Curriculum vitae

Orsolya

Gyulai, Ph.D.

  • Place and time of birth: Szeged, Hungary, 2 September 1991 (28 yo)
  • Address: 24/a Fraknó Street, 1115, Bp. XI.
  • Marital status: maiden
  • Phone: +36 30 369 3683
  • E-mail: gyosaat@gmail.com

Qualifications

  • Pharmaceutical chemist (MSc)
  • Pharmaceutical technology developer (PhD)

Studies

  • 2015 – 2018: Ph.D. studies, Summa cum laude; University of Szeged in a research fellowship with Gedeon Richter’s Talentum Foundation
  • 2013 – 2015: Master of Chemical Sciences – pharmaceutical research specialization (MSc); University of Szeged
  • 2010 – 2013: Chemist (BSc); University of Szeged
  • 2006-2010: University of Szeged Practicing High School (English specialization)

Work experience

  • 2018 – Robert Bosch Kft. Technology Development Engineer
  • 2015 – 2018: University of Szeged in collaboration with Gedeon Richter’s Talentum Foundation – Ph.D. research work
  • 2014: Sanofi – Production engineer trainee

Language skills

  • English: Advanced (C1 complex language exam 2018; B2 complex language exam 2006)
  • Italian: Intermediate (B2 complex language exam 2015)
  • German: Beginner
  • Hungarian: Mother language

Computer skills:

  • Experienced user : Microsoft Office, Origin, ChemDraw, ChemSketch, QtiPlot, Sigma Plot, Mestrec, Gimp, Minitab, Photoshop CS, Eva, Mercury, CorelDraw, Spectragryph, Statistica, Grams, Cornerstone
  • Basic user: SAP system, HTML, CSS and Python

Personal strengths

Preciseness, analytical way of thinking, motivating character, good observer, music enthusiast, fast learner, self-developer

Other qualifications

  • Qualified Person trainings (2018) Good Laboratory Practice, Good Manufacturing Practice and Good Clinical Practice advanced studies (2018)
  • Category „B” drivers license (active use since 2008)
  • Problem solving tools (2019)

Experienced in

  • Preparing and presenting high-standard presentations to customers and at conferences
  • Conducting release projects of automotive-grade SMD components
  • Planning DoE-s and factorial designs
  • Working in matrix structure
  • Solving complex problems with the help of root cause analysis
  • LEAN approach
  • Developing new technologies in pharmaceutical and automotive industry (soldering process and crystallization of active agents)
  • Spectroscopy
  • Pareto-analysis
  • Quality by Design approach
  • Communication with suppliers
  • Product development