Sep 2008 to 2000 Independent Contractor: Marketing Manager/Brand AmbassadorKing Wah Chop Suey Restaurant Detroit, MI Aug 2002 to Aug 2008 Assistant ManagerCarter-Culp and Associates Troy, MI Aug 2000 to Jul 2002 Sales Analyst
Education:
University of Michigan-Dearborn Dearborn, MI Sep 1995 to Dec 1999 Bachelor of Business Administration in Management and Management Information Systems
Yong S Lin MD 217 Grand St STE 301, New York, NY 10013 2122269717 (phone), 2122269723 (fax)
Education:
Medical School Southeast Univ Med Coll, Nanjing, Jiangsu, China Graduated: 1984
Procedures:
Electrocardiogram (EKG or ECG) Nutrition Therapy Pulmonary Function Tests Vaccine Administration
Conditions:
Acne Acute Upper Respiratory Tract Infections Atopic Dermatitis Benign Prostatic Hypertrophy Calculus of the Urinary System
Languages:
Chinese English
Description:
Dr. Lin graduated from the Southeast Univ Med Coll, Nanjing, Jiangsu, China in 1984. He works in New York, NY and specializes in Internal Medicine. Dr. Lin is affiliated with New York Presbyterian Lower Manhattan Hospital.
Cedars-Sinai Medical Center Pain Center 444 S San Vicente Blvd STE 1101, Los Angeles, CA 90048 3104239600 (phone), 3104239610 (fax)
Education:
Medical School Sun Yat Sen Univ of Med Sci, Guangzhou, China (242 21 Pr 1/71) Graduated: 1982
Languages:
English
Description:
Dr. Lin graduated from the Sun Yat Sen Univ of Med Sci, Guangzhou, China (242 21 Pr 1/71) in 1982. He works in Los Angeles, CA and specializes in Anesthesiology. Dr. Lin is affiliated with Cedars-Sinai Medical Center.
A device comprises a substrate and an adhesive nanoparticle layer patterned into zones of electrical conductance and insulation on top of the substrate surface. A diffusion region adjoining the surface comprises an admixture of the nanoparticles in the substrate material. When the nanoparticle layer is patterned from originally all-conductive nanoparticles, the insulating zones are created by selective oxidation; when the nanoparticle layer is patterned from originally all-non-conductive nanoparticles, the conductive zones are created by depositing selectively a volatile reducing agent. A package of insulating material is in touch with the nanoparticle layer and fills any voids in the nanoparticle layer.
Packaged Semiconductor Device Having Nanoparticle Adhesion Layer Patterned Into Zones Of Electrical Conductance And Insulation
A device comprises a substrate and an adhesive nanoparticle layer patterned into zones of electrical conductance and insulation on top of the substrate surface. A diffusion region adjoining the surface comprises an admixture of the nanoparticles in the substrate material. When the nanoparticle layer is patterned from originally all-conductive nanoparticles, the insulating zones are created by selective oxidation; when the nanoparticle layer is patterned from originally all-non-conductive nanoparticles, the conductive zones are created by depositing selectively a volatile reducing agent. A package of insulating material is in touch with the nanoparticle layer and fills any voids in the nanoparticle layer.
handran, other investigators include: Christine Ambrosone, Gary Zirpoli, Gregory Ciupak, Susan E. McCann, and Zhihong Gong, Roswell Park Cancer Institute; Karen Pawlish, New Jersey State Cancer Registry; and Yong Lin and Kitaw Demissie, The Cancer Institute of New Jersey and UMDNJ-School of Public Health.