579 resultados para Moisio, Sami


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Özege, M. S. Eski harflerle,

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Mode of access: Internet.

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"S 5-iu gravirovannymi tablit͡sami."

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Mode of access: Internet.

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Bound with Donner, Otto. Lieder der Lappen. [Helsingfors, 1876].

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Top Row: Francis Hazen, Robert Ostrander, Richard McManus, Arthur Northrup, Donald Haefele, John Humphrey, Jerry Rea, st. mngr. David Louis

Middle Row: Harold Ellerby, Konrad W. Moisio, William Lemen, Edwin Turner, Roderick Cox, William Hill, Roger Howell, Hawley Eggleston, David Fitzgibbons,

Front Row: Booker Brooks, Donald Renwick, John Campbell, Edwin Russell, Coach Charles Hoyt, Charles DeBaker, Ben Glading, Harmon Wolfe

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Top Row: Jack Childs, Clark Schell, Robert Gillilan, J. Boyd Pantlind, Willis Ward, Konrad W. Moisio, Cass Kemp, Roderic Howell, st. mngr. Richard Norris

Middle Row: William Lemen, John Thornburgh, William Dibble, Roger W. Howell, Hawley Egleston, Boyd Allen, John Humphrey, Albert Blumenfeld

Front Row: Edwin Turner, Roderick Cox, captain Charles DeBaker, Coach Charles Hoyt, Harold Ellerby, William Hill, Howard Braden

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Top Row: Thomas Fisher, Walter Stone, asst. coach Ken Doherty, st. mngr. William Morgan, Sam Stoller, Nere Alix

3rd Row: Nelson Droullard, Moreau Hunt, Harry O'Connell, Paul Pinkerton, Howard Davidson, Robert Osgood, Clayton Brelsford, Frederick Stiles

2nd Row: Martin Alexander, Winston Moore, Michael Savage, E. Widmer Etchells, Edward Stone, Melvin Silverman, David Hunn, Harvey Patton, Stanley Birleson

Front Row: Paul Gorman, Roderick Howell, Robert Kositchek, captain Harvey Smith, coach Charles Hoyt, Frank Aikens, Willis Ward, Konrad W. Moisio

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Long-period fibre gratings (LPGs) have previously been used to detect quantities such as temperature, strain and refractive index (RI). The responsivity to surrounding refractive index means that, potentially, LPGs could be realised as optical biosensors for applications in biochemical and biomedical application areas. We report here to our best knowledge the first investigation on refractive index sensing properties of LPGs with sol-gel derived titanium and silicon oxide coatings. It is revealed that the RI sensitivity of an LPG is affected by both the thickness and the index value of the coating; the coating with higher index and thickness will enhance the LPG RI sensitivity significantly. The surrounding refractive index induced LPG resonance shift has been evaluated over the LPGs’ most sensitive RI region from 1.42 to 1.44. We have identified that, in this region, the uncoated LPG has an RI sensitivity of (-673.0±0.4)nm/uri (unit of refractive index) while the LPG coated with titanium oxide exhibits a sensitivity as high as (-1067.15±0.04)nm/uri.

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A review of the extant literature concludes that market-driven intangibles and innovations are increasingly considered to be the most critical firm-specific resources, but also finds a lack of elaboration of which types of these resources are most important. In this paper, we incorporate these observations into a conceptual model and link it to highly developed institutional settings for the model evaluation. From the point of view of firm revenue management, we can anticipate that performance advantages created through deployment of intellectual and relational capital in marketing and innovation are more likely to be superior. In essence, they constitute the integration of organisational intangibles both in cognitive and behavioural level to create an idiosyncratic combination for each firm. Our research findings show feasible paths for sharpening the edge of market-driven intangibles and innovations. We discuss the key results for research and practice.

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Long-period fibre gratings (LPGs) have previously been used to detect quantities such as temperature, strain, and refractive index (RI). We report here, to the best of our knowledge, the first investigation on refractive index sensing properties of LPGs with sol–gel derived titanium and silicon oxide coatings. It is revealed that the RI sensitivity of an LPG is affected by both the thickness and the index value of the coating; a coating with higher index and thickness will enhance the LPG RI sensitivity significantly. The surrounding refractive index induced LPG resonance shift has been evaluated over the LPGs' most sensitive RI region from 1.42 to 1.44. We have identified that, in this region, the uncoated LPG has an RI sensitivity of (-673.0 ± 0.4) nm/uri (unit of refractive index) while the LPG coated with titanium oxide exhibits a sensitivity as high as (-1067.15 ± 0.04) nm/uri. The experimental results also reveal that, even in the RI insensitive region around 1.33, there still is a marked enhancement in RI sensitivity of the sol–gel coated LPG compared to the uncoated one. This is potentially significant as coated LPGs may be extended to low RI gas and semi-liquidized based sensing applications.

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We investigated which evoked response component occurring in the first 800 ms after stimulus presentation was most suitable to be used in a classical P300-based brain-computer interface speller protocol. Data was acquired from 275 Magnetoencephalographic sensors in two subjects and from 61 Electroencephalographic sensors in four. To better characterize the evoked physiological responses and minimize the effect of response overlap, a 1000 ms Inter Stimulus Interval was preferred to the short (