National Repository of Grey Literature 3 records found  Search took 0.01 seconds. 
Computer modeling of meta-materials
Beran, Jaroslav ; Kovács, Peter (referee) ; Oliva, Lukáš (advisor)
The diploma thesis deals with metamaterial structures. Metamaterials are periodic structures, which have got permittivity or permeability, eventually both parameters, negative. Test is applied on three basic structures: Split Loop Array; Spiral Array a Double Spiral Array. For each structure is made dispersion diagram and are monitored S – parameters. Test is run in Ansoft High Frequency Structure Simulator and CST Microwave Studio software. Are monitored bandgaps and when structure is as left – handed medium or right – handed medium. Results are compared with results in literature.
Computer modeling of meta-materials
Beran, Jaroslav ; Kovács, Peter (referee) ; Oliva, Lukáš (advisor)
The diploma thesis deals with metamaterial structures. Metamaterials are periodic structures, which have got permittivity or permeability, eventually both parameters, negative. Test is applied on three basic structures: Split Loop Array; Spiral Array a Double Spiral Array. For each structure is made dispersion diagram and are monitored S – parameters. Test is run in Ansoft High Frequency Structure Simulator and CST Microwave Studio software. Are monitored bandgaps and when structure is as left – handed medium or right – handed medium. Results are compared with results in literature.
Microsatellite region in the murine oncogene src - its primary structure and variability during evolution
Fučík, Vladimír ; Šindelka, Radek ; Beran, Jaroslav ; Ferjentsik, Zoltán ; Jonák, Jiří
In the fifth intron of the Mus musculus oncogene src a complex microsatellite was discovered that consists of a CA run and 31 bp apart followed by track of TG dinucleotides interrupted by extra Gs in specific intervals. As the 31 bp interlink can assume a hairpin structure, the whole region can be viewed as an imperfect inverted repeat. The microsatellite was sequenced in imbred lines of M. m. musculus and M. m. domesticus, as well as in mice of both subspecies trapped near the hybrid zone. Differences in the length of repeat regions, insertion/deletions and simple base changes characterize the strains. Hybrids between the two species could be identified by sequencing of cloned PCR products. The structure of the microsatellite in more distant species was found to be conspicuously different. Instead of frequent (CA)18-25, we can see only (CA)8 in M. spretus, CATGCGCCCCCCA in Mus pahari and CACCCCCC in Mus caroli. No similar structure is present in the corresponding human src intron.

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