Northwell Health Jul 2018 - Dec 2019
Part-Time Psychotherapist
Ecny Foundation, Inc. Jul 2018 - Dec 2019
Member Board of Directors
Mental Health Association of Nassau County the Gathering Place Nov 2015 - Oct 2016
Pros Employment Specialist
Port Washington Public Library Jul 2006 - Oct 2016
Computer Center Aide
New Frontiers In Learning Oct 2014 - Oct 2016
Academic Coach
Education:
Hofstra University 2011 - 2014
Masters, Master of Arts, Counseling
Hofstra University Dec 2013
Masters, Master of Arts
Adelphi University 2007 - 2011
Bachelors, Bachelor of Arts, Psychology, Philosophy
Paul D. Schreiber High School
Skills:
Mental Health Psychotherapy Career Counseling Student Affairs Resume Writing Mental Health Counseling Public Speaking Community Outreach Counseling Psychology Microsoft Office Psychology Microsoft Excel Higher Education Blogging Grief Counseling Research Cbt Lgbt Community Social Media Outreach Student Development Bereavement Counseling Assessment Nonprofits Diagnosis Telephone Skills Excel Teaching Health Advocacy Vocational Rehabilitation Individual Counselling
Interests:
Social Services Civil Rights and Social Action Education Human Rights Health
Certifications:
Integrated Mental Health/Addiction Treatment Training Certificate (Imhatt)
Emergency Physicians Tidewater 600 Gresham Dr STE 304, Norfolk, VA 23507 7574674200 (phone), 7574674173 (fax)
Emergency Physicians Tidewater 4092 Foxwood Dr STE 101, Virginia Beach, VA 23462 7574674200 (phone), 7574674173 (fax)
Education:
Medical School University of Texas Southwestern Medical Center at Dallas Graduated: 2007
Languages:
English Spanish
Description:
Dr. Schaefer graduated from the University of Texas Southwestern Medical Center at Dallas in 2007. He works in Norfolk, VA and 1 other location and specializes in Emergency Medicine. Dr. Schaefer is affiliated with Sentara Leigh Hospital, Sentara Norfolk General Hospital, Sentara Obici Hospital, Sentara Princess Anne Hospital and Sentara Virginia Beach General Hospital.
- Austin TX, US Frank Y. Xu - Austin TX, US Vikramjit Singh - Pflugerville TX, US Eric C. Browy - Coral Springs FL, US Jason Schaefer - Coral Springs FL, US Robert D. TeKolste - Fort Lauderdale FL, US Victor Kai Liu - Mountain View CA, US Samarth Bhargava - Palo Alto CA, US Jeffrey Dean Schmulen - Austin TX, US Brian T. Schowengerdt - Seattle WA, US
Techniques are described for using confinement structures and/or pattern gratings to reduce or prevent the wicking of sealant polymer (e.g., glue) into the optically active areas of a multi-layered optical assembly. A multi-layered optical structure may include multiple layers of substrate imprinted with waveguide grating patterns. The multiple layers may be secured using an edge adhesive, such as a resin, epoxy, glue, and so forth. A confinement structure such as an edge pattern may be imprinted along the edge of each layer to control and confine the capillary flow of the edge adhesive and prevent the edge adhesive from wicking into the functional waveguide grating patterns of the layers. Moreover, the edge adhesive may be carbon doped or otherwise blackened to reduce the reflection of light off the edge back into the interior of the layer, thus improving the optical function of the assembly.
Edge Sealant Confinement And Halo Reduction For Optical Devices
- Austin TX, US Frank Y. Xu - Austin TX, US Vikramjit SINGH - Pflugerville TX, US Eric C. Browy - Coral Springs FL, US Jason SCHAEFER - Coral Springs FL, US Robert D. TeKolste - Fort Lauderdale FL, US Victor Kai LIU - Mountain View CA, US Samarth BHARGAVA - Palo Alto CA, US Jeffrey Dean SCHMULEN - Austin TX, US Brian T. SCHOWENGERDT - Seattle WA, US
International Classification:
G02B 6/02 G02B 6/12 G02B 6/35 G02F 1/35
Abstract:
Techniques are described for using confinement structures and/or pattern gratings to reduce or prevent the wicking of sealant polymer (e.g., glue) into the optically active areas of a multi-layered optical assembly. A multi-layered optical structure may include multiple layers of substrate imprinted with waveguide grating patterns. The multiple layers may be secured using an edge adhesive, such as a resin, epoxy, glue, and so forth. A confinement structure such as an edge pattern may be imprinted along the edge of each layer to control and confine the capillary flow of the edge adhesive and prevent the edge adhesive from wicking into the functional waveguide grating patterns of the layers. Moreover, the edge adhesive may be carbon doped or otherwise blackened to reduce the reflection of light off the edge back into the interior of the layer, thus improving the optical function of the assembly.