Address of the local organising committee:
Department for Nanostructured Materials,
Center for Electron Microscopy and Microanalysis
Jožef Stefan Institute
Jamova 39
SI-1000 Ljubljana
Slovenia
Phone: (+386 1) 477 3890
Contact:
Sabina.cintauer@ijs.si
Sandra.drev@ijs.si
miran.ceh@ijs.si
VENUE
The workshop will be held at the Marine Biology Station Piran. The Station is situated on a peninsula between Portorož and the medieval town of Piran, and built around the ruins of the 15th century St. Bernardin church. All the lectures will be held in the Marine Biology Station Piran.
TRAVEL INFORMATION
Participants arriving by plane are advised to book Ljubljana Airport (Airport Joze Pucnik, Ljubljana), Aeroporto di Trieste (Trieste, Italy) or Zagreb Airport (Franjo Tudžman Airport) as their final destination.
Ljubljana Airport is located 26 km north of Slovenia's capital city, Ljubljana. The Marine Biology Station Piran is located 143 km from the airport. From Ljubljana Airport to Ljubljana city you can travel by shuttle, taxi or bus. Airport shuttle and taxi services are available in front of the airport building. There is also a bus connection between the airport and Ljubljana several times a day.
From Ljubljana you can continue on your way to Piran by bus or by train. The train from Ljubljana will terminate in Koper, from where you can take a bus or taxi to Piran.
Trieste airport is located 33 km from the city of Trieste. From there you can travel to Piran by bus, by taxi, by rental car or by train.
Accommodation
Book your own accommodation!
There are many hotels, apartments and rooms where you can book your accommodation in Porotrož and Piran and in the area. Please check internet providers. However, some budget friendlier links for the accommodation are provided below:
Bolniška ulica 8, 6330 Piran, Slovenija
Trubarjeva ulica 17, 6330 Piran, Slovenija
Trubarjeva 8, 6330 Piran, Slovenija
Leninova ulica 1, 6330 Piran, Slovenija
Tartinijev trg 15, 6330 Piran, Slovenija
And more…
ORGANIZERS
THIS PROJECT HAS RECEIVED FUNDING FROM THE EUROPEAN UNION'S HORIZON 2020 RESEARCH AND INNOVATION PROGRAMME UNDER GRANT AGREEMENT NO 823717