인공지능 시대의 도전에 종교학적으로 답하기 위해 폴 리쾨르(Paul Ricoeur)의 미메시스(mimèsis) 이론을 그의 종교적 해석학에 접붙였다. 이 접붙임을 통해 드러나는 종교적 텍스트의 본유적인 기능은 개인과 공동체가 종교적 텍스트를 읽고 해석하면서 개인과 공동체가 자신들이 가지고 있는 한정적인 시간성(Zeitlichkeit)을 넘어선 영원성(eternity)이나 공(空)과 같은 근원적인 시간성과 새로운 존재의 가능성을 보면서 일어나는 영혼의 변형과 서사적 정체성이다. 약한 인공지능(weak AI)의 경우, 인공지능이 지식적이고 교리적인 측면의 기능을 감당하게 되어 영혼의 변형이라는 종교적 텍스트의 본유적 기능이 강화될 것이다. 강한 인공지능(strong AI)의 경우, 인공지능이 앞으로 인간과 함께 살아가는 동반자가 될 수 있다는 점에서 강한 인공지능이 등장하기 전에 지금까지 종교적 텍스트가 형성해 온 다양한 종교적인 서사적 정체성을 인공지능 프로그램 안에 적극적으로 포함하는 컴퓨터 공학과의 협업이 강력하게 요청된다.
We have developed superconducting mixer receivers for 129 GHz VLBI observation in Korean VLBI Network (KVN). The developed mixer has a radial waveguide probe with simple transmission line L-C transformer as a tuning circuit to its 5 series-connected junctions, which can have 125 - 165 GHz as the operation radio frequency (RF). For intermediate frequency (IF) signal path a high impedance quarter-wavelength line connects the probe to one end of symmetric RF chokes. The double side band (DSB) receiver noise of the mixer was about 40 K over 4 - 6 GHz IF band, whereas we achieved the uncorrected single side band (SSB) noise temperature of about 70 K and better than 10 dB image rejection ratio in 2SB configuration with 8 - 10 GHz IF band. Insert-type receiver cartridges employing the mixers have been under commission for KVN stations.
To keep an enterprise's competitiveness on the condition of the automatic manufacturing system such as FA, FMS and CIM, all the maintenance problems should be considered seriously In not only in production and maintenance but also in related industrial safety. As we analyze in the surveys the maintenance management of domestic enterprises and the causes of Industrial accident, there will be necessity of drawing up countermeasures for preventing industrial accidents and for ensuring expertise maintenance technologies. Based on these analyses, the safety information system, maintenance management information system, and the machinery condition diagnosis technique are studied by using of the knowledge-based system under the real-time computer-operating environment and using fuzzy linguistic variable. This computer system based knowledge-based diagnosis can easily provide not only the knowledge of expert system about deterioration phenomenon of industrial robots, but also the knowledge of relating safety and facility all the time. Therefore, it is expected to improve the efficiency of business processes in the production and safety when we use this system.
To keep enterprise's competitiveness on condition of the automatic manufacturing system such as FA, FMS and CIM, all the maintenance problems should be considered seriously in not only production and maintenance but also related industrial safety. As we analyze in the surveys for the maintenance management of domestic enterprises and the causes of Industrial accident, there will be necessity of drawing up countermeasures for prevention of industrial accidents and for ensuring expertise maintenance technologies. Based on these analyses, this study studied the safety information system, maintenance management information system, and the machinery condition diagnosis technique by using of the knowledge-based system under the internet environment. This web based knowledge-based diagnosis system can easily provide not only the knowledge of expert about deterioration phenomenon of industrial robot, but also the knowledge of relating safety and facility on everywhere, everytime. Therefore, when we use this system, it is expected to improve the efficiency of business processes in the production and safety.
A 230 GHz SIS tunnel junction receiver has been being developed for radio astronomy in Nagoya University. In this heterodyne receiver, we use a $\~$ 수식 이미지1/3 reduced hight rectangular waveguide SIS mixer with two tuning elements as front end. The mixer block with SIS junction was cooled to 4K with a closed cycle He-gas refrigerator. So far, a double sideband receiver noise temperature lower than l00K in 222-237 GHz is obtained. The receiver exhibits a best DSB noise temperature of 69K at 236 GHz as well as 228 GHz.
SIS triblock copolymers, one of the major raw materials of oil gelling agent, were synthesized by living anionic polymerization and the resultant copolymers formed with various shapes and sizes were used to examine their oil gelling capacities. Coupling method was adapted to form final triblock products from diblock living polymers. Prior to polymerization, the impurities in monomers and solvents were throughly removed by killing technique. We experimentally investigated the effects of operating parameters of synthesis and forming of SIS triblock copolymers on oil gelling capacity. The photocatalytic decomposition of SIS triblock copolymer under ultraviolet circumstance was also investigated and it is found that the addition of P-25 enhances the photocatalytic decomposition.
본 연구는 해가림의 투광율이 인삼잎의 광합성능력 및 호흡에 미치는 영향을 구명하고 이들의 계절적 변리를 추적하기 위하여 진행하였던 바 그 결과를 요약하면 다음과 같다. 1. 각 공시 투광율의 해가림하에서 생육된 인삼잎은 온도 및 연생의 차이에 관계없이 모두 10,000 lux하에서 최대광합성을 나타내었고 계절적 차이는 인정되지 않았다. 2. 10∼15% 투광율의 해가림하에서 생육된 인삼잎의 광합성량이 각 온도 및 광도에서 가장 높았으며, 2년생 인삼에서는 이의 계절적 차이가 현저하지 않았으나 4년생에서는 생육성기에 비해 후기의 최적투광율이 약간 낮아지는 경향이었다. 3. 인삼잎의 광합성능력은 생육성기에 비해 후기에 현저한 감소를 나타내었는데 그 정도는 후열 재식인삼에서 현저히 높았다. 4. 암호흡양은 생육성기에는 10∼15% 투광율하에서 생육된 인삼잎에서 많았으나 생육후기에는 20∼25%의 투광율하의 잎에서 현저히 많았고 각 투광율에 관계없이 온도가 높을 수록 암호흡양은 현저히 증가되었다. 5. 인삼잎의 엽록소함량은 해가림의 투광율이 증가될 수록 현저한 감소를 나타내었으며 이러한 경향의 계절적 차이는 인정되지 않았다.