Can, Seçkin

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S., Can
Can, Seçkin
S.,Can
Seckin, Can
Seçkin, Can
Can, Seckin
C.,Seçkin
Can,S.
C., Seckin
C.,Seckin
Job Title
Öğretim Görevlisi
Email Address
Main Affiliation
Department of Modern Languages
Status
Former Staff
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ORCID ID
Scopus Author ID
Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

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NO POVERTY
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DECENT WORK AND ECONOMIC GROWTH
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INDUSTRY, INNOVATION AND INFRASTRUCTURE
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REDUCED INEQUALITIES
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LIFE BELOW WATER
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PEACE, JUSTICE AND STRONG INSTITUTIONS
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PARTNERSHIPS FOR THE GOALS
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Scholarly Output Search Results

Now showing 1 - 3 of 3
  • Conference Object
    Analysis of the Parameters That Effects the Operating Frequencies and Bandwidth of a Cpw-Fed Patch Antenna;
    (2013) Dagdeviren,B.; Yavuz Kapusuz,K.; Can,S.; Aydin,E.
    In this study, the analysis of the effect of antenna parameters to the operating frequency is performed in a coplanar waveguide fed patch antenna. The effect of the size and the substrate of the design dual frequency antenna to the operating frequency and bandwidth are also evaluated. Bandwidth of the upper and lower frequency is also investigated and results are demonstrated. The method to increase the bandwidth is also presented by using the chosen parameters. © 2013 IEEE.
  • Conference Object
    Design and Fabrication of Dual-Frequency H-Shaped Antenna;
    (2013) Dagdeviren,B.; Yavuz Kapusuz,K.; Can,S.; Aydin,E.
    In this study, the parameters that effects the operating frequency of dual frequency H-shaped antenna are examined. These parameters are determined as type of the dielectric constant of substrate, substrate thickness, dimensions of the antenna and dimensions of the slots that are used to obtain shape of H. The produced and simulated results of the proposed antennas are presented and compared with the studies in literature. © 2013 IEEE.
  • Conference Object
    Reader Antenna Design for Rfid Applications;
    (2013) Kaynakö,G.; Kzlu,N.; Kapusuz,K.Y.; Can,S.; Aydzn,E.
    In this paper, a coplanar waveguide (CPW) fed microstrip patch antenna is designed on finite element method based simulation program and fabricated in order to use reader antenna in Radio Frequency Identification (RFID). The results of the simulations and the produced antennas are presented in the study. The produced microstrip patch anten na has a 105MHz bandwidth and operates in between 895-1000 MHz . © 2013 IEEE.