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Nicholas Edward ChristensenLake Shore, UT

Nicholas Christensen Phones & Addresses

Spanish Fork, UT   

991 600, Springville, UT 84663    801-4919363   

Middletown, NJ   

Houston, TX   

Lakewood, CO   

Provo, UT   

Orem, UT   

Mentions for Nicholas Edward Christensen

Career records & work history

Lawyers & Attorneys

Nicholas Christensen Photo 1

Nicholas Christensen - Lawyer

ISLN:
900670471
Admitted:
1993
University:
Colorado State University, B.S., 1989
Law School:
William Mitchell College of Law, J.D., 1993

License Records

Nicholas James Christensen

Licenses:
License #: 70103924 - Active
Category: EMS Licensing
Issued Date: Jan 15, 2017
Expiration Date: Jun 30, 2018
Type: EMT-Basic

Nicholas Christensen resumes & CV records

Resumes

Nicholas Christensen Photo 38

Advertising Specialist

Location:
Omaha, Nebraska
Industry:
Marketing and Advertising
Work:
Brix - Greater Omaha Area Dec 2012 - Jul 2013
Marketing Manager
University of Nebraska–Lincoln - Lincoln, Nebraska Area Apr 2011 - Dec 2012
Marketing Assistant, Center for Science, Mathematics & Computer Education
Follett Higher Education Group - Lincoln, Nebraska Area Dec 2009 - Dec 2012
Sales Associate
Education:
University of Nebraska-Lincoln 2008 - 2012
Bachelor of Journalism, Advertising & Public Relations
Interests:
sports, music, reading, social media
Honor & Awards:
Kinman Oldfield Scholarship, 2011-2012
Nicholas Christensen Photo 39

Web Design/Development

Location:
Provo, Utah Area
Industry:
Design
Nicholas Christensen Photo 40

Nicholas Christensen

Nicholas Christensen Photo 41

Global Sourcing Product Manager At Target

Position:
Global Sourcing Product Manager at Target
Location:
Minneapolis, Minnesota
Industry:
Retail
Work:
Target - Greater Minneapolis-St. Paul Area since Sep 2011
Global Sourcing Product Manager
Target - Minneapolis, Minnesota Jun 2010 - Sep 2011
Senior Operations Analyst
Target - Minneapolis, Minnesota Jun 2008 - Jun 2010
Global Sourcing Analyst/Senior Analyst
Al Franken for Senate - Saint Paul, Minnesota Jan 2008 - Jun 2008
Finance Intern
Macalester College - Saint Paul, Minnesota May 2005 - Jun 2008
Residential Life Adminstrative Assistant
APDH Ecuador - Quito, Ecuador Sep 2006 - Dec 2006
Intern/Translator
Education:
University of Minnesota - Carlson School of Management 2010 - 2012
Master of Business Administration (M.B.A.), Marketing, Leadership Development
Macalester College 2004 - 2008
Bachelor of Arts, International Studies/Political Science
Skills:
Sourcing, Strategic Negotiations, Process Improvement, Project Management, Strategy, Change Management, Management, Manufacturing, Cross-functional Coordination, Forecasting, Strategic Financial Planning, Merchandising, Inventory Management, Cross-functional Team Leadership, Retail, Global Sourcing, Trend Analysis, Team Leadership, Supply Chain, Strategic Sourcing, Product Development, Supply Chain Management, Cross Functional Relationships
Interests:
Retail, Networking, Marketing, Supply Chain Logistics, Product Development, Sourcing, Strategic Communication, Vendor Relationship Management, Project Management, Negotiations, Strategic Planning, International Business
Honor & Awards:
February 2010 TSS Divisional Award January 2010 Outstanding Mentor Award
Nicholas Christensen Photo 42

Hss Ii At Bank Of America

Location:
Provo, Utah Area
Industry:
Banking

Publications & IP owners

Us Patents

Bearing Assemblies, Apparatuses, And Motor Assemblies Using The Same

US Patent:
2013015, Jun 20, 2013
Filed:
Mar 28, 2012
Appl. No.:
13/432224
Inventors:
S. Barrett Peterson - Orem UT, US
Jair J. Gonzalez - Provo UT, US
Kenneth E. Bertagnolli - Riverton UT, US
Debkumar Mukhopadhyay - Sandy UT, US
David P. Miess - Highland UT, US
Mark P. Chapman - Provo UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
Mohammad N. Sani - Orem UT, US
Assignee:
US SYNTHETIC CORPORATION - Orem UT
International Classification:
F16C 17/04
B21K 1/04
F16C 17/02
US Classification:
384368, 384420, 384129, 29898041
Abstract:
Bearing assemblies, apparatuses, and motor assemblies using the same are disclosed. In an embodiment, a bearing assembly may include a plurality of superhard bearing elements distributed circumferentially about an axis. Each of the superhard bearing elements may include a bearing surface. At least one of the plurality of superhard bearing elements may include at least one texture feature that may be formed in a lateral surface thereof. The bearing assembly may also include a support ring that carries the superhard bearing elements.

Method For Laser Cutting Polycrystalline Diamond Structures

US Patent:
2021016, Jun 3, 2021
Filed:
Feb 10, 2021
Appl. No.:
17/172682
Inventors:
- Orem UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
International Classification:
B24D 18/00
E21B 10/567
B23K 26/364
E21B 10/46
B24D 3/04
Abstract:
Methods of laser cutting polycrystalline diamond tables and polycrystalline diamond compacts are disclosed. Laser cutting of the polycrystalline diamond table provides an alternative to electrical-discharge machining (“EDM”), grinding with a diamond wheel, or lapping with a diamond wheel. Grinding or lapping with a diamond wheel is relatively slow and expensive, as diamond is used to remove a diamond material. EDM cutting of the polycrystalline diamond table is sometimes impractical or even impossible, particularly when the cobalt or other infiltrant or catalyst concentration within the polycrystalline diamond table is very low (e.g., in the case of a leached polycrystalline diamond table). As such, laser cutting provides a valuable alternative machining method that may be employed in various processes such as laser scribing, laser ablation, and laser lapping.

Energy Machined Polycrystalline Diamond Compact And Related Methods

US Patent:
2019008, Mar 21, 2019
Filed:
Jan 10, 2018
Appl. No.:
16/084469
Inventors:
- Orem UT, US
Nicholas Edward CHRISTENSEN - Spanish Fork UT, US
Ronald Wilford WARD - Pleasant Grove UT, US
Brandon Alan JOHNSON - Provo UT, US
Jason Clark CARDELL - Lehi UT, US
International Classification:
B23K 26/352
B24D 99/00
E21B 10/567
Abstract:
Embodiments disclosed herein are directed to energy beam ablation machining methods that are used to machine polycrystalline diamond tables (e.g., polycrystalline diamond compacts that each includes polycrystalline diamond tables). Embodiments disclosed herein also are directed to polycrystalline diamond tables machined according to at least one of the energy beam ablation machining methods disclosed herein.

Methods For Laser Cutting A Polycrystalline Diamond Structure

US Patent:
2018004, Feb 15, 2018
Filed:
Oct 4, 2017
Appl. No.:
15/724546
Inventors:
- Orem UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
International Classification:
B24D 18/00
E21B 10/567
E21B 10/46
B24D 3/04
B23K 26/364
Abstract:
Methods of laser cutting polycrystalline diamond tables and polycrystalline diamond compacts are disclosed. Laser cutting of the polycrystalline diamond table provides an alternative to electrical-discharge machining (“EDM”), grinding with a diamond wheel, or lapping with a diamond wheel. Grinding or lapping with a diamond wheel is relatively slow and expensive, as diamond is used to remove a diamond material. EDM cutting of the polycrystalline diamond table is sometimes impractical or even impossible, particularly when the cobalt or other infiltrant or catalyst concentration within the polycrystalline diamond table is very low (e.g., in the case of a leached polycrystalline diamond table). As such, laser cutting provides a valuable alternative machining method that may be employed in various processes such as laser scribing, laser ablation, and laser lapping.

Polycrystalline Diamond Compacts With Partitioned Substrate, Polycrystalline Diamond Table, Or Both

US Patent:
2016023, Aug 11, 2016
Filed:
Apr 20, 2016
Appl. No.:
15/134158
Inventors:
- Orem UT, US
Kenneth E. Bertagnolli - Riverton UT, US
Debkumar Mukhopadhyay - Sandy UT, US
David P. Miess - Highland UT, US
Mark P. Chapman - Provo UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
Mohammad N. Sani - Bracknell, GB
International Classification:
E21B 10/567
B24D 18/00
E21B 4/00
F16C 33/04
E21B 10/55
E21B 10/573
Abstract:
Embodiments of methods for at least partially relieving stress within a polycrystalline diamond (“PCD”) table of a polycrystalline diamond compact (“PDC”) by partitioning the substrate of the PDC, the PCD table of the PDC, or both. Partitioning may be achieved through grinding, machining, laser cutting, electro-discharge machining, or combinations thereof. PDC embodiments including at least one stress relieving partition are also disclosed.

Bearing Assemblies, Apparatuses, And Motor Assemblies Using The Same

US Patent:
2016018, Jun 30, 2016
Filed:
Mar 9, 2016
Appl. No.:
15/065192
Inventors:
- Orem UT, US
Jair J. Gonzalez - Provo UT, US
Kenneth E. Bertagnolli - Riverton UT, US
Debkumar Mukhopadhyay - Sandy UT, US
David P. Miess - Highland UT, US
Mark P. Chapman - Provo UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Edward Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
Mohammad N. Sani - Bracknell, GB
International Classification:
F16C 33/10
F16C 33/04
Abstract:
Bearing assemblies, apparatuses, and motor assemblies using the same are disclosed. In an embodiment, a bearing assembly may include a plurality of superhard bearing elements distributed circumferentially about an axis. Each of the superhard bearing elements may include a bearing surface. At least one of the plurality of superhard bearing elements may include at least one texture feature that may be formed in a lateral surface thereof. The bearing assembly may also include a support ring that carries the superhard bearing elements.

Method For Laser Cutting Polycrystalline Diamond Structures

US Patent:
2015023, Aug 27, 2015
Filed:
May 4, 2015
Appl. No.:
14/703741
Inventors:
- Orem UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
International Classification:
B24D 18/00
B24D 3/04
B23K 26/36
Abstract:
Methods of laser cutting polycrystalline diamond tables and polycrystalline diamond compacts are disclosed. Laser cutting of the polycrystalline diamond table provides an alternative to electrical-discharge machining (“EDM”), grinding with a diamond wheel, or lapping with a diamond wheel. Grinding or lapping with a diamond wheel is relatively slow and expensive, as diamond is used to remove a diamond material. EDM cutting of the polycrystalline diamond table is sometimes impractical or even impossible, particularly when the cobalt or other infiltrant or catalyst concentration within the polycrystalline diamond table is very low (e.g., in the case of a leached polycrystalline diamond table). As such, laser cutting provides a valuable alternative machining method that may be employed in various processes such as laser scribing, laser ablation, and laser lapping.

Method For Laser Cutting Polycrystalline Diamond Structures

US Patent:
2014036, Dec 18, 2014
Filed:
Jun 22, 2011
Appl. No.:
13/166007
Inventors:
Mark P. Chapman - Provo UT, US
Ronald W. Ward - Pleasant Grove UT, US
Nicholas Christensen - Spanish Fork UT, US
Damon B. Crockett - Mapleton UT, US
Assignee:
US SYNTHETIC CORPORATION - Orem UT
International Classification:
B24D 18/00
B24D 3/00
US Classification:
51307
Abstract:
Methods of laser cutting polycrystalline diamond tables and polycrystalline diamond compacts are disclosed. Laser cutting of the polycrystalline diamond table provides an alternative to electrical-discharge machining (“EDM”), grinding with a diamond wheel, or lapping with a diamond wheel. Grinding or lapping with a diamond wheel is relatively slow and expensive, as diamond is used to remove a diamond material. EDM cutting of the polycrystalline diamond table is sometimes impractical or even impossible, particularly when the cobalt or other infiltrant or catalyst concentration within the polycrystalline diamond table is very low (e.g., in the case of a leached polycrystalline diamond table). As such, laser cutting provides a valuable alternative machining method that may be employed in various processes such as laser scribing, laser ablation, and laser lapping.

Amazon

Nicholas Christensen Photo 44

Forensic Anthropology: Current Methods And Practice

Author:
Angi M. Christensen, Nicholas V. Passalacqua, Eric J. Bartelink
Publisher:
Academic Press
Binding:
Hardcover
Pages:
464
ISBN #:
0124186718
EAN Code:
9780124186712
Forensic anthropology has become a well-developed discipline which has seen a recent expansion in depth and scope as well as increased attention from the media and the legal system. This constantly evolving science requires a comprehensive introductory text that approaches forensic anthropology as a...
Nicholas Christensen Photo 45

Economic Modeling And Inference

Author:
Bent Jesper Christensen, Nicholas M. Kiefer
Publisher:
Princeton University Press
Binding:
Hardcover
Pages:
488
ISBN #:
0691120595
EAN Code:
9780691120591
Economic Modeling and Inference takes econometrics to a new level by demonstrating how to combine modern economic theory with the latest statistical inference methods to get the most out of economic data. This graduate-level textbook draws applications from both microeconomics and macroeconomics, p...
Nicholas Christensen Photo 46

Complexity And Criticality (Advanced Physics Texts)

Author:
Kim Christensen, Nicholas R. Moloney
Publisher:
Imperial College Press
Binding:
Paperback
Pages:
392
ISBN #:
186414517X
EAN Code:
9781864145175
International reprint edition. Paperback. Published in China. Contents in ENGLISH and totally same as US Edition.

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