ÑÎÄÅÐÆÀÍÈÅ
Ïðåäèñëîâèå . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
1. ÃËÀÂÀ 1. ÐÎËÜ ÔÅÄÅÐÀËÜÍÛÕ È ÐÅÃÈÎÍÀËÜÍÛÕ ÎÐÃÀÍÎÂ ÂËÀÑÒÈ Â ÐÀÇÂÈÒÈÈ ÎÁÐÀÇÎÂÀÍÈß, ÔÓÍÄÀÌÅÍÒÀËÜÍÛÕ È ÏÐÈÊËÀÄÍÛÕ ÈÑÑËÅÄÎÂÀÍÈÉ È ÂÛÑÎÊÈÕ ÒÅÕÍÎËÎÃÈÉ
ÒÎÌÀÒÈÇÈÐÎÂÀÍÍÀß ÑÈÑÒÅÌÀ ÎÏÐÅÄÅËÅÍÈß ÎÑÒÀÒÎ×ÍÛÕ ÍÀÏÐ߯ÅÍÈÉ
THE AUTOMATIC SYSTEM FOR THE DETERMINATION OF THE RESID-UAL TENSION
5
5
1.2 Àãåíîñîâ À.Â., Ùåðáèíà Å.Þ.
ÎÒÊÐÛÒÀß ÈÍÔÎÐÌÀÖÈÎÍÍÀß ÑÈÑÒÅÌÀ ÎÏÒÈÌÈÇÀÖÈÈ ÓÏÐÀÂËÅÍÈß ÇÀÏÀÑÀÌÈ ÏÐÅÄÏÐÈßÒÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
6
1.3 Áîêîâàÿ Í.Â.
ÈÍÒÅÃÐÀÖÈß ÏÐÎÖÅÄÓÐ ÈÌÈÒÀÖÈÎÍÍÎÃÎ ÌÎÄÅËÈÐÎÂÀÍÈß È ÎÏÒÈÌÈÇÀÖÈÈ ÏÐÈ ÏÐÎÅÊÒÈÐÎÂÀÍÈÈ ÏÐÎÈÇÂÎÄÑÒÂÅÍÍÛÕ ÑÈÑÒÅÌ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Bokovaya N.V.
INDUSTRIAL SYSTEMS DESIGNING BASED ON IMITATIVE
SIMULATION PROCEDURES INTEGRATION AND OPTIMIZATION
7
1.4 Áóöåíêî Å.Â.
ÎÁ ÎÖÅÍÊÅ ÊÀ×ÅÑÒÂÀ ÌÎÄÅËÈ ÏÐÎÃÍÎÇÈÐÎÂÀÍÈß ÄËß ÏÐÈÍßÒÈß ÓÏÐÀÂËÅÍ×ÅÑÊÈÕ ÐÅØÅÍÈÉ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Butsenko Å.
ABOUT THE ESTIMATION OF QUALITY OF MODEL FORECASTING FOR ACCEPTANCE OF MANAGEMENT DECISIONS
9
1.5 Âàëååâ Ñ.Ã., Êóâàéñêîâà Þ.Å.
ÏÐÅÖÈÇÈÎÍÍÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÒÅÕÍÎÃÅÍÍÛÕ È ÝÊÎÍÎÌÈ×ÅÑÊÈÕ ÂÐÅÌÅÍÍÛÕ ÐßÄΠ. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Valeev S. G., Kuvayskova YU. E.
THE PRECIZION MODELING OF THE TECHNOLOGICAL AND ECONOMIC TIME SERIES
11
1.6 Âèíîãðàäîâà Å.Þ., Øîðèêîâ À.Ô.
ÏÐÈÌÅÍÅÍÈÅ ÍÅÉÐÎÑÅÒÅÉ ÄËß ÇÀÄÀ× ÏÎÄÄÅÐÆÊÈ ÏÐÈÍßÒÈß ÓÏÐÀÂËÅÍ×ÅÑÊÈÕ ÐÅØÅÍÈÉ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Vinogradova E. Yu., Shorikov A.F.
APPLYING NEURAL NET FOR DECISION PROBLEMS OF SUPPORT
OF ACCEPTANCE OF ADMINISTRATIVE DECISIONS
13
1.7 Ãðàöèíñêàÿ Ã.Â., Ïó÷êîâ Â.Ô.
ÈÇÌÅÐÅÍÈÅ È ÏÓÒÈ ÏÎÂÛØÅÍÈß ÝÔÔÅÊÒÈÂÍÎÑÒÈ ×ÅËÎÂÅ×ÅÑÊÎÃÎ ÊÀÏÈÒÀËÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Gratsinskaya G., Puchkov V.
HUMAN CAPITAL ASSESSMENT AND WAYS OF INCREASING ITS EFFICIENCY
14
1.8 Êàëèìóëèíà Ý.Þ.
ÏÐÈÌÅÍÅÍÈÅ ÃÅÍÅÒÈ×ÅÑÊÈÕ ÀËÃÎÐÈÒÌΠÄËß ÐÅØÅÍÈß ÍÅËÈÍÅÉÍÛÕ ÑÌÅØÀÍÍÛÕ ÇÀÄÀ× ÎÏÒÈÌÈÇÀÖÈÈ ÑÒÐÓÊÒÓÐÛ ÊÎÌÏÜÞÒÅÐÍÛÕ ÑÅÒÅÉ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Elmira Y. Kalimulina
APPLICATION OF GENETIC ALGORITHMS FOR NON-LINEAR MIXED OPTIMIZATION OF COMPUTER NETWORKS STRUCTURE
16
1.9 Êîïûòîâ Å. À., Äåìèäîâ Â. Â., Ïåòóõîâà Í. Þ.
ÌÅÒÎÄ ÏÎÑÒÐÎÅÍÈß ÌÍÎÃÎÂÅÐÑÈÎÍÍÎÃÎ ÆÅËÅÇÍÎÄÎÐÎÆÍÎÃÎ ÐÀÑÏÈÑÀÍÈß Â ÈÍÔÎÐÌÀÖÈÎÍÍÛÕ ÑÈÑÒÅÌÀÕ . . . . . . . . . . . . . .
Eugene Kopytov, Vasilijs Demidovs, Natalia Petukhova
METHOD OF MULTIVERSION RAILWAY SCHEDULE CREATION IN INFORMATION SYSTEMS
17
1.10 Êóòóçîâ Ä.Â.
ÈÍÔÎÐÌÀÒÈÇÀÖÈß ÑÈÑÒÅÌ ÓÏÐÀÂËÅÍÈß ÊÀ×ÅÑÒÂÎÌ ÍÀ ÏÐÅÄÏÐÈßÒÈßÕ È Â ÎÐÃÀÍÈÇÀÖÈßÕ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
24
1.11 Ìàñëîáîåâ À.Â.
ÈÍÔÎÐÌÀÒÈÇÀÖÈß ÈÍÍÎÂÀÖÈÎÍÍÎÃÎ ÁÈÇÍÅÑÀ Â ÐÅÃÈÎÍÅ: ÏÐÎÁËÅÌÛ, ÌÅÒÎÄÛ, ÒÅÕÍÎËÎÃÈÈ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Masloboev A.V.
INFORMATION SUPPORT OF INNOVATION BUSINESS IN THE REGION: PROBLEMS, METHODS, TECHNOLOGIES
25
1.12 Ëåâèí Ã.Ì., Ìåäâåäåâ Ñ.Â., Ðîçèí Á.Ì.
ÍÀÓÊÎÅÌÊÈÅ ÌÓËÜÒÈÏÐÎÖÅÑÑÎÐÍÛÅ ÈÍÔÎÐÌÀÖÈÎÍÍÛÅ ÒÅÕÍÎËÎÃÈÈ ÏÐÎÃÐÀÌÌÛ «ÒÐÈÀÄÀ» Â ÏÐÎÌÛØËÅÍÍÎÑÒÈ . . . . . . . . .
28
1.13 Ëèííèê Ë.Í.
ÑÎÑÒÎßÍÈÅ È ÏÅÐÑÏÅÊÒÈÂÛ ÏÐÈÌÅÍÅÍÈß ÂÛÑÎÊÈÕ ÏÀÒÅÍÒÍÎ-ÀÂÒÎÐÑÊÎ-ÏÐÀÂÎÂÛÕ ÒÅÕÍÎËÎÃÈÉ ÄËß ÇÀÙÈÒÛ ÐÅÇÓËÜÒÀÒΠÏÐÈÊËÀÄÍÛÕ ÐÀÇÐÀÁÎÒÎÊ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
30
1.14 Ëèïàòíèêîâ Â.À., Ìîæàåâ Î.À.
ÌÅÒÎÄÈÊÀ ÎÖÅÍÊÈ ÇÀÙÈÙÅÍÍÎÑÒÈ ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ ÌÅÍÅÄÆÌÅÍÒÀ ÊÀ×ÅÑÒÂÀ ÎÒ ÍÅÑÀÍÊÖÈÎÍÈÐÎÂÀÍÍÎÃÎ ÂÎÇÄÅÉÑÒÂÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
31
1.15 Ìàêîâà Ì.Ì.
ÏÐÎÁËÅÌÛ ×ÀÑÒÍÎ-ÃÎÑÓÄÀÐÑÒÂÅÍÍÎÃÎ ÏÀÐÒÍÅÐÑÒÂÀ ÏÐÈ ÔÈÍÀÍÑÈÐÎÂÀÍÈÈ ÈÑÑËÅÄÎÂÀÍÈÉ Â ÍÅÔÒÅÃÀÇÎÂÎÉ ÑÔÅÐÅ . . .
Makova M.M.
PROBLEMS OF THE PRIVATE-STATE PARTNERSHIP AT FINANCING OF RESEARCHES IN OIL AND GAS SPHERE
33
1.16 Ìîæàåâ Î.À.
ÍÀÓ×ÍÎ-ÒÅÕÍÈ×ÅÑÊÈÅ ÏÐÅÄËÎÆÅÍÈß ÏÎ ÎÁÅÑÏÅ×ÅÍÈÞ ÇÀÙȬÙÅÍÍÎÑÒÈ ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ ÌÅÍÅÄÆÌÅÍÒÀ ÊÀ×ÅÑÒÂÀ ÏÐÅÄÏÐÈßÒÈß ÎÁÎÐÎÍÍÎ-ÏÐÎÌÛØËÅÍÍÎÃÎ ÊÎÌ-ÏËÅÊÑÀ ÎÒ ÍÅÑÀÍÊÖÈÎÍÈÐÎÂÀÍÍÎÃÎ ÂÎÇÄÅÉÑÒÂÈß . . . . . . . . . . .
35
1.17 Ìûêîëåíêî Ä. À., Íå÷àåâ À. À., Òàðàíîâ Ñ. À.
ÊÎÍÖÅÏÖÈß «ÇÅ˨ÍÎÃλ ÏÅÐÑÎÍÀËÜÍÎÃÎ ÊÎÌÏÜÞÒÅÐÀ . . . . . . . .
Mykolenko D. A., Nechaev A. A., Taranov S. A.
ENVIRONMENT FRENDLY GREEN PC CONCEPTION
37
1.18 Ïîãîðåëîâ Ý.Â.
ÂÎÇÄÅÉÑÒÂÈÅ ÓÃËÅÐÎÄÀ ÍÀ ÎÁÙÅÑÒÂÅÍÍÎÅ ÑÎÇÍÀÍÈÅ . . . . . . . . 38
1.19 Ðàêóòüêî Ñ.À.
ÝÍÅÐÃÎÑÁÅÐÅÃÀÞÙÀß ÑÈÑÒÅÌÀ ÓÏÐÀÂËÅÍÈß ÝÍÅÐÃÎÒÅÕÍÎ-ËÎÃÈ×ÅÑÊÈÌÈ ÏÐÎÖÅÑÑÀÌÈ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
39
1.20 Óëüìàí (Ëèôàíîâñêèé) Â. À.
ÏÐÎÒÎÝÍÅÐÃÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Ulman (Lifanovskij) V.A.
PROTOENERGY
41
1.21 Ùåëêàíîâ À. À.
«ÏÐÈÌÅÍÅÍÈÅ ËÈÇÈÍÃÀ Â ÔÈÍÀÍÑÈÐÎÂÀÍÈÅ ÐÅÀËÜÍÛÕ ÈÍÂÅÑÒÈÖÈÉ» . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Shchelkanov A. A.
LEASING AS A METHOD OF INVESTMENT
47
ÃËÀÂÀ 2. ÈÍÔÎÐÌÀÖÈÎÍÍÛÅ È ÊÎÌÏÜÞÒÅÐÍÛÅ ÒÅÕÍÎËÎÃÈÈ, ÐÎÁÎÒÎÒÅÕÍÈÊÀ, ÐÀÄÈÎÝËÅÊÒÐÎÍÈÊÀ, ÍÀÓ×ÍÎÅ ÏÐÈ-ÁÎÐÎÑÒÐÎÅÍÈÅ, ÏÐÈÊËÀÄÍÀß ÌÀÒÅÌÀÒÈÊÀ, ÏÐßÌÛÅ È ÎÁÐÀÒÍÛÅ ÇÀÄÀ×È, ÊÐÈÏÒÎÃÐÀÔÈß È ÇÀÙÈÒÀ ÈÍÔÎÐÌÀÖÈÈ . .
Àëïñ È., Ëåâ÷åíêîâ À., Ãîðîáåö Ì., Ðèáèöêèñ Ë.
ÏÐÈÌÅÍÅÍÈÅ ÏÐÎÃÐÀÌÌÛ SIMULINK ÄËß ÊÎÐÐÅÊÒÈÐÎÂÊÈ ÐÀÑÏÈÑÀÍÈß ÏÅÐÅÄÂÈÆÅÍÈß Â ÈÍÒÅËÅÊÒÓÀËÚÍÛÕ ÝËÅÊÒÐÎÒÐÀÍÑÏÎÐÒÍÛÕ ÑÈÑÒÅÌÀÕ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Alps I., Levcenkov A., Gorobetz M., Ribickis L.
SIMULINK PROGRAM APPLICATIONS FOR SCHEDULE CORRECTION IN INTELLIGENT ELECTRICAL TRANSPORT SYSTEMS
49
49
2.2 Áåéíàðòñ È.Ç., Ëåâ÷åíêîâ À.Ñ., Áàëöêàðñ Ï.ß.
ÀËÃÎÐÈÒÌ ÈÍÒÅËËÅÊÒÓÀËÜÍÎÃÎ ÓÏÐÀÂËÅÍÈß ÄËß ÑÈÑÒÅÌÛ ÎÒÎÏËÅÍÈß ÏÀÑÑÀÆÈÐÑÊÎÃÎ ÂÀÃÎÍÀ ÝËÅÊÒÐÎÏÎÅÇÄÀ . . . . . . . .
Beinarts I., Levchenkov A., Balckars P.
INTELLIGENT CONTROL ALGORITHM FOR COACH HEATING SYSTEM OF ELECTRIC TRAIN
50
2.3 Áè÷åâñêèñ ß.ß., Êàðíèòèñ Ý.Ê., Êàðíèòèñ Ã.Ý.
ÑÅÒÅÂÀß ÑÐÅÄÀ ÄËß ÈÍÍÎÂÀÖÈÎÍÍÎÃÎ ÁÈÇÍÅÑÀ . . . . . . . . . . . . . . .
Janis Bicevskis, Edvins Karnitis, Girts Karnitis
NETWORKED ENVIRONMENT FOR INNOVATIVE BUSINESS
51
2.4 Áëèçíþê À. Â.
ÌÅÒÎÄÛ ÎÁÐÀÁÎÒÊÈ ÃÐÀÔÈ×ÅÑÊÈÕ ÈÇÎÁÐÀÆÅÍÈÉ . . . . . . . . . . . . . .
53
2.5 Âèíîãðàäîâ À.À., Ñåâîñòüÿíîâ Ñ. Â.
ÎÏÛÒ ÏÐÈÌÅÍÅÍÈß ÏÐÎÃÐÀÌÍÛÕ ÊÎÌÏËÅÊÑÎÂ ÄËß ÏÐÎÅÊÒÈÐÎÂÀÍÈß ÑÈÑÒÅÌ ÝËÅÊÒÐÎÑÍÀÁÆÅÍÈß . . . . . . . . . . . . . . . . . . . . . . . . .
53
2.6 Âèíîãðàäîâà Å.Þ.
ÒÅÕÍÎËÎÃÈß ÈÑÏÎËÜÇÎÂÀÍÈß ÍÅÉÐÎÌÎÄÅËÅÉ ÄËß ÐÅØÅÍÈß ÇÀÄÀ× ÓÏÐÀÂËÅÍÈß ÏÐÎÈÇÂÎÄÑÒÂÎÌ . . . . . . . . . . . . . . . . . . . . . . . . . . .
Vinogradova E. Yu.
TECHNOLOGY OF USE NEURAL MODEL FOR THE DECISION OF PROBLEMS OF PRODUCTION MANAGEMENT
55
2.7 Ãàðêå Þ. Ñ.
ÑÈÑÒÅÌÀ ÒÅÕÍÈ×ÅÑÊÎÃÎ ÇÐÅÍÈß ÍÀ ÁÀÇÅ MICRO PC . . . . . . . . . . . .
Garke Yu. S.
COMPUTER VISION SYSTEM BASED ON MICRO PC
56
2.8 Ãàñêàðîâ Â.Ä.
ÌÎÄÅËÈ ÀÁÑÒÐÀÊÖÈÉ Â ÏÐÎÅÊÒÈÐÎÂÀÍÈÈ ÇÀÙÈÙ¨ÍÍÛÕ ÈÍ-ÔÎÐÌÀÖÈÎÍÍÛÕ ÑÈÑÒÅÌ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Gaskarov V.D.
ABSTRAKTION MODELS IN SECURITY INFORMATIONAL SYSTEM DE-SIGN
58
2.9 Ãîðîáåö Ì., Ëåâ÷åíêîâ À., Ðèáèöêèñ Ë.
ÃÅÍÅÒÈ×ÅÑÊÈÉ ÀËÃÎÐÈÒÌ ÄËß ÐÅØÅÍÈß ÏÐÎÁËÅÌÛ ÇÀÒÎÐΠÃÎÐÎÄÑÊÎÃÎ ÝËÅÊÒÐÎÒÐÀÍÑÏÎÐÒÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Gorobetz Ì., Levchenkov À., Ribickis L.
GENETIC ALGORITHM FOR TRAFFIC JAM PROBLEM SOLUTION IN CITY ELECTRIC TRANSPORT
59
2.10 Ãóùèíñêèé Í.Í., Ëåâèí Ã.Ì., Ðîçèí Á.Ì.
ÈÍÔÎÐÌÀÖÈÎÍÍÛÅ ÒÅÕÍÎËÎÃÈÈ ÀÂÀÍÏÐÎÅÊÒÈÐÎÂÀÍÈß ÀÃÐŬÃÀÒÍÛÕ ÌÅÒÀËËÎÐÅÆÓÙÈÕ ÑÒÀÍÊΠ. . . . . . . . . . . . . . . . . . . . . . . .
61
2.11 Äìèòðèåâ Â.Ì., Çàé÷åíêî Ò.Í., Öåëåáðîâñêèé È.Â., Øóðûãèí Þ.À.
ÒÅÕÍÎËÎÃÈß ÊÎÌÏÜÞÒÅÐÍÎÃÎ ÌÎÄÅËÈÐÎÂÀÍÈß ÍÀ ÁÀÇÅ ÌÅÒÎÄÀ ÊÎÌÏÎÍÅÍÒÍÛÕ ÖÅÏÅÉ ÄËß ÇÀÄÀ× ÍÀÓ×ÍÛÕ ÈÑÑËÅÄÎ-ÂÀÍÈÉ È Ó×ÅÁÍÎÃÎ ÏÐÎÖÅÑÑÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Dmitriev1 V.M., Zaitchenko1 T.N., Celebrovskyi2 I.V., Shyrigin2 Y.A.
COMPUTER MODELLING TECHNOLOGY ON THE BASIS OF COMPONENTAL CIRCUITS METHOD FOR SCIENTIFIC RESEARCHES AND EDUCATIONAL PROCESS TASKS
62
2.12 Åðìèøÿí À.Ã.
ÎÑÍÎÂÍÛÅ ÏÓÒÈ ÏÎÑÒÐÎÅÍÈß ÒÅÎÐÈÈ ÐÀÇÂÅÄÊÈ ÐÀÊÅÒÍÛÕ ÂÎÉÑÊ È ÀÐÒÈËËÅÐÈÈ È ÃËÀÂÍÛÅ ÍÀÏÐÀÂËÅÍÈß ÈÕ ÐÅÀËÈÇÀÖÈÈ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
A. Ermishyan
PRIMARY TRACTS CONSTRUCTION OF A THEORY RECONNAISSANCE ROCKET TROOPS AND ARTILLERY AND THEN MAIN DIRECTION THEIRS REALIZATION
64
2.13 Çîëîòàðåâ Â.Â., Çàáëîöêàÿ Í.Ñ.
ÏÎÈÑÊ ÓÑËÎÂÍÎ ÎÏÒÈÌÀËÜÍÎÃÎ ÐÅØÅÍÈß Â ÇÀÄÀ×Å ÓÏÐÀÂËÅÍÈß ÈÍÔÎÐÌÀÖÈÎÍÍÛÌÈ ÐÈÑÊÀÌÈ . . . . . . . . . . . . . . . . . . . . . . . . .
65
2.14 Èâàíîâ Ì.È.
ÏÐÈÌÅÍÅÍÈÅ ÄÈÀÃÐÀÌÌ ÎÑÎÁÅÍÍÎÑÒÅÉ ÏÐÈ ÐÀÇÐÀÁÎÒÊÅ ÑÈÑÒÅÌ ÝËÅÊÒÐÎÍÍÎÉ ÊÎÌÌÅÐÖÈÈ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Ivanovs M.
THE APPLICATION OF FEATURE DIAGRAMS IN THE DEVELOPMENT OF ELECTRONIC COMMERCE SYSTEMS
66
2.15 Èâàíîâ Ñ.Ñ.
ÎÁ ÎÖÅÍÊÅ ÈÍÂÅÑÒÈÖÈÎÍÍÎÃÎ ÏÐÎÅÊÒÀ ÌÅÒÎÄÀÌÈ Í –ÌÎÄÅËÅÉ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
68
2.16 Êîíäðàêîâ È.À., Ïîñïåëîâà Ë.ß., Øàíàíèí À.À.
ÊÎÌÏÜÞÒÅÐÍÀß ÒÅÕÍÎËÎÃÈß ÈÑÑËÅÄÎÂÀÍÈß ÏÎÒÐÅÁÈÒÅËÜ-ÑÊÎÃÎ ÑÏÐÎÑÀ Ñ ÏÎÌÎÙÜÞ ÎÁÎÁÙÅÍÍÎÃÎ ÍÅÏÀÐÀÌÅÒÐÈ×Å-ÑÊÎÃÎ ÌÅÒÎÄÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Kondrakov I.A., Pospelova L.Ya., Shananin A.A.
COMPUTER TECHNOLOGY OF RESEARCH OF THE CONSUMER
DEMAND BY MEANS OF THE GENERALIZED NONPARAMETRIC METHOD
69
2.17 Êîñòèí Ã.À. Æèòíûé Ì.Â.
ÏÐÎÃÐÅÑÑ È ÐÀÇÐÀÁÎÒÊÀ ÁÎÅÏÐÈÏÀÑÎÂ . . . . . . . . . . . . . . . . . . . . . . . . .
G. Kostin M. Zhitnyy
PROGRESS AND DEVELOPMENT OF AMMUNITIONS
71
2.18 Êóðëîâ Â.Â., Êàðïîâè÷ À.Â.
ÏÅÐÑÏÅÊÒÈÂÛ ÐÀÇÂÈÒÈß ÀÐÒÈËËÅÐÈÉÑÊÎÃÎ ÂÛÑÎÊÎÒÎ×ÍÎÃÎ ÎÐÓÆÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
A. Karpovich V. Kurlov
HIGH-PRECISION ARTILLERY WEAPON: PROSPECT OF DEVELOPMENT
73
2.19 Êîãàé À.Ð.
ÏÐÈÌÅÍÅÍÈÅ ÀÑÏÅÊÒÍÎ-ÎÐÈÅÍÒÈÐÎÂÀÍÍÎÃÎ ÏÐÎÃÐÀÌÌÈÐÎÂÀÍÈß ÄËß ÏÎÄÄÅÐÆÊÈ ÒÅÕÍÎËÎÃÈÈ DESIGN-BY-CONTRACT . . . .
74
2.20 Êîñòîãëîòîâ À.À., Ëàçàðåíêî Ñ.Â.
ÎÏÒÈÌÀËÜÍÀß ÊÎÐÐÅÊÖÈß ÄÈÍÀÌÈ×ÅÑÊÎÉ ÏÎÃÐÅØÍÎÑÒÈ ÓÑÒÐÎÉÑÒ ÏÐÅÎÁÐÀÇÎÂÀÍÈß ÈÇÌÅÐÈÒÅËÜÍÎÉ ÈÍÔÎÐÌÀÖÈÈ ÍÀ ÎÑÍÎÂÅ ÍÅÃËÀÄÊÎÃÎ ÀÍÀËÈÇÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Kostoglotov A.A., Lazarenko S.V.
OPTIMUM CORRECTION OF A DYNAMIC ERROR OF DEVICES OF TRANSFORMATION OF THE MEASURING INFORMATION ON THE BA-SIS OF THE NON-SMOOTH ANALYSIS
75
2.21 Êîñòîãëîòîâ À.À., Ëàçàðåíêî Ñ.Â.
ÍÅÃËÀÄÊÈÉ ÀÍÀËÈÇ Â ÇÀÄÀ×Å ÑÈÍÒÅÇÀ ÑËÅÄßÙÈÕ ÈÇÌŬÐÈÒÅËÅÉ ÐÀÄÈÎËÎÊÀÖÈÎÍÍÛÕ ÑÒÀÍÖÈÉ . . . . . . . . . . . . . . . . . . . . . . .
Kostoglotov A.A., Lazarenko S.V.
THE NON-SMOOTH ANALYSIS IN A PROBLEM OF SYNTHESIS OF WATCHING MEASURING INSTRUMENTS OF RADAR STATIONS
79
2.22 Ëóïàíîâ Ñ.Â1., Ìàêàðîâ Â.Â.2
ÏÐÎÅÊÒÈÐÎÂÀÍÈÅ ÑÈÑÒÅÌÛ ÇÀÙÈÒÛ ÊÎÌÏÜÞÒÅÐÀ – ÀËÜÒÅЬÍÀÒÈÂÍÛÉ ÏÎÄÕÎÄ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Lupanov S.V., Makarov V.V.
COMPUTER PROTECTION SYSTEM DESIGN – ALTERNATIVE AP-PROACH
82
2.23 Ìàìàòêóëîâ Î.À., Àðòèêîâ À.
ÊÎÌÏÜÞÒÅÐÍÀß ÌÎÄÅËÜ ÏÐÎÖÅÑÑÀ ÄÅÑÎÐÁÖÈÈ ÆÈÐÍÛÕ ÊÈ-ÑËÎÒ ÕËÎÏÊÎÂÎÃÎ ÌÀÑËÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
83
2.24 Ìàðãàðîâ Ã.È., Ìàðêàðîâ Â.Ã.
ÏÐÎÅÊÒÈÐÎÂÀÍÈÅ ÑÒÅÃÀÍÎÃÐÀÔÈ×ÅÑÊÈÕ ÑÈÑÒÅÌ Ñ ÐÅÊÎÍÔÈ-ÃÓÐÈÐÓÅÌÎÉ ÑÒÐÓÊÒÓÐÎÉ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Margarov G.I., Markarov V.G.
DESIGNING OF STEGANOGRAPHIC SYSTEMS WITH RECONFIGUR-ABLE STRUCTURE
85
2.25 Ìàòîðèí Ñ.È., Òðóáèöèí Ñ.Í., Çèìîâåö Î.À.
ÊÎÌÏÜÞÒÅÐÍÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÑÅÐÂÈÑÍÎÃÎ ÎÁÑËÓÆÈÂÀ-ÍÈß ÒÅËÅÐÀÄÈÎÑÅÒÈ Ñ ÏÎÌÎÙÜÞ ÑÈÑÒÅÌÍÎ-ÎÁÚÅÊÒÍÎÃÎ ÏÎÄÕÎÄÀ «ÓÇÅË-ÔÓÍÊÖÈß-ÎÁÚÅÊÒ» . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Matorin S.I., Trubitsin S.N., Zimovets O.A.
COMPUTER MODELING OF SERVICING OF TELEVISION AND RADIO NETWORK WITH THE AID OF SYSTEM-OBJECTIVE APPROACH «UNIT – FUNCTION – OBJECT»
87
2.26 Ìîæàåâ Î.À.
ÌÎÄÅËÜ ÔÓÍÊÖÈÎÍÈÐÎÂÀÍÈß ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÛÕ ÑÈÑÒÅÌ ÌÅÍÅÄÆÌÅÍÒÀ ÊÀ×ÅÑÒÂÀ ÏÐÅÄÏÐÈßÒÈß ÎÁÎÐÎÍÍÎ-ÏÐάÌÛØ¬ËÅÍÍÎÃÎ ÊÎÌÏËÅÊÑÀ  ÓÑËÎÂÈßÕ ÍÅÑÀÍÊÖÈÎÍÈÐÎÂÀÍÍÎÃÎ ÂÎÇÄÅÉÑÒÂÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
88
2.27 Ìóëþêîâ Ð.Ð.
ÐÀÇÐÀÁÎÒÊÀ ÝËÅÊÒÐÎÍÍÛÕ ÑÏÐÀÂÎ×ÍÈÊΠÈÍÔÎÐÌÀÖÈÎÍÍÎÉ ÑÈÑÒÅÌÛ «ÝÊÎËÎÃÈ×ÅÑÊÀß ÁÅÇÎÏÀÑÍÎÑÒÜ ÒÅÐÐÈÒÎÐÈÈ» . . . . . . .
Mulyukov R.R.
ELABORATION OF ELECTRONIC DIRECTORIES OF INFORMATION SYSTEM "ECOLOGICAL SAFETY OF TERRITORY"
90
2.28 Íèçàð Àëü Õàìèä
ÊÎÍÖÅÏÖÈß ÐÀÄÈÎ×ÀÑÒÎÒÍÎÉ ÑËÓÆÁÛ . . . . . . . . . . . . . . . . . . . . . . . .
91
2.29 Íèçàð Àëü Õàìèä
ÌÅÒÎÄÈÊÀ ÎÁÎÑÍÎÂÀÍÍÎÃÎ ÂÛÁÎÐÀ È ÐÀÑ×ÅÒÀ ÏÎÊÀÇÀÒÅËÅÉ, ÍÀÈËÓרÈÌ ÎÁÐÀÇÎÌ ÕÀÐÀÊÒÅÐÈÇÓÞÙÈÕ ÊÀ×ÅÑÒÂÎ ÝÌÑ ÐÝÑ .
94
2.30 Íèçàð Àëü Õàìèä, Ëèïàòíèêîâ Â.À.
ÌÎÄÅËÜ ÝËÅÊÒÐÎÌÀÃÍÈÒÍÎÉ ÑÎÂÌÅÑÒÈÌÎÑÒÈ ÐÀÄÈάÝËÅÊÒ¬ÐÎÍÍÛÕ ÑÐÅÄÑÒ Ó×ÈÒÛÂÀÞÙÅÉ ÎÑÎÁÅÍÍÎÑÒÈ ÕÀÐÀÊÒÅÐÈ-ÑÒÈÊ ÏÅÐÑÏÅÊÒÈÂÍÛÕ ÐÀÄÈÎÝËÅÊÒÐÎÍÍÛÕ ÑÐÅÄÑÒÂ È ÈÕ ÏÀ-ÐÀÌÅÒÐΠ. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
96
2.31 Íèçàð Àëü Õàìèä
ÍÀÓ×ÍÎ – ÒÅÕÍÈ×ÅÑÊÈÅ ÏÐÅÄËÎÆÅÍÈß ÏÎ ÐÅØÅÍÈÞ ÇÀÄÀ×È ÝËÅÊÒÐÎÌÀÃÍÈÒÍÎÉ ÑÎÂÌÅÑÒÈÌÎÑÒÈ ÐÀÄÈÎÝËÅÊÒÐÎÍÍÛÕ ÑÐÅÄÑÒ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
99
2.32 Ïðîõîðîâ Ñ.À., Ôåäîñååâ À.À., Äåíèñîâ Â.Ô., Èâàùåíêî À.Â.
ÑÎÇÄÀÍÈÅ ÏÐÎÔÈËß ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÎÉ ÑÈÑÒÅÌÛ ÓÏÐÀ¬ËÅÍÈß ÊÎÌÏËÅÊÑÍÎÉ ÁÅÇÎÏÀÑÍÎÑÒÜÞ ÌÀØÈÍÎÑÒÐÎÈÒÅËÜ-ÍÎÃÎ ÏÐÅÄÏÐÈßÒÈß . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Prohorov S.A., Fedoseev A.A., Denisov V.F., Ivaschenko A.V.
AUTOMATED SYSTEM PROFILE OF MANUFACTURING ENTERPRISE COMPLEX SECURITY MANAGEMENT
101
2.33 Ðèáèöêèñ Ë., Ëåâ÷åíêîâ À., Ìîð-ßðîñëàâöåâ À.
ÑÒÐÓÊÒÓÐÀ ÁÀÇÛ ÄÀÍÍÛÕ ÄËß ÇÀÄÀ×È ÌÎÄÅËÈÐÎÂÀÍÈß ÒÐÀͬÑÏÎÐÒÍÛÕ ÇÀÒÎÐΠ. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
103
2.34 Ñèíèöûí Ñ.Â., Õëûò÷èåâ Î.È.
ÏÎÑÒÐÎÅÍÈÅ ÎÑÍÎÂÍÛÕ ÈÍÔÎÐÌÀÖÈÎÍÍÛÕ ÎÁÚÅÊÒÎÂ ÑÈÑ-ÒÅÌÛ ÀÂÒÎÌÀÒÈÇÀÖÈÈ ÍÀ ÎÑÍÎÂÅ ÁÈÇÍÅÑ ÏÐÎÖÅÑÑÎÂ . . . . . . . .
Sinitzyn S.V. Khlytchiev O.I.
DEFINITION OF AUTOMATION SYSTEM MAIN INFORMATION OBJECTS BASED ON BUSINES PROCESSES
103
2.35 Óòåøåâ È.È., Áàëöêàðñ Ï.ß., Ëåâ÷åíêîâ À.Ñ.
ÌÎÄÅÌÈÐÎÂÀÍÈÅ ÍÅÉÐÎÍÍÎÃÎ ÊÎÍÒÐÎËËÅÐÀ ÄËß ÝÊÑÒÐŬÌÀËÜÍÎÃÎ ÒÎÐÌÎÆÅÍÈß ÏÎÅÇÄÀ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Utesev I., Balckars P., Levchenkov A.
MODELLING OF NEURAL CONTROLLER FOR ELECTRIC TRAIN EXTEREMAL BRAKE
105
2.36 Õðóñòàëåâ À.Á.
ÑÎÁÑÒÂÅÍÍÛÅ ÊÎËÅÁÀÍÈß ËÓÍÛ: ÀËÃÎÐÈÒÌÛ È ÏÐÎÃÐÀÌÌÍÎÅ ÎÁÅÑÏÅ×ÅÍÈÅ ÄËß ÄÀÍÍÛÕ ÊÀÒÀËÎÃÀ ÍÀÊÀÌÓÐÛ . . . . . . . . . . . . . .
106
2.37 ×îïóðÿí Ñ. Ã.
KÐÈÏÒÎÀÍÀËÈÇ ÀÑÈÌÌÅÒÐÈ×ÍÛÕ ÊÐÈÏÒÎÑÎÑÒÅÌ ÍÀ ÁÀÇÅ ÊÎ-ÍÅ×ÍÛÕ ÀÂÒÎÌÀÒΠ. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Chopuryan S. H.
CRYPTOANALYSIS OF PUBLIC KEY CRYPTOSYSTEM BASED
ON FINITE AUTOMATA 108
3. ÃËÀÂÀ 3. ÒÅÎÐÅÒÈ×ÅÑÊÀß È ÏÐÈÊËÀÄÍÀß ÔÈÇÈÊÀ, ÐÀÄÈÎÔÈÇÈÊÀ, ÔÈÇÈÊÀ È ÒÅÕÍÈÊÀ ÝËÅÊÒÐÈ×ÅÑÊÈÕ ÐÀÇÐßÄÎÂ, ËÀÇÅÐÍÛÕ, ÏËÀÇÌÅÍÍÛÕ È ÍÀÍÎÒÅÕÍÎËÎÃÈÉ, ÕÈÌÈß, ÔÈÇÕÈÌÈß, ÏÎÐÎØÊÎÂÀß ÌÅÒÀËËÓÐÃÈß, ÌÀÒÅÐÈÀËÎÂÅÄÅÍÈÅ, ÊÎÌÏÎÇÈÖÈÎÍÍÛÅ ÌÀÒÅÐÈÀËÛ È ÓÏÐÎ×ÍßÞÙÈÅ ÒÅÕÍÎËÎÃÈÈ
Àíàíüåâà Å.Ñ., Õâîñòîâ Ñ.À., Ïîëóêååâà Ë.Ã., Èøêîâ À.Â.
ÌÎÄÈÔÈÊÀÖÈß ÝÏÎÊÑÈÄÍÛÕ È ÀÌÈÍÎÈÌÈÄÍÛÕ ÑÂßÇÓÞÙÈÕ ÓËÜÒÐÀÄÈÑÏÅÐÑÍÛÌÈ ×ÀÑÒÈÖÀÌÈ
Ananjeva E.S., Khvostov S.A., Polukeeva L.G., Ischkov A.V.
MODIFICATION EPOXI- AND AMINOIMIDES RESINS ON NANOPARTICLES 110
3.2 Àðáóçîâ À.À., Íèãìàòóëëèí Ð.Ð.
ÔÐÀÊÒÀËÜÍÛÅ ÌÎÄÅËÈ ÝËÅÊÒÐÎÕÈÌÈ×ÅÑÊÈÕ ÏÐÎÖÅÑÑΠ.
Arbuzov A.A., Nigmatullin R.R.
FRACTAL MODELS OF ELECTROCHEMICAL PROCESSES 113
3.3 Áàëäèí À. À., Áàëäèíà Ý. Ã.
ÈÑÑËÅÄÎÂÀÍÈÅ ÏÐÎÑÒÐÀÍÑÒÂÅÍÍÎ-ÂÐÅÌÅÍÍÛÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÏÓ×ÊÀ ÈÎÍΠÓÑÊÎÐÈÒÅËÜÍÎÃÎ ÊÎÌÏËÅÊÑÀ "ÀËÜÔÀ" ÇÀÎ «ÒÐÅÊÏÎÐ ÒÅÕÍÎËÎÄÆÈ» Ñ ÈÑÏÎËÜÇÎÂÀÍÈÅÌ ÍÎÂÎÉ ÑÈÑÒÅÌÛ ÄÈÍÀÌÈ×ÅÑÊÎÉ ÄÈÀÃÍÎÑÒÈÊÈ .
Baldin A.A., Baldina E.G.,
INVESTIGATION OF SPACE-TIME CHARACTERISTICS OF ION BEAM OF ACCELERATOR COMPLEX "ALPHA" (JSC «TRACKPORE TECHNOL-OGY») USING THE NEW DYNAMIC DIAGNOSTICS SYSTEM 115
3.4 Áàëäèíà Ý. Ã., Áàëäèí À. À.
ÌÀÒÅÌÀÒÈ×ÅÑÊÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÂËÈßÍÈß ÏÐÎÑÒÐÀÍÑÒÂÅÍÍÎ-ÂÐÅÌÅÍÍÎÉ ÑÒÐÓÊÒÓÐÛ ÏÓ×ÊÀ ÈÎÍΠÍÀ ÐÀÂÍÎÌÅÐ-ÍÎÑÒÜ ÎÁËÓ×ÅÍÈß ÏËÅÍÊÈ ÄËß ÈÇÃÎÒÎÂËÅÍÈß ÒÐÅÊÎÂÛÕ ÌÅÌÁÐÀÍ
Baldina E.G., Baldin A.A.
MATHEMATICAL SIMULATION OF THE INFLUENCE OF SPACE-TIME STRUCTURE OF ION BEAM ON FILM IRRADIATION UNIFORMITY FOR TRACK MEMBRANES PRODUCTION 119
3.5 Áàòðàê Â.Â., Âåðåìåé÷èê À.È., Ñàçîíîâ Ì.È., Õâèñåâè÷ Â.Ì.
ÏËÀÇÌÅÍÍÀß ÓÑÒÀÍÎÂÊÀ ÄËß ÏÎÂÅÐÕÍÎÑÒÍÎÃÎ ÓÏÐÎ×ÍÅÍÈß ÌÅÒÀËËÎÂ È ÅÅ ÏÐÈÌÅÍÅÍÈÅ
Batrak V.V., Veremeichik A.I., Sazonov M.I., Khvisevitch V.M.
PLASMA INSTALLATION FOR SUPERFICIAL HARDENING METALS AND ITS APPLICATION 124
3.6 Áåäåíêî Ä.Â., Êîâàëåâ Î.Á., Êðèâöóí È.Â.
ÌÎÄÅËÈÐÎÂÀÍÈÅ ÏÐÎÖÅÑÑÎÂ ÈÑÏÀÐÅÍÈß, ÊÎÍÄÅÍÑÀÖÈÈ È ÃÀ-ÇÎÄÈÍÀÌÈÊÈ ÏÀÐÀ, ÎÁÐÀÇÎÂÀÍÈÅ È ÐÀÑÏÐÎÑÒÐÀÍÅÍÈÅ ÏËÀÇ-ÌÛ Â ÏÀÐÎÃÀÇÎÂÎÌ ÊÀÍÀËÅ ÏÐÈ ËÀÇÅÐÍÎÉ ÑÂÀÐÊÅ ÀËÞÌÈÍÈß
Bedenko D.V., Kovalev O.B., Krivtsun I.V.
SIMULATION OF PROCESSES OF VAPORIZATION, CONDENSATION AND GASDYNAMIC OF VAPOR, FORMATION AND PROPAGATION OF PLASMA IN GAS-VAPOR CHANNEL AT THE LASER WELDING 125
3.7 Áåðåæíîé È.Ñ., Þð÷åíêî À.Â., Íãóåí Õ.×.
ÈÇÌÅÐÅÍÈÅ ÂÐÅÌÅÍÈ ÆÈÇÍÈ Â ÍÈÇÊÎÎÌÍÛÕ ÏÎËȬÊÐÈѬÒÀˬËÀÕ ÊÐÅÌÍÈß ÍÀ ÑÂ× 129
3.8 Áóðöåâà Ë.Á., Ðåäüêî Â.Â., Ô¸äîðîâ Å.Ì., ßêèìîâ Å.Â.
ÑÎÑÒÎßÍÈÅ Â ÐÎÑÑÈÈ ÂÎÏÐÎÑÀ Î ÄÈÍÀÌÈ×ÅÑÊÈÕ ÈÑÏÛ¬ÒÀ¬ÍÈßÕ ÈÇÎËßÖÈÈ ÊÀÁÅËÅÉ ÂÛÑÎÊÈÌ ÏÎÑÒÎßÍÍÛÌ ÍÀÏÐ߯ÅÍÈÅÌ.
Burtzeva L., Redko V., Fyodorov E., Yakimov E.
STATION IN RUSSIA TESTING OF INSULATION OF CABLE OF HIGN DI-RECT VOLTAGE 130
3.9 Áîãàòûðåâà Â. Â.
ÈÇÌÅÐÈÒÅËÜ ÓÃËÎÂÎÉ ÑÊÎÐÎÑÒÈ ÂÐÀÙÅÍÈß ÍÀ ÁÀÇÅ ÏÎÇÈÖÈÎÍÍÎ-×ÓÂÑÒÂÈÒÅËÜÍÎÃÎ ÔÎÒÎÏÐÈÅÌÍÈÊÀ ÌÓËÜÒÈÑÊÀÍÀ . .
Bogatyreva V.V.
MEASURING DEVICE OF ANGULAR VELOCITY OF ROTATION BASED-ON POSITION-SENSITIVE PHOTODETECTOR 132
3.10 Áîñÿêîâ Ñ.Ì., Âåðåìåé÷èê À.È., Ñàçîíîâ Ì.È., Õâèñåâè÷ Â.Ì.,
Þðêåâè÷ Ê.Ñ.
ÊÎÌÏÜÞÒÅÐÍÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÒÅÏËÎÂÛÕ ÏÐÎÖÅÑÑÎÂ, ÏÐάÈÑÕÎÄßÙÈÕ Â ÑÒÀËÜÍÛÕ ÄÅÒÀËßÕ ÏÐÈ ÏËÀÇÌÅÍÍÎÌ
ÓÏÐÎ×ÍÅÍÈÈ
Bosjakov S.M., Veremejchik A.I., Sazonov M.I., Hvisevich V.M., Jurkevich K.S.
COMPUTER MODELLING OF THE THERMAL PROCESSES OCCURING IN STEEL DETAILS AT PLASMA HARDENING 133
3.11 Áóòêîâñêèé À.Ã., Êóáûøêèí Â.À., Ñóõîâåðîâ Â.Ñ.
ÌÅÒÎÄÛ, ÀËÃÎÐÈÒÌÛ, ÌÎÄÅËÈ È ÒÅÕÍÈ×ÅÑÊÈÅ ÑÐÅÄÑÒÂÀ ÓÏÐÀÂËÅÍÈß ÏÎÄÂÈÆÍÛÌÈ ÈÑÒÎ×ÍÈÊÀÌÈ ÂÎÇÄÅÉÑÒÂÈß
Butkovskiy A.G., Kubyshkin V.A., Suhoverov V.S.
METHODS, MODELS AND APPARATUS FOR MOVABLE SOURCES OF ACTION CONTROL 134
3.12 Áûêîâà Â.Â., Óñîëüöåâà Í.Â., Àíàíüåâà Ã.À., Áðàãèíà Í.À., Íîâèêîâ Í.Â., Ìèðîíîâ À.Ô.
ÌÅÇÎÌÎÐÔÍÛÅ ÑÂÎÉÑÒÂÀ ÌÅÒÀËËÎÊÎÌÏËÅÊÑÎÂ ÊÀÒÈÎÍÍÛÕ ÂÎÄÎÐÀÑÒÂÎÐÈÌÛÕ ÌÅÇÎ-ÇÀÌÅÙÅÍÍÛÕ ÒÅÒÐÀÔÅÍÈËÏÎÐÔÈÍÎÂ
Bykova V.V., Usol’tseva N.V., Ananjeva G.A., Bragina N.A., Novikov N.V., Mironov A.F.
MESOMORPHIC PROPERTIES OF METAL COMPLEXES OF CATION
WATER-SOLUBLE meso-SUBSTITUTED TETRAPHENYLPORPHINES 136
3.13 Âàñèí È.À., Ìîë÷àíîâ À.Â., ×èðêèí Ì.Â.
ÌÎÄÅËÈÐÎÂÀÍÈÅ ÊÎËÜÖÅÂÛÕ ÐÅÇÎÍÀÒÎÐΠËÀÇÅÐÍÛÕ ÃÈÐάÑÊÎÏÎÂ
I.A. Vasin, A. V. Molchanov, M. V. Chirkin
MODELLING OF THE RING CAVITIES FOR LASER GYROS 137
3.14 Âåðåìåé÷èê À.È.
ÈÑÑËÅÄÎÂÀÍÈÅ ÍÀÏÐ߯ÅÍÍÎ-ÄÅÔÎÐÌÈÐÎÂÀÍÍÎÃÎ ÑÎÑÒÎ߬ÍÈß ÑÒÀËÜÍÎÉ ÏÐßÌÎÓÃÎËÜÍÎÉ ÏËÀÑÒÈÍÊÈ Ñ ÎÒÂÅÐÑÒÈÅÌ ÏÐÈ ÏÎÂÅÐÕÍÎÑÒÍÎÉ ÏËÀÇÌÅÍÍÎÉ ÇÀÊÀËÊÅ .
Veremeichik A.I.
RESEARCH OF THE IS INTENSE-DEFORMED CONDITION OF THE STEEL RECTANGULAR PLATE WITH THE APERTURE AT SUPERFICIAL PLASMA TRAINING 138
3.15 Âåðåìåé÷èê À.È., Ñàçîíîâ Ì.È., Õâèñåâè÷ Â.Ì.
×ÈÑËÅÍÍÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÐÀÑÏÐÅÄÅËÅÍÈß ÒÅÌÏÅÐÀÒÓÐÍÛÕ ÏÎËÅÉ Â ÒÅËÀÕ ÏÐÈ ÂÎÇÄÅÉÑÒÂÈÈ ÂÛÑάÊάÊÎͬÖÅÍÒ¬ÐÈÐÎÂÀÍÍÎÃÎ ÈÑÒÎ×ÍÈÊÀ ÍÀÃÐÅÂÀ
Veremeichik A.I., Sazonov M.I., Khvisevitch V.M.
NUMERICAL MODELLING OF DISTRIBUTION OF TEMPERATURE FIELDS IN BODIES AT INFLUENCE HIGH-CONCENTRATED OF THE SOURCE OF HEATING 140
3.16 Âëàñîâ À.Á.
ÒÅÐÌÎÃÐÀÔÈ×ÅÑÊÀß ÄÈÀÃÍÎÑÒÈÊÀ ÊÀÊ ÑÎÏÐÎÂÎÆÄÅÍÈÅ ÎÁÚÅÊÒΠÂÛÑÎÊÈÕ ÒÅÕÍÎËÎÃÈÉ
Vlasov A.B.
IR THERMOGRAPHY AS ACCOMPANIMENT OBJECT HIGH TECHNOLOGY 141
3.17 Ãàâðèêîâ Ì.Á., Øìàðîâîç Ã.Â.
ÌÅÕÀÍÈÇÌ ÝËÅÊÒÐÎÌÀÃÍÈÒÍÎÃÎ ÓÑÊÎÐÅÍÈß ÏËÀÇÌÛ Â ÏËÎѬÊÎÌ ÊÀÍÀËÅ .
Gavrikov M.B., Shmarovoz G.V.
MECHANISM OF PLASMA’S ELECTROMAGNETIC ACCELERATON IN FLAT CHANNEL 142
3.18 Äîëîìàòîâ Ì. Þ., ßðìóõàìåòîâà Ã.Ó.
ÊÎÐÐÅËßÖÈÈ ÖÂÅÒ – ÑÂÎÉÑÒÂÀ. ÈÑÑËÅÄÎÂÀÍÈÅ È ÏÐÀʬÒȬ×ŬÑÊÎÅ ÏÐÈËÎÆÅÍÈÅ Â ÏÅÐÅÐÀÁÎÒÊÅ ÓÃËÅÂÎÄÎÐÎÄÍÎÃÎ ÑÛÐÜß . . 144
3.19 Äîðoøåíêo Ð. Â., Ïðèìàíèñ Ý. Ò., Òîðèìñ Ò. Ð., Õîëîäîâ Á. Ô.
ÓÏÐÎ×ÍÅÍÈÅ ÏÎÂÅÐÕÍÎÑÒÍÎÃÎ ÑËÎß .
Doroshenko R., Primanis E., Torims T., Holodov B.
SURFACE LAYER STRENGTHENING 147
3.20 Åìåëüÿíîâ Þ.Â., Ìàíîøêèí Â.Â., Êîçëîâ Â.À.
ÎÏÒÈÌÈÇÀÖÈß ÒÅÕÍÈÊÎ-ÒÅÕÍÎËÎÃÈ×ÅÑÊÈÕ ÓÑËÎÂÈÉ ËÅǬÂÈÉÍÎÉ ÎÁÐÀÁÎÒÊÈ ÌÀÒÅÐÈÀËΠÐÅÆÓÙÈÌÈ ÈÍÑÒÐÓÌÅÍÒÀ-ÌÈ Ñ ÇÀÙÈÒÍÛÌÈ ÈÇÍÎÑÎÑÒÎÉÊÈÌÈ ÏÎÊÐÛÒÈßÌÈ, ÍÀÍÅÑÅÍ-ÍÛÌÈ Ñ ÈÑÏÎËÜÇÎÂÀÍÈÅÌ ÑÎÂÐÅÌÅÍÍÛÕ ÍÀÍÎÒÅÕÍÎËÎÃÈÉ . .
Emelyanov J.V., Manoshkin V.V., Kozlov V.A.
OPTIMIZATION OF TECHNICAL AND ENGINEERING CONDITIONS FOR MATERIAL CUTTING WITH USING TOOLS WITH WEAR-PROOF LAYER SURFACING BY NANOTECHNOLOGY TECHNIQUE 151
3.21 Åðìèøÿí À.Ã.
ÏÐÈÍÖÈÏÈÀËÜÍÀß ÂÅÐÁÀËÜÍÀß ÌÎÄÅËÜ ÏÎÑÒÐÎÅÍÈß È ÄÅÉÑÒ-ÂÈÉ ÎÐÃÀÍÈÇÀÖÈÎÍÍÎ-ÒÅÕÍÈ×ÅÑÊÎÉ ÑÈÑÒÅÌÛ ÓÏÐÀÂËÅÍÈß . .
A. Ermishyan
FUNDAMENTAL VERBAL MODEL CONSTRUCTION AND THEN OP-ERATION OF ORGANIZATION-TECHNICAL CONTROL SYSTEM 152
3.22 Åðêîâè÷ Î.Ñ., Ïûðëèí Ñ.Â.
ÐÀÇÌÅÐÍÀß ÇÀÂÈÑÈÌÎÑÒÜ ÝËÅÊÒÐÎÍÍÎÃÎ ÂÊËÀÄÀ  ÈÇÁÛÒÎ×-ÍÓÞ ÝÍÅÐÃÈÞ ÍÀÍÎ×ÀÑÒÈÖ ÌÅÒÀËËÎÂ È ÑÏËÀÂΠ.
Erkovich O.S., Pyrlin S.V.
DIMENTIONAL DEPENDENCE OF ELECTRON CONTRIBUTION IN EX-CESS ENERGY OF METAL AND ALLOY NANOPARTICALS 154
3.23 Æàðîâà Ì.À., Óíãàð Ã., ßáëîíñêèé Ñ.Â., Þäèí Ñ.Ã., Óñîëüöåâà Í.Â.
ÓÍÈÊÀËÜÍÛÅ ÊÐÈÑÒÀËËÈ×ÅÑÊÈÅ ÔÀÇÛ ÁÀÍÀÍÎÏÎÄÎÁÍÎÃÎ ÆÈÄÊÎÊÐÈÑÒÀËËÈ×ÅÑÊÎÃÎ ÑÎÅÄÈÍÅÍÈß .
Zharova M.A., Ungar G., Yablonsky S.V., Yudin S.G., Usol'tseva N.V.
UNIQUE CRYSTALLINE PHASES OF BANANA SHAPED LIQUID CRYS-TALLINE COMPOUND 155
3.24 Èãîíèí Í. Ã.
Ó×ÅÒ ÈÑÕÎÄÍÎÃÎ ÂËÀÃÎÑÎÄÅÐÆÀÍÈß Â ÌÎÄÅËÈ ÎÁÚÅÌÍÎÉ ÐÅËÀÊÑÀÖÈÈ 157
3.25 Êàäîøíèêîâ Â.È., Êóëèêîâ Ñ.Â., Êàäîøíèêîâà Ì.Â., Êóëèêîâà Å.Â.,
Êàäîøíèêîâà È.Ä, Çàéöåâ Ñ.Þ.
ÓÄÀÐÍÎ-ÔÐÈÊÖÈÎÍÍÛÉ ÑÏÎÑÎÁ ÍÀÍÅÑÅÍÈß ÏÎÊÐÛÒÈÉ ÍÀ ÑÒÀËÜÍÓÞ ÏÎÄËÎÆÊÓ 158
3.26 Êàëåòèíà Ì.Â., Áîãäàí÷èêîâ Ã.À., Êîðîë¸â Â.Â.
ÔÎÒÎÐÀÇËÎÆÅÍÈÅ 7,7´‑ÄÈÌÅÒÈË-7 ÃÅÐÌÀÍÎÐÁÎÐÍÀÄÈÅÍÀ  ÐÀÑÒ¬ÂÎÐÀÕ ÓÃËÅÂÎÄÎÐÎÄÎÂ
Kaletina M.V., Bogdanchikov G.A., Korolev V.V.
PHOTOCLEAVAGE OF 7,7` DIMETHYL-7 GERMANORBORNADIENE IN HYDROCARBON SOLUTION 160
3.27 Êàëèíèíà Ë.À., Óøàêîâà Þ.Í., Ôîìèíûõ Å.Ã.,
Ìåäâåäåâà Î.Â., Þðëîâ È.Ñ.
ÂËÈßÍÈÅ ÌÅÒÎÄÀ ÑÈÍÒÅÇÀ ÍÀ ÔÓÍÊÖÈÎÍÀËÜÍÛÅ ÑÂÎÉÑÒÂÀ MeLn2S4
Kalinina L.A. Ushakova Yu. N., Fominykh E.G., Medvedeva O.V., Yurlov I.S.
INFLUENCE OF METHOD OF SYNTHESES ON FUNCTIONAL CHARAC-TERISTIC OF MeLn2S4 162
3.28 Êàëèíèíà Ë.À., Áàéäåðèíà Ò.Â., Ôîìèíûõ Å.Ã., Óøàêîâà Þ.Í.,
Êëûíäþê À.È.
ÝËÅÊÒÐÎÕÈÌÈ×ÅÑÊÈÉ ÌÅÒÎÄ ÏÎËÓ×ÅÍÈß ÍÀÍÎÑËÎß ÑÅÐÎÑÎ-ÄÅÐÆÀÙÅÃÎ ÎÊÑÈÄÀ ÍÀ ÏÎÂÅÐÕÍÎÑÒÈ ÑËÎÈÑÒÎÃÎ ÏÅÐÎÂÑÊÈ-ÒÀ PrBaCuFeO5+X.
Kalinina L.A., Baiderina T.V., Fominykh E.G., Ushakova Yu. N.,
Klyndyuk A.I.
ELECTROCHEMICAL METHOD FOR SYNTHESIS OF NANOLAYER SUL-PHUR CONTAINING OXIDE ON THE SURFACES OF FLAKY PEROVSKITE PrBaCuFeO5+X 163
3.29 Êèðèëëîâà Î.Â., Ñîëîøåíêî Í.Ñ.
ÇÀÐÓÁÅÆÍÛÅ ÈÍÔÎÐÌÀÖÈÎÍÍÛÅ ÐÅÑÓÐÑÛ ÏÎ ÊÐÈÒÈ×ÅÑÊÎÉ ÒÅÕÍÎËÎÃÈÈ «ÊÎÌÏÎÇÈÖÈÎÍÍÛÅ È ÊÅÐÀÌÈ×ÅÑÊÈÅ ÌÀÒÅÐÈÀ-ËÛ»
Kirillova O., Soloshenko N.
WORLD INFORMATION RESOURCES ON COMPOSITIONS AND CERAM-ICS CRITICAL TECHNOLOGY 165
3.30 Êîçëîâà Î.Â., Òåëåãèí Ô.Þ.
ÐÀÇÐÀÁÎÒÊÀ ÍÎÂÛÕ ÊÎÌÏÎÇÈÖÈÎÍÍÛÕ ÒÅÊÑÒÈËÜÍÛÕ ÌÀÒŬÐÈÀËÎÂ Ñ ÔÓÍÊÖÈÎÍÀËÜÍÛÌÈ ÑÂÎÉÑÒÂÀÌÈ
Kozlova O.V., Telegin F.Y.
DEVELOPMENT OF NEW COMPOSITE TEXTILE MATERIALS WITH FUNCTIONAL CHARACTERISTICS 166
3.31 Êàêîøêî Å.Ñ., Äÿòëîâà Å.Ì., , Êîëîíòàåâà Ò.Â.
ÂÛÑÎÊÎÐÀÑØÈÐßÞÙÀßÑß ÊÅÐÀÌÈÊÀ ÄËß ÑÏÀÅÂ Ñ ÝËÅÊÒÐÎÄ-ÍÛÌÈ ÑÒÅÊËÀÌÈ
Kakoshko E.S., Djatlova E.M., Kolontaeva T.V.
THE HIGHLY EXTENDING CERAMICS FOR SOLDERED JOINTS WITH ELECTRODE GLASSES 167
3.32 Ëîãèíîâ Í.À., Îëåéíèêîâà Â.À.
ÐÀÑ×ÅÒ ÂÇÀÈÌÎÄÅÉÑÒÂÈß ÐÅÀÊÖÈÉ CUCL2 È CUCL Ñ ZR, HF, NB, BE, NI, W È PU  ÐÀÑÏËÀÂËÅÍÍÎÉ ÝÊÂÈÌÎËÜÍÎÉ ÑÌÅÑÈ
NACL-KCL
Oleynikova V.A., Loginov N.A.
THE CALCULATION OF THE REACTION OF INTERACTION OF CUCL2, CUCL WITH ZR, HF, NB, BE, NI, W, PU IN FUSED EQUIMOLAR
NACL-KCL 169
3.33 Ëîãèíîâ Í.À., Îëåéíèêîâà Â.À.
ÐÀÑ×ÅÒ ÓÑËÎÂÍÛÕ ÊÎÍÑÒÀÍÒ ÐÀÂÍÎÂÅÑÈß ÐÅÀÊÖÈÉ HFCL2
È TICL3 Ñ ÁÅÐÈËËÈÅÌ Â ÐÀÑÏËÀÂÀÕ ÕËÎÐÈÄΠÙÅËÎ×ÍÛÕ ÌÅ-ÒÀËËÎÂ
Loginov N.A., Oleynikova V.A.
THE CALCULATION OF THE FORMAL EQUILIBRIUM CONSTANTS OF THE REACTIONS OF HFCL2 AND TICL3 IN FUSED ALKALI METAL CHLORIDES CONTAINING BERYLLIUM 170
3.34 Ìàñëîáîåâà Ñ.Ì., Äóáîøèí Ã.Í.
ÑÎÂÅÐØÅÍÑÒÂÎÂÀÍÈÅ ÒÅÕÍÎËÎÃÈÈ ÏÎËÓ×ÅÍÈß ÃÅÏÒÀÔÒÎÐÎÒÀÍÒÀËÀÒÀ ÊÀËÈß
Masloboeva S.M., Duboshin G.N.
TECHNOLOGICAL DEVELOPMENT PRODUCTION OF POTASSIUM HEP-TAFLUOROTANTALATE 172
3.35 Ìåëüíèêîâ Î.Í.
ÑÀÌÎÎÐÃÀÍÈÇÀÖÈß ÏÐÎÑÒÐÀÍÑÒÂÅÍÍÎ-ÏÅÐÈÎÄÈ×ÅÑÊÈÕ ÑÒÐÓÊÒÓÐ Â ÌÈÊÐÎÌÀÃÍÈÒÍÛÕ Ï˨ÍÊÀÕ 173
3.36 Íåìèðîâè÷-Äàí÷åíêî Ë.Þ.
ÌÅÒÎÄÛ ÐÀÑ×ÅÒÀ ÝÍÅÐÃÈÈ ÎÁÐÀÇÎÂÀÍÈß ÌÎÍÎÂÀÊÀÍÑÈÈ
 ÌÅÄÈ È ÍÈÊÅËÅ .
Nemirovich-Danchenko L.Yu.
METHODS OF CALCULATION ENERGY FORMATION MONOVACANCY IN COPPER AND NICKEL 175
3.37 Îíàíêî À.Ï., Îíàíêî Þ.À.
ÓÏÐÓÃÎ-ÍÅÓÏÐÓÃÈÅ ÑÂÎÉÑÒÂÀ ÑÏËÀÂÀ Ti0.5Al0.5 È SiO2 176
3.38 Ïîëåæàåâà Í.È.
ÍÎÂÛÅ ÊÎÌÏÎÇÈÖÈÎÍÍÛÅ ÌÀÒÅÐÈÀËÛ Ñ ÈÑÏÎËÜÇÎÂÀÍÈÅÌ ÏÐÎÄÓÊÒÀ ÏÅÐÅÐÀÁÎÒÊÈ ÊÎÐÛ ÁÅÐÅÇÛ – ÁÅÒÓËÈÍÀ 177
3.39 Ïîòàïîâ À.À.
ÍÅÎÊËÀÑÑÈ×ÅÑÊÀß ÒÅÎÐÈß ÝËÅÊÒÐÎÍÍÎÃÎ ÑÒÐÎÅÍÈß ÀÒÎÌΠ179
3.40 Ïóöûëîâ È.À., Ñìèðíîâ Ñ.Å., Óâàðîâà Å.Ñ.
ËÈÒÈÅÂÛÉ ÝËÅÌÅÍÒ Ñ ÊÀÒÎÄÎÌ, ÑÎÄÅÐÆÀÙÈÌ ÓÍÒ . . . . . . . . . . .
Putsylov I.A., Smirnov S.E., Uvarova E.S.
THE LITHIUM CELL WITH CATHODE BASED ON CNT 182
3.41 Ðàãîçèí Ñ.Ì., Åìåëüÿíîâ Â.Î., Ìàðòûíîâ Ê.Â.
ÑÂÎÉÑÒÂÀ ÎÃÍÅÓÏÎÐÍÎÉ ÑÓÑÏÅÍÇÈÈ È ÊÅÐÀÌÈ×ÅÑÊÈÕ ÔÎÐÌ ÍÀ ÎÑÍÎÂÅ ÊÐÈÑÒÀËËÈ×ÅÑÊÎÃÎ ÊÂÀÐÖÀ È ÑÂßÇÓÞÙÅÃÎ LU-DOX SKF 183
3.42 Ðàãîçèí Ñ.Ì., Åìåëüÿíîâ Â.Î., Ìàðòûíîâ Ê.Â.
ÑÂÎÉÑÒÂÀ ÎÃÍÅÓÏÎÐÍÎÉ ÑÓÑÏÅÍÇÈÈ È ÊÅÐÀÌÈ×ÅÑÊÈÕ ÔÎÐÌ ÍÀ ÎÑÍÎÂÅ ÖÈÐÊÎÍÀ È ÑÂßÇÓÞÙÅÃÎ LUDOX SKF 184
3.43 Ðàãîçèí Ñ.Ì., Åìåëüÿíîâ Â.Î., Ìàðòûíîâ Ê.Â., Âèëåíñêàÿ Ë.À.
ÑÂÎÉÑÒÂÀ ÎÃÍÅÓÏÎÐÍÎÉ ÑÓÑÏÅÍÇÈÈ È ÊÅÐÀÌÈ×ÅÑÊÈÕ ÔÎÐÌ ÍÀ ÎÑÍÎÂÅ ÊÎÐÓÍÄÀ È ÑÂßÇÓÞÙÅÃÎ ÝÒÈËÑÈËÈÊÀÒ 186
3.44 Ðàãîçèí Ñ.Ì., Åìåëüÿíîâ Â.Î., Ìàðòûíîâ Ê.Â.
ÑÂÎÉÑÒÂÀ ÎÃÍÅÓÏÎÐÍÎÉ ÑÓÑÏÅÍÇÈÈ È ÊÅÐÀÌÈ×ÅÑÊÈÕ ÔÎÐÌ ÍÀ ÎÑÍÎÂÅ ÖÈÐÊÎÍÀ È ÑÂßÇÓÞÙÅÃÎ ÝÒÈËÑÈËÈÊÀÒ 188
3.45 Ðàãîçèí Ñ.Ì., Åìåëüÿíîâ Â.Î., Ìàðòûíîâ Ê.Â., Âèëåíñêàÿ Ë.À.
ÔÈÇÈ×ÅÑÊÈÅ È ÒÅÕÍÎËÎÃÈ×ÅÑÊÈÅ ÑÂÎÉÑÒÂÀ ÎÃÍÅÓÏÎÐÍÎÉ ÑÓÑÏÅÍÇÈÈ È ÊÅÐÀÌÈ×ÅÑÊÈÕ ÔÎÐÌ ÍÀ ÑÂßÇÓÞÙÅÌ ÝÒÑ 190
3.46 Ðåäüêî Â.Â., Ôåäîðîâ Å.Ì., Áóðöåâà Ë.Á., ßêèìîâ Å.Â.
ÌÎÄÅÐÍÈÇÀÖÈß ÌÅÒÎÄÈÊ ÈÑÏÛÒÀÍÈÉ ÈÇÎËßÖÈÈ ÊÀÁÅËÜÍÛÕ ÈÇÄÅËÈÉ
Redko V., Fyodorov Å., Burtzeva L., Yakimov E.
MODERNIZATION METODICS INSULATION TEST OF CABLES 191
3.47 Ðîäèîíîâà Å.Í., Þäàåâ Â.Ô.
ÄÂÈÆÅÍÈÅ ×ÀÑÒÈÖÛ ÄÈÑÏÅÐÑÍÎÉ ÔÀÇÛ Â ÍÅÑÒÀÖÈÎÍÀÐÍÛÕ ÐÅËÀÊÑÀÖÈÎÍÍÛÕ ÏÅÐÅÕÎÄÍÛÕ ÃÈÄÐÎÌÅÕÀÍÈ×ÅÑÊÈÕ ÏÐÎÖÅÑÑÀÕ
Rodionova E.N., Judaev V.F.
DISPERSION MEDIUM PARTICLE MOTION IN NONSTEADY RALAXA-TION HYDROMECHANICAL PROCESSES 193
3.48 Ðÿïîñîâ È.Â., Êëåéíåð Ë.Ì., Øàöîâ À.À.
ÔÎÐÌÈÐÎÂÀÍÈÅ ÍÀÍÎ È ÑÓÁÌÈÊÐÎÍÍÛÕ ÐÀÇÌÅÐΠÕÀÐÀÊÒÅÐ-ÍÛÕ ÝËÅÌÅÍÒΠÑÒÐÓÊÒÓÐÛ ÑÏËÀÂΠÆÅËÅÇÀ ÒÅÐÌÈ×ÅÑÊÈÌ ÂÎÇÄÅÉÑÒÂÈÅÌ 194
3.49 Ñìèðíîâ Ñ.Å.,Ïóöûëîâ È.À, Ñìèðíîâ Ñ.Ñ.
ÌÀÒÅÌÀÒÈ×ÅÑÊÀß ÌÎÄÅËÜ ÝËÅÊÒÐÎÄÀ ËÈÒÈÅÂÎÃÎ ÈÑÒÎ×ÍÈÊÀ ÒÎÊÀ 196
3.50 Ñîöêèé Â.Â., Áûêîâà Â.Â., Óñîëüöåâà Í.Â.
ÏÅÐÑÏÅÊÒÈÂÍÛÅ ÎÏÒÈ×ÅÑÊÈÅ ÒÅÐÌÎ×ÓÂÑÒÂÈÒÅËÜÍÛÅ ÌÀÒÅ-ÐÈÀËÛ
Sotsky V.V., Bykova V.V., Usol’tseva N.V.
PERSPECTIVE OPTICAL THERMOSENSITIVE MATERIALS 198
3.51 Ñòîëÿð Ñ.Â., Áàþêîâ Î.À., Ãóðåâè÷ Þ.Ë., Ëàäûãèíà Â.Ï., Èñõàêîâ Ð.Ñ., Ïóðòîâ Ê.Â.
ÌÀÃÍÈÒÍÛÅ ÍÀÍÎ×ÀÑÒÈÖÛ Fe2O3•nH2O ÑÈÍÒÅÇÈÐÎÂÀÍÍÛÅ ÁÀÊÒÅÐÈßÌÈ 199
3.52 Ñòûðêàñ À. Ä., Íèêèøèíà. Í. Ã.
ÎÊÈÑËÅÍÈÅ È ÂÎÑÑÒÀÍÎÂËÅÍÈÍ ÂÎÄÛ ÏÐÈ ÄÂÈÆÅÍÈÈ 200
3.53 Ñóïðóí À.Í.
ÒÅÎÐÈß ÐÅÎÍÎÌÍÎÉ ÏËÀÑÒÈ×ÍÎÑÒÈ ÊÀÊ ÎÑÍÎÂÀ ÄËß ÌÎÄÅ-ËÈÐÎÂÀÍÈß ÏÐÎÖÅÑÑÀ ÄÅÔÎÐÌÈÐÎÂÀÍÈß ÌÀÒÅÐÈÀËΠÏÐÈ ÐÀÇÐÀÁÎÒÊÅ ÂÛÑÎÊÈÕ ÒÅÕÍÎËÎÃÈÉ
Suprun A.N.
THE THEORY OF RHEONOMIC PLASTICITY AS A BASIS FOR
MODELING THE PROCESS OF MATERIAL DEFORMATION IN HIGH TECHNOLOGY DEVELOPMENT 202
3.54 Òþêàíüêî Â.Þ., Äþðÿãèíà À.Í., Îñòðîâíîé Ê.À. Ïîíîìàðåâà Å.Á.,
Áóéíîâà Î.À., Øèðèí Ñ.À.
ÌÎÄÈÔÈÖÈÐÎÂÀÍÈÅ ÊÐÅÌÍÈÉÎÐÃÀÍÈ×ÅÑÊÈÕ ËÀÊÎÊÐÀÑÎ׬ÍÛÕ ÌÀÒÅÐÈÀËΠÀÇÎÒ – È ÔÎÑÔÎÐ – ÑÎÄÅÐÆÀÙÈÌÈ ÏÀ . . . . .
Tyukanko V.Y., Dyuryagina A.N., Ostrovnoy K.A., Shirin S.A., Bujnova O.A., Ponomareva E.B.
THE MODIFICATIOR OF SILICONORGANIC LACQUID PAINT MATERI-ALS OF NITROGEN – AND PHOSPHOROUS CONTENT. SAM 204
3.55 Ô¸äîðîâ Å.Ì., Ðåäüêî Â.Â., Êîíîâàëîâ Â.Ñ. Óðàçáåêîâ Å.È.
ÈÇÌÅÐÅÍÈÅ ÝÊÑÖÅÍÒÐÈ×ÍÎÑÒÈ ÝËÅÊÒÐÈ×ÅÑÊÎÃÎ ÊÀÁÅËß, ÍÀ ÎÑÍÎÂÅ ÈÍÄÓÊÒÈÂÍÎÎÏÒÈ×ÅÑÊÎÃÎ ÌÅÒÎÄÀ .
Fyodorov E., RedkoV., Konovalov V., Urazbekov E.
ECCENTRICITY MEASURING OF ELECTRICAL CABLE ON BASIS OF INDUCTIVE&OPTICAL METHOD 205
3.56 Öâåòêîâ Þ.Â., ÍèêîëàåâÀ.Â., Íèêîëàåâ À.À., Êèðïè÷åâ Ä.Å.
ÏËÀÇÌÅÍÍÎÅ ÏÐÎÈÇÂÎÄÑÒÂÎ ÌÅÒÀËËΠÃÐÓÏÏÛ ÆÅËÅÇÀ  ÓÑ-ËÎÂÈßÕ ÈÇÌÅÍßÞÙÅÉÑß ÑÒÐÓÊÒÓÐÛ ÒÎÏËÈÂÍÎ-ÝÍÅÐÃÅÒÈ×ÅÑÊÎÃÎ ÊÎÌÏËÅÊÑÀ 206
3.57 Øïèëåâñêèé Ý.Ì.
ÐÀÇÐÀÁÎÒÊÀ ÍÎÂÛÕ ÌÀÒÅÐÈÀËÎÂ, ÑÎÄÅÐÆÀÙÈÕ ÔÓËËÅÐÅÍÛ . .
208
3.58 Øèö Å.Þ., Êîðÿêèíà Â.Â., Ñåìåíîâà Å.Ñ.
ÑÒÐÓÊÒÓÐÍÛÅ ÈÑÑËÅÄÎÂÀÍÈß ÊÎÌÏÎÇÈÒΠÀÁÐÀÇÈÂÍÎÃÎ ÍÀ-ÇÍÀ×ÅÍÈß ÍÀ ÎÑÍÎÂÅ ÑÂÅÐÕÂÛÑÎÊÎÌÎËÅÊÓËßÐÍÎÃÎ ÏÎËÈ-ÝÒÈËÅÍÀ È ÏÎÐÎØÊΠÏÐÈÐÎÄÍÛÕ ÀËÌÀÇΠ210
4. ÃËÀÂÀ 4. ÁÈÎÒÅÕÍÎËÎÃÈß, ÌÅÄÈÖÈÍÀ, ÃÅÍÅÒÈÊÀ, ÖÈÒÎËÎÃÈß, ÑÅËÜÑÊÎÅ ÕÎÇßÉÑÒÂÎ. ÃËÎÁÀËÜÍÀß È ÐÅÃÈÎÍÀËÜÍÀß ÊËÈÌÀÒÎËÎÃÈß ÝÊÎËÎÃÈß. ÈÑÑËÅÄÎÂÀÍÈÅ ÏÐÎÖÅÑÑÎÂ, ÄÈÀÃÍÎÑÒÈÊÀ, ÀÍÀËÈÇ ÏÐÎÖÅÑÑΠÐÀÇÂÈÒÈß, ÐÀÇÐÀÁÎÒÊÀ ÌÅÒÎÄΠÓÏÐÀÂËÅÍÈß ÊËÈÌÀÒÎÌ È ÝÊÎËÎÃÈÅÉ
Áîëüøàêîâ È.Í., Ñàïîæíèêîâ À.Í., Ëàçàðåíêî Â.È., Êóçîâíèêîâ Â.Â.,
Öõàé Â.Á., Ïîëÿíñêàÿ Ð.Ò.
ÁÈÎÄÅÃÐÀÄÈÐÓÅÌÛÅ ÈÌÏËÀÍÒÀÒÛ ÍÀ ÎÑÍÎÂÅ ÕÈÒÎÇÀÍÎÂÛÕ ÁÈÎÏÎËÈÌÅÐΠ– ÈÍÍÎÂÀÖÈÎÍÍÛÅ ÏÐÎÄÓÊÒÛ ÄËß ÐÅÊÎͬÑÒÐÓʬÒÈÂÍÎÉ ÎÔÒÀËÜÌÎËÎÃÈÈ È ÃÈÍÅÊÎËÎÃÈÈ
Bol'shakov I.N., Sapozhnikov A.N., Lazarenko V.I., Kuzovnikov V.V.,
Tskhay V.B., Polyanskay R.T.
BIODEGRADABLE IMPLANTS ON A BASIS CHITOSAN BIOPOLYMERS – INNOVATIVE PRODUCTS FOR RECONSTRUCTIVE OPHTALMOLOGY AND HYNECOLOGY 212
4.3 Áîëüøàêîâ È.Í., Ñàïîæíèêîâ À.Í., Åðåìååâ À.Â., Ìàéãóðîâ À.À.,
Ëåâåíåö À.À., Òóìøåâèö Î.Í.
ÃÈÏÎÀËËÅÐÃÅÍÍÛÅ ÂÛÑÎÊÎÝÔÔÅÊÒÈÂÍÛÅ ÁÈÎÄÅÃÐÀÄÈÐÓÅ-ÌÛÅ ÐÀÍÅÂÛÅ ÏÎÊÐÛÒÈß È ÈÌÏËÀÍÒÀÒÛ ÍÀ ÎÑÍÎÂÅ ÊÎËËÀ-ÃÅÍ-ÕÈÒÎÇÀÍÎÂÛÕ ÁÈÎÏÎËÈÌÅÐÎÂ
Bol'shaKov I.N., Sapozhnikov A.N., Eremeev A.V., Maygurov A.A.,
Levenets A.A., Tumshevits O.N.
LOW ALLERGENIC HIGHLY EFFECTIVE BIODEGRADABLE WOUND COVERINGS AND IMPLANTS ON A BASIS COLLAGEN – CHITOSAN BIOPOLYMERS 213
4.4 Êîçëîâà Ç.Ã., Íå÷èòàéëî Ã.Ñ., Õàðèòîíîâà À.À., Öåïàëîâ Â.Ô.
ÊÎËÈ×ÅÑÒÂÅÍÍÀß ÎÖÅÍÊÀ ÏÐÈÐÎÄÍÛÕ ÀÍÒÈÎÊÑÈÄÀÍÒΠ ËÅ×ÅÁÍÛÕ ÁÀËÜÇÀÌÀÕ
Kozlova Z.G., Nechitaylo G.S., Kharitonova A.A. and Tsepalov V.F.
A QUANTITATIVE EVALUATION OF NATURAL ANTIOXIDANTS IN TREATMENT BALZAMS 215
4.5 Êðàñíîâà È.Â., Ìàêàðîâ Â.Â.
ÊÎÍÑÒÐÓÈÐÎÂÀÍÈÅ ÏÐÎÄÓÊÒÎÂ ÏÈÒÀÍÈß Ñ ÎÏÒÈÌÀËÜÍÛÌÈ È ÇÀÄÀÍÍÛÌÈ ÑÂÎÉÑÒÂÀÌÈ .
Krasnova I.V., Makarov V.V.
DESIGN FOODS WITH OPTIMUM AND DEFINED PROPERTIES 216
4.6 Ëûñåíêî Î.Á. Ñêóëüñêèé Í.À.
ÈÇÎÒÎÏÍÛÉ ÌÅÒÀÁÎËÈÇÌ ÊÀÊ ÑÎÑÒÀÂÍÀß ×ÀÑÒÜ ÎÁÙÅÃÎ ÌÅ-ÒÀÁÎËÈÇÌÀ ÆÈÂÛÕ ÎÐÃÀÍÈÇÌÎÂ
Lysenko O.B. Skylsky N.À.
ISOTOPIC METABOLISM AS MAIN PART OF GLOBAL METABOLISM IN ORGANISMS 218
4.7 Îëüøåâñêàÿ Â.À., Ãîëîâèíà Ã.Â., Âèíîãðàäîâ À.Ì., Ëóçãèíà Â.Í.,
Øòèëü À.À., Êóçüìèí Â.À.
ÏÐÎÈÇÂÎÄÍÛÅ ÁÎÐÈÐÎÂÀÍÍÛÕ ÕËÎÐÈÍΠ– ÍÎÂÛÅ ÑÅÍÑÈÁÈ-ËÈÇÀÒÎÐÛ ÄËß ÔÎÒÎÄÈÍÀÌÈ×ÅÑÊÎÉ È ÁÎÐ-ÍÅÉÒÐÎÍÇÀÕÂÀÒÍÎÉ ÒÅÐÀÏÈÈ .
Ol’shevskaya V.A., Golovina G.V., Vinogradov A.M., Luzgina V.N.,
Shtil A.A., Kuzmin V.A.
DERIVATIVES OF BORONATED CHLORINS, THE NOVEL SENSITIZERS FOR PHOTODYNAMIC AND BORON NEUTRON CAPTURE THERAPY 219
4.8 Ïîëîíñêèé Þ.Ç., Õîëÿâèí À.È., Êîçà÷åíêî À.Â.
ÎÏÐÅÄÅËÅÍÈÅ ÊÎÎÐÄÈÍÀÒ ÌÅÒÎÊ ÒÎ×Å×ÍÎÃÎ ËÎÊÀËÈÇÀÒÎÐÀ ÍÀ ÊÎÌÏÜÞÒÅÐÍÎÌ È ÌÀÃÍÈÒÍÎ-ÐÅÇÎÍÀÍÑÍÎÌ ÒÎÌÎÃÐÀÔÀÕ ÏÐÈ ÏÎÄÃÎÒÎÂÊÅ ÑÒÅÐÅÎÒÀÊÑÈ×ÅÑÊÈÕ ÎÏÅÐÀÖÈÉ ÍÀ ÌÎÇÃÅ .220
4.9 Ïóíåãîâà Ë.Í., Øèòîâà Ò.Ñ., Êóðáàíîâà È.È., Ñìîëåíöåâ À.Â.,
Õàñÿíçÿíîâà Ô.Ñ., Ìàãäååâ È.Ì.
ÑÏÎÑÎÁ ÏÎËÓ×ÅÍÈß ÂÎÄÎÑÎÄÅÐÆÀÙÈÕ ÏÐÎÏÈËÅÍÃËÈÊÎËŬÂÛÕ ÝÊÑÒÐÀÊÒΠÐÀÑÒÈÒÅËÜÍÎÃÎ ÑÛÐÜß Ñ ÏÎÂÛØÅÍÍÎÉ ÓÑ-ÒÎÉ×ÈÂÎÑÒÜÞ Ê ÌÈÊÐÎÁÈÎËÎÃÈ×ÅÑÊÎÌÓ ÇÀÃÐßÇÍÅÍÈÞ . . . . . .
Punegova L.N., Shitova T.S., Kurbanova I.I., Smolentcev A.V.,
Hasyanzyanova F.S., Magdeev I.M.
METHOD OF PREPARATION OF WATER CONTAINING PROPYLENE GLYCOL EXTRACTS OF PLANTS WITH THE INCREASED STABILITY AGAINST MICROBIALOGICAL CONTAMINATION 222
4.10 Ñìèðíîâ Ê.Ñ., Ãàðÿåâ À.Á.
ÂËÈßÍÈÅ ÈÇÌÅÍÅÍÈß ÊËÈÌÀÒÀ ÍÀ ÆÊÕ . .
Smirnov K.S, Garaev A.B.
INFLUENCE OF CLIMATIC CHANGING ON LCS (LIVING COMMUNAL SECTOR) 225
4.11 Ñóñîâà Î.Þ., Æóçå À.Ë., Ñ. Ìîðàëåñ, Â.À. Êóçüìèí, À.À. Øòèëü, Å. Â. Øòàìì
ÑÓÏÐÀÌÎËÅÊÓËßÐÍÛÅ ÊÎÌÏËÅÊÑÛ ÄÈÌÅÐÍÛÕ ÁÈÑÁÅÍÇÈÌÈ-ÄÀÇÎËÎÂ È ÄÍÊ – ÖÈÒÎÒÎÊÑÈ×ÅÑÊÈÅ ÈÍÃÈÁÈÒÎÐÛ ÒÎÏÎÈÇÎ-ÌÅÐÀÇÛ I .
Susova O. Yu., Zhuze A.L., Morales S., Kuzmin V.A., Shtil A.A., Shtamm E.V.
SUPRAMOLECULAR COMPLEXES OF DIMERIC BIS-BENZIMIDAZOLES WITH DNA AS CYTOTOXIC TOPOISOMERASE I INHIBITORS 227
4.12 Óëüìàí (Ëèôàíîâñêèé) Â. À.
ÊÎËÎÍÈÀËÜÍÛÅ ÑÎÑÓÙÈÅ ÈÍÔÓÇÎÐÈÈ – ÏÐÈÊËÅÒÎ×ÍÛÅ ÏÀÐÀÇÈÒÛ ÝÐÈÒÐÎÖÈÒΠ. .
Ulman (Lifanovskij) V.A.
COLONIAL SUCKING INFUSORIANS – PARASITES OF ERYTHROCYTES 228
4.13 Þõèí Þ.Ì., Äàìèíîâà Ò.Â., Áîõîíîâ Á.Á., Ëîãóòåíêî Î.À., Òèìàêîâà Å.Â., Íàéäåíêî Å.Ñ.
ÍÎÂÛÅ ÒÅÕÍÎËÎÃÈÈ ÂÈÑÌÓÒÀ È ÅÃÎ ÑÎÅÄÈÍÅÍÈÉ ÄËß ÌÅÄÈÖÈÍÛ . . 235
5.ÃËÀÂÀ 5. ÄÎÁÛ×À, ÏÅÐÅÐÀÁÎÒÊÀ È ÒÐÀÍÑÏÎÐÒÈÐÎÂÊÀ ÑÛÐÜß, ÝÍÅÐÃÅÒÈÊÀ, ÑÂÀÐÊÀ, ÑÒÐÎÈÒÅËÜÑÒÂÎ, ÌÅÒÀËËÓÐÃÈß, ÕÈÌÈ×ÅÑÊÀß È Ò߯ÅËÀß ÏÐÎÌÛØËÅÍÍÎÑÒÜ, ÌÀØÈÍÎ-ÑÒÐÎÅÍÈÅ, ÑÓÄÎÑÒÐÎÅÍÈÅ, ÒÐÀÍÑÏÎÐÒ
Àéçèêîâè÷ À.À., Äèçåíäîðô Ê.È., Ïðèõîäüêî À.Â., Êîëïàêîâ Ì.Â.
ÑÒÐÓÊÒÓÐÀ ÄÀÍÍÛÕ ÄËß ÎÁÅÑÏÅ×ÅÍÈß ÔÓÍÊÖÈÎÍÈÐÎÂÀÍÈß ÑÈÑÒÅÌÛ ÏÐÎÌÛØËÅÍÍÎÃÎ ÝÊÎËÎÃÈ×ÅÑÊÎÃÎ ÌÎÍÈÒÎÐÈÍÃÀ .
Aizikovich A.A., Dizendorf K.I., Prihodko A.V., Kolpakov M.V.
DATA STRUCTURE PROVIDING OPERATION OF THE SYSTEM OF
INDUSTRIAL ECOLOGICAL MONITORING 237
5.1 Àíàøèí Â.Ñ.
ÌÅÒÎÄÛ ÊÎÍÒÐÎËß ÄÎÇÎÂÛÕ ÂÎÇÄÅÉÑÒÂÈÉ ÈÎÍÈÇÈÐÓÞÙÈÕ ÈÇËÓ×ÅÍÈÉ ÊÎÑÌÈ×ÅÑÊÎÃÎ ÏÐÎÑÒÐÀÍÑÒÂÀ ÍÀ ÐÀÄÈÎÝËÅÊÒÐÎÍÍÓÞ ÀÏÏÀÐÀÒÓÐÓ ÊÎÑÌÈ×ÅÑÊÈÕ ÀÏÏÀÐÀÒΠ238
5.2 Àõìåòüÿíîâ Â.Ð., Ìèøèíà Î.À.
ÀËÃÎÐÈÒÌÛ ÑÃËÀÆÈÂÀÍÈß ÑÈÃÍÀËÀ Â ÑÈÑÒÅÌÅ ÎÁÐÀÁÎÒÊÈ ÂÅÒÐÎÂÎÃÎ ÊÎÃÅÐÅÍÒÍÎÃÎ ÄÎÏËÅÐÎÂÑÊÎÃÎ ËÈÄÀÐÀ
Valerie R. Akhmetianov, Olga A. Mishina
SMOOTHING ALGORITHMS OF SIGNAL IN PROCESSING SYSTEM OF WIND COHERENT DOPPLER LIDAR 240
5.3 Áîæêîâ À.È., ×åãëîâ À.Å., Äåãòåâ Ñ.Ñ., Øîïèí È.È.
ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÀß ÑÈÑÒÅÌÀ ÎÖÅÍÊÈ È ÊÎÍÒÐÎËß ÝËÅÊÒÐÎÌÀÃÍÈÒÍÛÕ È ÔÈÇÈÊÎ-ÌÅÕÀÍÈ×ÅÑÊÈÕ ÑÂÎÉÑÒ ÏÎ ÄËÈÍÅ È ØÈÐÈÍÅ ÏÎËÎÑ Â ÏÎÒÎÊÅ ÏÐÎÈÇÂÎÄÑÒÂÀ
Bozhkov A.I., Cheglov A.E., Degtev S.S., Shopin I.I.
AUTOMATED CONTROL SYSTEM OF ELECTROMAGNETIC AND
PHYSICO-MECHANICAL PROPERTIES IN COLD ROLLED STRIPS AT NON-STOP MANUFACTORING PROCESSES 241
5.4 Áðàæèñ Â.Ý., Ãðåéâóëèñ ß.Ï., Ðûáèöêèñ Ë.Ñ.
ÓÑÒÐÎÉÑÒÂÎ ÏÓÑÊÀ ÒßÃÎÂÎÃÎ ÄÂÈÃÀÒÅËß ÏÎÑÒÎßÍÍÎÃÎ ÒÎÊÀ Ñ ÑÂÅÐÕÊÎÍÄÅÍÑÀÒÎÐÍÛÌ ÍÀÊÎÏÈÒÅËÅÌ
Brazis V., Greivulis J., Ribickis L.
THE DC TRACTION MOTOR STARTING DEVICE WITH SUPERCAPACITOR ENERGY SAVING DEVICE 244
5.5 Áðàí÷óêîâ Ä.Í., Ïàíôèëîâ À.Â.
ÏÅÐÑÏÅÊÒÈÂÍÛÅ ÊÎÌÁÈÍÈÐÎÂÀÍÍÛÅ ÔËÞÑÛ È ÒÅÕÍÎËÎÃÈÈ ÈÕ ÏÐÈÌÅÍÅÍÈß ÄËß ÏÎÂÛØÅÍÈß ÊÀ×ÅÑÒÂÀ ÂÒÎÐÈ×ÍÛÕ ÀËÞÌÈÍÈÅÂÛÕ ÑÏËÀÂÎÂ
Branchukov D.N., Panfilov A.V.
PERSPECTIVE COMBINED FLAX AND THE TECHNOLOGIES OF THEIR USING FOR HIDING QUALITY OF SECOND ALUMINUM ALLOYS 249
5.6 Áóêàòûé Ñ.À.
ÔÈÇÈ×ÅÑÊÈÅ ÎÑÍÎÂÛ ÝÔÔÅÊÒÀ ÍÅËÈÍÅÉÍÎÑÒÈ ÒÅÌÏÅÐÀÒÓÐ-ÍÛÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊ ÌÀÒÅÐÈÀËÎÂ È ÄÅÒÀËÅÉ È ÏÅÐÑÏÅÊÒÈÂÛ ÅÃÎ ÏÐÈÌÅÍÅÍÈß
Bukaty S.A.
PHYSICAL BASIS OF THE NONLINEARITY EFFECT OF TEMPERATURE PERFORMANCES OF MATERIALS AND PARTS AND ITS APPLICATION FOR DEVELOPMENT OF NONDESTRUCTIVE INSPECTION METHODS 251
5.7 Áóêàòûé Ñ.À., Àíäðååâ È.Á.
ÎÏÒÈÌÈÇÀÖÈß ÒÓÐÁÈÍÍÛÕ ÇÀÌÊÎÂÛÕ ÑÎÅÄÈÍÅÍÈÉ ËÎÏÀÒÊÀ-ÄÈÑÊ ÒÈÏÀ «¨ËÊÀ»
Bukaty S.A., Andreev I.B.
OPTIMIZATION OF TURBINE INTERLOCK BLADE-DISK OF TYPE “FIR TREE” 252
5.8 Áóêàòûé À.Ñ.
ÏÎÂÛØÅÍÈÅ ÒÎ×ÍÎÑÒÈ ÈÇÃÎÒÎÂËÅÍÈß ÄÅÒÀËÅÉ ÏÎÑËÅ ÏάÂÅÐÕÍÎÑÒÍÎÃÎ ÓÏÐÎ×ÍÅÍÈß Bukatyi A.S.
THE PRECISION ENHANCEMENT OF THE MANUFACTURING OF PARTS AFTER SURFACE STRENGTHENING 254
5.9 Âîëãèí À.Â., Þð÷åíêî À.Â., Äàî Ñ.Ò.
ÌÎÁÈËÜÍÀß ÑÒÀÍÖÈß ÌÎÍÈÒÎÐÈÍÃÀ ÐÀÁÎÒÛ ÑÎËÍÅ×ÍÎÉ ÁÀÒÀÐÅÈ 255
5.10 Äèçåíäîðô Ê.È., Ðÿçàíîâà À.Î., Òàðàíóõà Â.Ï.
ÌÎÄÓËÜ ÏÐÈÅÌÀ ÄÀÍÍÛÕ ÎÒ ÌÅÒÅÎÑÒÀÍÖÈÈ Â ÑÈÑÒÅÌÅ ÏÐάÌÛØËÅÍÍÎÃÎ ÝÊÎËÎÃÈ×ÅÑÊÎÃÎ ÌÎÍÈÒÎÐÈÍÃÀ
Dizendorf K.I., Ryazanova A.O., Taranuha V.P.
THE MODULE OF DATA ACQUISITION FROM A METEOROLOGICAL STATION IN THE SYSTEM OF INDUSTRIAL ECOLOGICAL MONITORING 256
5.11 Äìèòðèåâ À.Í. , Îâ÷èííèêîâà Ë.À., Ïàñòóõîâà Ç.Í.
ÈÑÑËÅÄÎÂÀÍÈÅ ÈÇÂËÅ×ÅÍÈß ÕÐÎÌÀ ÈÇ ÐÓÄÛ ÑÅÐÎÂÑÊÎÃÎ ÌÅ-ÑÒÎÐÎÆÄÅÍÈß
Dmitriev A.N., Ovchinnikova L.A., Pastukhova Z.N.
THE INVESTIGATION OF CHROME EXTRACTION FROM ORE OF THE SEROVSKY DEPOSIT 258
5.12 Èâàíîâà È. Ê., Øèö Å. Þ., Êàëà÷åâà Ë. Ï.
ÊÈÍÅÒÈ×ÅÑÊÈÅ ÏÀÐÀÌÅÒÐÛ ÐÀÑÒÂÎÐÅÍÈß ÀÑÔÀËÜÒÎÑÌÎËÎ-ÏÀÐÔÈÍÎÂÛÕ ÎÒËÎÆÅÍÈÉ ÍÅÔÒÈ ÈÐÅËßÕÑÊÎÃÎ ÌÅÑÒÎÐÎÆ-ÄÅÍÈß .259
5.13 Èâëèåâà Î.Â.
ÈÇÌÅÍ×ÈÂÎÑÒÜ ÁÈÎÃÅÍÍÎÉ ÀÊÊÓÌÓËßÖÈÈ ÏË߯ÅÉ ÂÎÑÒÎ×-ÍÎÃÎ ÏÐÈÀÇÎÂÜß Â ÑÎÂÐÅÌÅÍÍÛÉ ÏÅÐÈÎÄ 261
5.14 Êàëà÷åâà Ë.Ï., Øèö Å.Þ., Ôåäîðîâà À.Ô.
ÂËÈßÍÈÅ ÀÊÒÈÂÀÖÈÈ ÂÎÄÛ ÍÀ ÌÅÕÀÍÎÕÈÌÈ×ÅÑÊÈÅ ÏÐÅÂÐÀ-ÙÅÍÈß ÃÈÄÐÀÒΠÏÐÈÐÎÄÍÎÃÎ ÃÀÇÀ 263
5.15 Êèêèí À.Á.
ÈÍÒÅÐÀÊÒÈÂÍÛÉ ÑÈÍÒÅÇ ÐÛ×ÀÆÍÛÕ ÌÅÕÀÍÈÇÌÎÂ
Kikin A.B.
INTERACTIVE SYNTHESIS OF LINKAGES 264
5.16 Êèì Ë.Â.
ÌÎÄÅËÜ ÄÅÃÐÀÄÀÖÈÈ ÑÎÎÐÓÆÅÍÈß 266
5.17 Êëþåâ Ð.Â.
ÈÑÑËÅÄÎÂÀÍÈÅ ÊÀ×ÅÑÒÂÀ ÝËÅÊÒÐÎÝÍÅÐÃÈÈ ÍÀ ÏÐÅÄÏÐÈßÒÈßÕ ÒÂÅÐÄÎÑÏËÀÂÍÎÃÎ È ÖÈÍÊÎÂÎÃÎ ÏÐÎÈÇÂÎÄÑÒÂÀ 268
5.18 Êàðïîâè÷ À.Â. Êóðëîâ Â.Â.
ÎÁ ÀÂÒÎÌÀÒÈÇÀÖÈÈ ÓÏÐÀÂËÅÍÈß ÏÎÄÐÀÇÄÅËÅÍÈßÌÈ ÐÑÇÎ
A. Karpovich V. Kurlov
AUTOMATION CONTROL OF MLRS SUBDIVISIONS 269
5.19 Êóëåøîâ Â.Â.
ÌÅÕÀÍÈ×ÅÑÊÀß ËÎÃÈÊÀ ÍÀ ÑÀÌÎÒÎÐÌÎÇßÙÈÕ ÇÀÖÅÏËÅÍÈßÕ .
Kulechov V. V.
MECHANICAL LOGIC ON THE BASE OF SELF-BRAKING GEARING 271
5.20 Ëåùåâà Î.À., Øàðíèíà Ë.Â.
ÒÅÕÍÎËÎÃÈß ÏÎÄÃÎÒÎÂÊÈ ËÜÍßÍÎÃÎ ÒÅÊÑÒÈËß Ñ ÈÑÏÎËܬÇάÂÀÍÈÅÌ ÏËÀÇÌÛ .
Lesñhyova O.A., Sharnina L.V.
TECHNOLOGY OF PREPARATION OF LINEN TEXTILES WITH USE OF PLASMA 272
5.21 Ìàãîìåäîâ Ð.À.
ÀÍÎÌÀËÜÍÛÉ ÕÀÐÀÊÒÅÐ ÐÅÆÈÌÀ ÏÎÄÇÅÌÍÛÕ ÂÎÄ Â ÂÛÑÎÊÎ×ÀÑÒÎÒÍÎÌ ÏÎËÅ ÑÅÉÑÌÈ×ÅÑÊÈÕ ÊÎËÅÁÀÍÈÉ
Magomedov R.A.
THE ANOMALOUS NATURE OF UNDERGROUND WATERS REGIME IN HIGH-FREQUENCY FIELD OF SEISMIC FLUCTUATIONS 273
5.22 Ìàõíåíêî Â.È., Êîâàëåâ Î.Á., Ìèëåíèí À.Ñ.
ÌÀÒÅÌÀÒÈ×ÅÑÊÎÅ ÌÎÄÅËÈÐÎÂÀÍÈÅ ÏÐÎÖÅÑÑÎÂ, ÎÏÐÅÄÅËßÞÙÈÕ ÒÅÕÍÎËÎÃÈ×ÅÑÊÓÞ ÑÂÀÐÈÂÀÅÌÎÑÒÜ ÒÈÒÀÍ-ÀËÞÌÈÍÈÅÂÛÕ ÊÎÍÑÒÐÓÊÖÈÉ
Makhnenko V.I., Kovalev O.B., Milenin A.S.
MATHEMATICAL MODELLING OF PROCESSES THOSE DETERMINE TI-TANIUM-ALUMINUM CONSTRUCTIONS TECHNOLOGICAL WELDABIL-ITY 277
5.23 Ìîðãóíîâ Ê.Ï., Ðÿáîâ Ã.Ã.
ÓÑÊÎÐÅÍÈÅ ØËÞÇÎÂÀÍÈß ÏÐÈ ÈÑÏÎËÜÇÎÂÀÍÈÈ ÊÎÌÁÈÍÈÐÎ-ÂÀÍÍÎÃÎ ÍÀÏÎËÍÅÍÈß ÊÀÌÅÐÛ ÑÓÄÎÕÎÄÍÎÃÎ ØËÞÇÀ 281
5.24 Ìîëîòêîâ Â.Å.
ÊÎÐÐÅÊÖÈß ÝÊÎËÎÃÈ×ÅÑÊÈÕ ÏÀÐÀÌÅÒÐΠÂÎÄÍÎÃÎ ÒÅÕÍÎËÎ-ÃÈ×ÅÑÊÎÃÎ ÏÎÒÎÊÀ  ÃÈÄÐÎÒÅÕÍÈ×ÅÑÊÈÕ ÑÈÑÒÅÌÀÕ ÌÎÐ-ÑÊÎÉ ÀÊÂÀÊÓËÜÒÓÐÛ .
Molotkov V.E.
CORRECHION OF ECOLOGICAL PARAMETRS IN HYDROTECHNICAL SYSTEMS OF MARINE AQUACULTURE 283
5.25 Íàñòè÷ Â.Ï., Áîæêîâ À.È., ×åãëîâ À.Å., Äåãòåâ Ñ.Ñ., Øîïèí È.È.
ÀÂÒÎÌÀÒÈÇÈÐÎÂÀÍÍÀß ÑÈÑÒÅÌÀ ÀÍÀËÈÇÀ È ÂÛÁÎÐÀ ÐÅÆÈÌÎÂ ÎÁÐÀÁÎÒÊÈ ÍÀ ÌÍÎÃÎÊËÅÒÜÅÂÛÕ ÑÒÀÍÀÕ ÕÎËÎÄÍÎÉ ÏÐÎÊÀÒÊÈ .
Nastich V.P., Bozhkov A.I., Cheglov A.E., Degtev S.S., Shopin I.I.
SYSTEM OF AUTOMATED ANALYSIS AND CHOOSING PROCESSING PARAMETERS AT MULTIPLE-STAND COLD ROLLING 284
5.26 Íèêîëàåâ À.À.
ÈÑÑËÅÄÎÂÀÍÈÅ ÑÒÀÒÈ×ÅÑÊÎÃÎ ÊÎÌÏÅÍÑÀÒÎÐÀ ÐÅÀÊÒÈÂÍÎÉ ÌÎÙÍÎÑÒÈ ÄÓÃÎÂÎÉ ÑÒÀËÅÏËÀÂÈËÜÍÎÉ ÏÅ×È Â ÍÅÑÈÌÌÅÒÐÈ×ÍÛÕ ÐÅÆÈÌÀÕ ÍÀ ÌÀÒÅÌÀÒÈ×ÅÑÊÎÉ ÌÎÄÅËÈ . 287
5.27 Ïîðòíÿãèí À.Ñ., Øèøêèí À.Ñ.
ÈÑÑËÅÄÎÂÀÍÈÅ ÐÅÎËÎÃÈ×ÅÑÊÈÕ ÕÀÐÀÊÒÅÐÈÑÒÈÊÐÀÑÒÂÎÐΠÂÛÒÅÑÍÅÍÈß ÍÅÔÒÈ ÍÀ ÎÑÍÎÂÅ ÍÀÒÐÈÅÂÎÉ ÑÎËÈ ÊÀÐÁÎʬÑÈÌÅÒÈËÖÅËËÞËÎÇÛ Â ØÈÐÎÊÈÕ ÈÍÒÅÐÂÀËÀÕ ÒÅÌÏÅÐÀÒÓÐ È ÊÎÍÖÅÍÒÐÀÖÈÉ . 288
5.28 Ðàçäüÿêîíîâà Ã.È., Ñâàðîâñêàÿ Ë.È., Àëòóíèíà Ë.Ê., Ëèõîëîáîâ Â.À.
Î×ÈÑÒÊÀ ÇÅÌËÈ ÎÒ ÍÅÔÒÈ ÂÛÑÎÊÎÀÊÒÈÂÍÛÌ ÄÈÑÏÅÐÑÍÛÌ ÓÃËÅÐÎÄÎÌ .
Razdiakonova G.I., *Svarovskaya L.I., *Altunina L.K., Likholobov V.A.
CLEARING OF THE GROUND OF OIL HIGHLY ACTIVE DISPERSE CAR-BON 290
5.29 Ñàâîñòüÿíîâ À.Í., Ñàñèí Â.ß.
ÀÍÀËÈÇ ÝÍÅÐÃÎÑÁÅÐÅÃÀÞÙÈÕ ÌÅÐÎÏÐÈßÒÈÉ ÏÐÈ ÐÀÇÐÀÁÎÒÊÅ ÑÊÂ . 291
5.30 Ñåðãååâ À.È., Ãàëèíà Ë.Â., Êîðíèïàåâà À.À., Ñàëèíà Î.À., Áàêóìåíêî È.Ã.
ÌÎÄÅËÈÐÎÂÀÍÈÅ ÏÐÎÈÇÂÎÄÑÒÂÅÍÍÎÃÎ ÏÐÎÖÅÑÑÀ ÎÀÎ «ÇÀÂÎÄ ÁÓÐÎÂÎÃÎ ÎÁÎÐÓÄÎÂÀÍÈß» Â ÑÐÅÄÅ ANYLOGIC ..
Sergeev A.I., Galina L.V., Kornipaeva A.A., Salina O.A., Bakumenko I.G.
MODELLING OF PRODUCTION PROCESS ON OJK "CHISEL EQUIPMENT PLANT" IN ENVIRONMENT ANYLOGIC 293
5.31 Ñåðíîâ Ñ.Ï., Áàëîõîíîâ Ä.Â., Êîëîíòàåâà Ò. Â.
ÏÐÎÁËÅÌÛ ÈÇÌÅÐÅÍÈß ÑÂÅÒÎÂÛÕ È ÖÂÅÒÎÂÛÕ ÕÀÐÀÊÒÅÐÈ-ÑÒÈÊ ÑÂÅÒÎÄÈÎÄÍÛÕ ÑÂÅÒÎÒÅÕÍÈ×ÅÑÊÈÕ ÈÇÄÅËÈÉ ÄËß ÀÂ-ÒÎÌÎÁÈËÅÉ .
D.V. Balakhonov, S.P. Sernov, T.V. Kolontaeva
AUTOMOTIVE LED LIGHTS COLOR AND LUMINOUS PROPERTIES MEASUREMENT PROBLEMS 294
5.32 Ñìîëåíñêèé Â.Â., Íîâîñåëîâà À.Â., Áîâå À.Ë.
ÝËÅÊÒÐÎÕÈÌÈß ÈÒÒÅÐÁÈß Â ÐÀÑÏËÀÂËÅÍÍÎÉ ÝÂÒÅÊÒÈÊÅ NACL-KCL-CSCL ÍÀ ÈÍÅÐÒÍÎÌ W È ÀÊÒÈÂÍÎÌ AL ÝËÅÊÒÐÎÄÀÕ . .
Smolenski V.V., Novoselova A.V., Bovet A.L.
ELECTROCHEMISTRY OF YTTERBIUM IN FUSED NACL-KCL-CSCL EUTECTIC ON INERT W AND ACTIVE AL ELECTRODES 295
5.33 Òþðèí Ä. Í., Êîòåíåâ Â. À.
ÈÑÑËÅÄÎÂÀÍÈÅ È ÎÏÒÈÌÈÇÀÖÈß ÌÅÒÎÄÎÂ ÂÎÑÑÒÀÍÎÂËÅÍÈß ÈÇÎÁÐÀÆÅÍÈÉ ÏÎÂÅÐÕÍÎÑÒÈ ÌÅÒÀËËÎÊÑÈÄÍÛÕ ÑÒÐÓÊÒÓÐ . . . .
D. N. Turin, V. A. Kotenev
RESEARCH AND OPTIMIZATION OF METHODS OF RESTORATION OF IMAGES OF THE SURFACE METAL OXIDE OF STRUCTURES 297
5.34 Öûôàíñêèé Ñ. Ë.
ÌÈÍÈ-ÇÀÂÎÄ ÄËß ÏÐÎÈÇÂÎÄÑÒÂÀ ÆÈÄÊÈÕ ÃÓÌÈÍÎÂÛÕ ÓÄÎÁ-ÐÅÍÈÉ ÍÀ ÎÑÍÎÂÅ ÊÀÂÈÒÀÖÈÎÍÍÎÉ ÒÅÕÍÎËÎÃÈÈ .
Tsyfansky S.L.
MINI-PLANT FOR PRODUCTION OF LIQUID HUMUS FERTILIZERS ON THE BASE OF CAVITATION TECHNOLOGY 299
5.35 Ôèëèìîíîâ Ñ. È., Äóõàíèí Ñ. À.
ÏÐÈÌÅÍÅÍÈÅ ÒÈÐÈÑÒÎÐÍÛÕ ÏÐÅÎÁÐÀÇÎÂÀÒÅËÉ ÍÀ ÊÀÐÜÅÐÍÛÕ ÝÊÑÊÀÂÀÒÎÐÀÕ 300
5.36 ×óáàðîâ À.Â.
ÝÊÎËÎÃÈ×ÅÑÊÈÅ ÀÑÏÅÊÒÛ ÏÐÈÌÅÍÅÍÈß ÊÈÑËÎÐÎÄÀ ÏÐÈ ÃÈÄ-ÐÎÌÅÒÀËËÓÐÃÈ×ÅÑÊÎÉ ÏÅÐÅÐÀÁÎÒÊÅ ÇÎËÎÒÎÑÎÄÅÐÆÀÙÈÕ ÁÈÎÊÅÊΠ. 301
5.37 Øàíòàðåíêî Ï.Â.
ÓÂÅËÈ×ÅÍÈß ÄÎËÈ ÌÅÑÒÍÛÕ ÂÈÄΠÒÎÏËÈÂÀ ÍÀ ÏÐÈÌÅÐÅ ÈѬÏÎËÜÇÎÂÀÍÈÈÈ ËÈÃÍÈÍÀ  ÊÀ×ÅÑÒÂÅ ÝÍÅÐÃÅÒÈ×ÅÑÊÎÃÎ ÒÎÏ-ËÈÂÀ ÍÀ ÝËÅÊÒÐÈ×ÅÑÊÈÕ ÑÒÀÍÖÈßÕ .
Shantarenko P.V.
INCREASING OF PERCENTAGE OF LOCAL FUELS IN EXAMPLE OF US-ING LIGNINA AS ENERGY FUEL ON POWER STATION
302
6. ÃËÀÂÀ 6. ÑÒÀÍÄÀÐÒÈÇÀÖÈß È ÀÂÒÎÌÀÒÈÇÀÖÈß ÑÈÑÒÅÌ ÓÏÐÀÂËÅÍÈß ÁÈÇÍÅÑÎÌ, ÍÀÓÊÎÉ. ÎÁÐÀÇÎÂÀÍÈÅ .
Áðûíäèí Å.Ã.
ÒÅÎÐÅÒÈ×ÅÑÊÈÅ ÎÑÍÎÂÛ ÊÎÌÌÓÍÈÊÀÒÈÂÍÎ-ÀÑÑÎÖÈÀÒÈÂÍÎÉ ÈÌÈÒÀÖÈÈ ÑÈÌÂÎËÈ×ÅÑÊÈ-ßÇÛÊÎÂÎÃÎ ÌÛØËÅÍÈß . 304
6.2 Ãàâðèëîâ Ë.Ï., Êàøèðñêèé À.À.
ÏÐÈÌÅÍÅÍÈÅ ÈÍÔÎÐÌÀÖÈÎÍÍÛÕ ÒÅÕÍÎËÎÃÈÉ Â ÂÛÑØÅÌ ÎÁ-ÐÀÇÎÂÀÍÈÈ . .313
Äàëåå...