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Page 1: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 2: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 3: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on

@z=0

Page 4: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 5: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 6: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 7: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 8: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 9: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 10: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 11: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 12: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 13: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on
Page 14: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on

For circular aperture/surface, cos and should beexpressed in cylindricalcoordinatesr ds

Page 15: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on

It is enough if J and M are expressed in rectangular form on the aperture/surface.

Page 16: PowerPoint Presentationresearch.iaun.ac.ir/pd/saghirzadeh/pdfs/UploadFile_7444.pdf · Solution: El = E (â coso Sin Jþ(y sine—z cosðl) The electric current density induced on