Dr. Wang graduated from the Univ Fed De Rio De Janeiro, Fac De Med, Rio De Janeiro, Rj, Brazil in 1989. He works in Yuma, AZ and 1 other location and specializes in Gastroenterology and Internal Medicine. Dr. Wang is affiliated with Yavapai Regional Medical Center West and Yuma Regional Medical Center.
Dr. Wang graduated from the Northwestern University Feinberg School of Medicine in 1986. She works in Victoria, TX and 1 other location and specializes in Child Neurology. Dr. Wang is affiliated with Driscoll Childrens Hospital.
Internal Medicine Neurology with Special Qualifications in Child Neurology
Work:
Sunset Community Health Center
2060 W 24Th St, Yuma, AZ 85364 Stanford University
300 Pasteur Dr, Stanford, CA 94305 Stanford Hospital and Clinics
725 Welch Rd, Palo Alto, CA 94304
Education:
Northwestern University (1986)
Name / Title
Company / Classification
Phones & Addresses
Ching Wang Professional Engineer
Lexar Media Corp Photographic Equipment and Supplies
47421 Bayside Pkwy, Fremont, CA 94538
Ching Wang Manager Cross-channel Lead Management
Liberty Mutual Holding Company Inc Fire, Marine, and Casualty Insurance
175 Berkeley St, Boston, MA 02116
Ching H. Wang President
Double Pneuma, Inc Business Services at Non-Commercial Site · Nonclassifiable Establishments
604 Gartel Dr, Walnut, CA 91789
Ching Wang President
Photic Light Inc
419 N Chandler Ave, Monterey Park, CA 91754
Ching Wang Owner
Panda Dumpling Eating Place
928 S Western Ave, Los Angeles, CA 90006
Ching Hsien Wang President
HAPPY VEGGIE GARDEN RESTAURANT INC
1015 S Nogales St #127A, Rowland Heights, CA 91748 1015 S Nogales St, Whittier, CA 91748
Ching Li Wang President
A 1 EDUCATION INSTITUTE, INC Noncommercial Research Organization
5919 Temple City Blvd, Temple City, CA 91780
Ching H. Wang President
P & D Seafood Company Whol Fish/Seafood Eating Place · Fish & Seafood Merchant Whols
920 Agatha St, Los Angeles, CA 90021 (213)6249187, (213)6243797
A golf bag is provided with a pair of legs hinged at a rigid collar at the upper extremity of the bag. The lower end of the bag is closed by a base member that defines a flat, planar sole perpendicular to the longitudinal orientation of the bag, and also an upwardly inclined heel. An actuation plate is attached by a leaf hinge connection to the base member at the transition between the sole and heel. Knuckles on the base member and actuation plate are interleaved with each other across the width of the base member. The actuation plate protrudes outwardly beyond the body portion of the bag a distance of at least one inch. A spring wire spreader rod has a central, bight portion that is captured by a spreader hinge bracket located at the upper, outboard edge of the actuation plate. The wire spreader rod is configured with segments oriented at obtuse and reflex angles to provide improved leverage in deploying the legs. The interleaved knuckle hinge connection prevents the actuation plate from binding relative to the base member.
Ching C. Wang - San Francisco CA John Somoza - San Francisco CA Jon P. Page - San Francisco CA Ronaldus Marcellus Alphonsus Knegtel - Nbijmegen, NL Irwin D. Kuntz - Greenbrae CA Connie M. Oshiro - Mountain View CA A. Geoffrey Skillman - San Francisco CA
Assignee:
The Regents of the University of California - San Francisco CA
International Classification:
A01N 4338
US Classification:
514415
Abstract:
The use of certain heterocyclic derivatives for treating parasitic protozoa infections in mammals, in particular bovine trichomoniasis and giardiasis, is disclosed.
Substituted 4-Phthalimidocarboxanilides As Inhibitors Of Purine Salvage Phosphoribosyltransferases
Alex M. Aronov - San Francisco CA Narsimha R. Munagala - San Francisco CA Paul R. Ortiz de Montellano - San Francisco CA Irwin D. Kuntz - Greenbrae CA Ching C. Wang - San Francisco CA
Assignee:
Regents of the University of California - Oakland CA
The use of certain heterocyclic derivatives for treating parasitic protozoa infections in mammals, in particular bovine trichomoniasis and giardiasis, is disclosed.
- Berkeley CA, US Ching Ming WANG - El Cerrito CA, US Michael PRADOS - Oakland CA, US Vinayak NAGPAL - Berkeley CA, US
International Classification:
G01S 7/295 G01S 7/288 G01S 13/931 G01S 13/87
Abstract:
The present disclosure provides a system for processing radar data. The system may comprise a frequency generator configured to generate a reference frequency signal; a timing module configured to generate a shared clock signal or a plurality of timing signals; and a plurality of radar modules in communication with the frequency generator and timing module. The radar modules may be configured to: (i) receive the reference frequency signal and at least one of a shared clock signal and a timing signal, (ii) transmit a first set of radar signals based in part on the reference frequency signal and at least one of the shared clock signal and the timing signal, and (iii) receive a second set of radar signals reflected from a surrounding environment. The system may comprise a processor configured to process radar signals received by each radar module, by coherently combining radar signals using phase and timestamp information.
- Berkeley CA, US Antonio Puglielli - Berkeley CA, US Darsh Ranjan - Berkeley CA, US Christopher Hanks - Berkeley CA, US Man Chung Chim - Berkeley CA, US Vinayak Nagpal - Berkeley CA, US Ching Ming Wang - Berkeley CA, US
International Classification:
G01S 13/931 G01S 13/86 G01S 7/28
Abstract:
A system for determining a spatial disposition or a characteristic of a target external to a terrestrial vehicle is provided. The system may comprise a radar antenna array comprising a transmitting antenna and a receiving antenna, a vehicle position sensor configured to obtain a spatial disposition of the terrestrial vehicle, and a controller operatively coupled to the radar antenna array and the vehicle position sensor. The controller can be configured to synchronize successive radar pulses transmitted by the transmitting antenna and a plurality of signals received by the receiving antenna, with the spatial disposition of the terrestrial vehicle obtained by the vehicle position sensor substantially in real time as the terrestrial vehicle is in motion, to generate a set of synchronized measurements, and use the set of synchronized measurements to determine (i) the spatial disposition of the target relative to the terrestrial vehicle or (ii) the characteristic of the target.