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Carol Anway

Physics Instructor

Physicist

North Bend, Washington, United States

Section title

Carol Anway's Email Addresses & Phone Numbers

Carol Anway's Work Experience

Green River Community College

Physics Instructor

September 2002 to 2003

Kent, Washington

Boeing

Operations Analyst

September 1997 to September 2006

Greater Seattle Area

Hi-Techniques, Inc.

Manager of Scientific Applications

October 1995 to August 1997

Madison, Wisconsin

Carol Anway's Education

University of California, Los Angeles

Master of Science (MS), Physics

1987 to 1989

University of California, Los Angeles

Doctor of Philosophy (PhD), Physics

1989 to 1995

Hamline University

Bachelor of Arts (BA), Physics and Math, minor in Computer Science, Magna Cum Laude

1983 to 1987

Carol Anway's Professional Skills Radar Chart

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Calm under pressure
Innovative
Thoughtful

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56% Left Brained
44% Right Brained

Carol Anway's Estimated Salary Range

About Carol Anway's Current Company

Green River Community College

Physics Instructor, Green River Community College, 2002 – 2003. I taught calculus-based introductory physics series to first-year science and engineering majors. Before that, I taught high-school-level algebra. It was a lot of fun to watch the light go on in the students’ faces as they understood the material.

Frequently Asked Questions about Carol Anway

What company does Carol Anway work for?

Carol Anway works for Green River Community College


What is Carol Anway's role at Green River Community College?

Carol Anway is Physics Instructor


What is Carol Anway's personal email address?

Carol Anway's personal email address is c****[email protected]


What is Carol Anway's business email address?

Carol Anway's business email addresses are not available


What is Carol Anway's Phone Number?

Carol Anway's phone (206) ***-*230


What industry does Carol Anway work in?

Carol Anway works in the Airlines/Aviation industry.


About Carol Anway

📖 Summary

Physics Instructor @ Green River Community College Physics Instructor, Green River Community College, 2002 – 2003. I taught calculus-based introductory physics series to first-year science and engineering majors. Before that, I taught high-school-level algebra. It was a lot of fun to watch the light go on in the students’ faces as they understood the material. From September 2002 to 2003 (1 year) Kent, WashingtonOperations Analyst @ Boeing Operations Analyst, the Boeing Company, Operations Analysis Group 1997-2006.Technical Analyst. 2002 to 2006. I developed a hierarchy of technical performance metrics and a high-level simulation to populate the hierarchy with accurate and dependable values for tracking system performance during the design and development stages. Analyzed system performance and technical aspects of system effectiveness. Independently modeled and studied a timeline analysis of operational steps involved in using the proprietary system. Influenced and improved the design of the system. I enjoyed making processes mathematical to help me and others analyze them. Technical Lead in the command and control studies group, 1997 to 2002, part of the Systems Assessment group. We explored ways to predict experimentally verifiable quantities in the field of military command and control, a branch of operations research. Unlike other fields, command and control doesn’t have a recognized set of measures to study for theory or experiment. We enjoyed looking for the patterns, and coming up with ways to apply physics principles in a fuzzier field. Evaluated proposed new Boeing projects such as the Theater Mobile Information Grid, a communications system proposed for AWACS and F-15, and the Coast Guard Deepwater program, a command and control architecture. These analyses required a variety of skills including elicitation in expert interviews, simulation, estimation, and database development. From September 1997 to September 2006 (9 years 1 month) Greater Seattle AreaManager of Scientific Applications @ Hi-Techniques, Inc. Managed manufacturing representatives in a sales area including one-third of the US. In unrepresented areas, I performed cold calls, sent literature to customers, arranged and performed demos of equipment, wrote quotes, followed up on sales. These responsibilities occupied a majority of my time. I particularly enjoyed visiting customers and learning about their tests.Trained new customers in the use of the equipment either solo-teaching at the customer’s facility or team-teaching at Hi-Techniques. I used prepared course materials in some cases and developed my own lecture notes and hands-on exercises in less standard situations.Sold $200,000 of data acquisition equipment in the first six months of 1997. Sold an equal amount in the later part of the year, and the company was able to reap additional sales from my starts for a full year after I left. From October 1995 to August 1997 (1 year 11 months) Madison, WisconsinResearch Assistant (Graduate Student) @ UCLA at Fermilab Studied Feasibility of Scintillating Fiber Tracking for the SDC Collaboration at the Superconducting Super Collider (SSC), UCLA, 1988-1990, We established the feasibility of using solid state photomultipliers with scintillating fibers to detect particle radiation. As an independent project, created a computer model of fiber tracking components. I was the youngest member of the SDC collaboration at the SSC.Ran data-taking electronic systems and performed trouble-shooting on shift at CDF during the 1991-2 data-taking run. Calibrated detector using hardware interface programs and a relational database. Analyzed data for defective calorimetry electronics. Collaborated with an electronics engineer on a project to write and run a software program to test DACs (digital to analog converters) in place on the detector. Contributed and helped organize a manual for the other ACEs. Enjoyed the fast-paced atmosphere on shift, and knowing that I was making an important contribution to a project bigger than me. Wrote Computer Model, 1991-1995. Collaborated with a theory graduate student to write the RareB Monte Carlo program. The goal of this project was to model rare high energy physics decays using state-of-the-art theoretical calculations. Our finished program was used by CDF and by a European collaboration to estimate prospects for these decays in high energy collisions. The people who used the package commended me on the clarity and modularity of the code.Independently analyzed the CDF 1992-1993 dataset to search for rare decays of the B meson. 1992-1995. Wrote my own Fortran package and made use of the CDF software library and the CERN software library. Graduate advisor was Dr. Thomas Müller. The work was published in Physical Review Letters in summer of 1995. From September 1988 to September 1995 (7 years 1 month) Los Angeles and Greater Chicago AreaPhysicist @ Boeing Physicist, the Boeing Company, Electromagnetic Effects Group, 2006-2020.Data analyst for critical element tests of structural component lightning performance under a variety of current pulse amplitudes.Task Lead for scale-up of bonded joints, since 2008. Defined research path and experiments to capture the critical physics properties of bonded joints for simulation of lightning strike. Cosite Interference Analyzer, 2009. Wrote the interference calculator portion of BECAT (Boeing Enterprise Cosite Analysis Tool). The interference calculator is a dynamic link library in C++ hooked to a graphical user interface and database for control and input. The tool replaces numerous spreadsheet tools in use throughout Boeing with one flexible tool, verified and standard. Wrote the documentation on the whole tool. Invented the Electric Field Whistle in 2008. The whistle activates in the changing electric fields in the few seconds prior to a lightning strike on an aircraft. It emits a radio frequency signal that can be detected in the cockpit. This radio signal might sound an alarm or cause electronics to change to a safe mode of operation during the likely subsequent lightning strike.Designed and developed a gas flow calibration test stand for ignition testing 2007. The gas flow controller for hydrogen can’t be calibrated in a permanent way by Boeing calibration because hydrogen’s specific heat is not constant with temperature. This problem plagued early efforts to develop a new standard of sparking thresholds for fuel tank applications. I developed a test stand based on water displacement that allows calibration on the fly. We built it and got an overall accuracy of 0.4%. From September 2006 to October 2020 (14 years 2 months) Greater Seattle Area


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In a nutshell

Carol Anway's Personality Type

Introversion (I), Intuition (N), Thinking (T), Judging (J)

Average Tenure

6 year(s), 7 month(s)

Carol Anway's Willingness to Change Jobs

Unlikely

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