i.r~ C~;I~ ~.n hoot�s,
yi~;1il ni' ~'T ~.ri ;~~ IMP iii oC) : 4-Cl'13~~Ht+, ~o~ i+", E3G~~8~;
2--CH OC FI1F, 1G, I+2.?, 8G-85 (fram aqueous a:l.cohal~; lr~eta~
nt�~Ptl~hy~, ~, 1t~,6, 119-1.21; u],Pha~-naPhthyl, ~ hours ~t
2G�, boiled l0 hours, 32.I~, 101-143 (from a~iueous alcohol.) .
I~i.xture of 20 ~~ hydrochloride of III and 4G r17, coixcentra-
te~1 H2S0~ heated far 25 hours at 5G-6G� and diluted with
wo.ter, lh g of IV separate. With I+G~ and (~C�,~ H2SC1~
(heating for 25 hocirs the hydrochloride of TII
yi.~;lds thy:; sulfwfe of TZI, ICI' 169.172� (from water,
Cf. RZhKFii^:, 1.95 ~, 26113,
Card 3/3
-. ~ r~ r
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
i
I~
USSR/G~rg;~,nic ~er~istry _ S5�ntheti c Organ:tc Chemistry
E-~
~1bs Jcur Re~er,~.t ~;hur ~- Khi~rri,ya, Igo ", 19'57, x+283
A.: a result of the reaction of the hydroch oride of
S��(gamra-chlarocroi;yl j-is ~ . ,
o-t:hioui. Ea (zTI, ease} with
H~ySO~ iri lieu ai the expected Leta-sulfarzicln there is
Farmed, apparently, the prorluat t~f 1.t;s~ further
c3'c1-i~at3.on and suJ.fbnation IiS03C'HRC�O~;C( ~}TRH (IV}
Fram the products of cleavage oP ZV with alkali ~,nd
H2,50~, thio~u~e.~, has been i3alated. On oxidation w:tth
HNO IV gives (COON}~. I w,a,s propared by thE, pre-
v:tausly 3 describad r~etho~~ (R?,hKlxirt, 195~a�, X8016
1.20 �.l a~;fueous NJi~ ajld ~,~ g I are m:txed fax seven ~ m1.nu-
te, ~ftlr~r 2~� hUUrs (.r��r 20e~the mixture is eva orE~t;ed
yield afl II (R ~. g} ~t~~1~4!~ ~ ~ a ~ P ~
t5� i~ To a so:tution af` 12
g �~nilinf': in l20 ral ether are o.ddc~d :l2 g x, aito=z� 3C minu�
tee; (�~ 20`'} the rnixturc 1s boilf~d a^c~r ~~ ~r.~~rtutc;, , the
er1rstals that sep~,rWte a,re rcprecip.il;r>,ted f~~om un aakal~.�
ne solution w:tth II~SO~,~ yiclcl of T'I ~FZ .: C6F[5}4~.a.~,
Card 2/,3
. '~ 36 -
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
1 ~ ~~~(~
Ai1THORS:
~337!~
~/~ ~~ F,~/O~a~~+.~~/o~,~/c?
~110~~0~
I;orshak, V� V~, Zamyatina, V� A� ~ ~4a Jui~-jany C)ganes~rans ~~t:~LL-~
TTTT,E~ Polyester~~ and
diboric acids
polymeric gP~lt a of boric snd 1 ,~~-pher.tler,.e
v9 4~ no., 2, ~9~2y 1GE)~1~!
PLRTODICAL; Vysokomolekulyarnyye soyed:ineniyaY
T Bekasova (Usp� khimii, ~, 45,E 19611
Ti1XT: V4 A> Zamyatina and P14 �
describE~d the syxit'nesis of highly thermos table polyesters of boric and
n In th`~ pre~;ent study, the poJ.yesters of r~ori~~
substitL.ted boric acid b with [~entaerythrite {T:[1 r t,'r:e ~,n-
acid and 1y4-phenylene d.iboric acid ~T~ ~~nd I
Sn-car anic salts of pentaerythrite hydroxydiboric acid (TI11
and $ ~entaer thrice phen;,y~
Polyi. y
were syY~thesized y and tr~eir properties compax ed� CH OH
H 0 ~OCH2 l 2
_ 1 ~ -diborate, B B ~ C
lene , G > ~ Cg OH
H 0 OCH2 2 6
is unmeltable and resistant to heat and hydrolysis ~~or producing a linear
Card. 1%~
,~/
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
APPROVED FOR RELEASE. 06/23/11 CIA-RDP86-005138001237800023-6
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v~>~R~~~n~c ~'hQ11~~t7"y .~ ~~~thc~t~e Gx an i~
robe J~ryur Re~"erat; 2~-ux � Khilr~.yu, pia ~s j~~~`f`~ (.~y('y
.~
Ik~
a result ai' the reuctic~ of tl~e hY~rpch'
H 54 ~~.~h~,oroc.~ot 1 ~l~v~. ,~ .loride oi`
~ ~ thlou~. t~q, 1
2 ~ lieu of the 4 (~x~~ 1ia~e~ with
fc~r~p~d ~, ~~~~e,~ ~telso~r~i~.,~'iq;,~a th~~~e :ts
~ycl~xat,ic~n ~gnd~sul~'onat~onk~ prtrdu~.`~, +~;~ it,s
Wit? C"H ~: ~hea~
From the ~}ro{lusts a,~ c~.ec,va a oP ~..`~
~ rV with alkali ~~d
H25C1~, thiot~x~e~, .has -been isolated, Gia oxi
HN!~~ I;i' t~ves {GpOH ~ ~~tion frith
� Z trt~s P~'epereit by tx~e pre-
viou~ Iy clesc-ribed, mctha~
120 mI aclu~ou~e NH3 mx~d 12 ~ I~tim, ].~.~~, ~$016~.
tcs, af't~~x 2~- hours ,.,. ~x~~ ;~'or several ~ni.nu-
Yie1d of I:[ {]~ ~- H ( 2t}~'f the r~~ixture is eve, y
~ ~iline ~.n ]'.2G ~ ~~`~~, '(5~�76� � por~,t~.dr
~. ~.ther are added ~ $ solution oi` 12
tes { .,.~ 200 ~ tae rni ~~ ~ I, +~ftex '
cxYstals that se uxe ~~ baiXo~3 :fa~~ .3a minu..
;~arai;e ~`e rcpreci~~itai;e~ fr