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John Rohde Phones & Addresses

  • North Potomac, MD
  • Snohomish, WA
  • Minneapolis, MN
  • Ames, IA
  • Chippewa Falls, WI
  • Chippewa Falls, WI

Professional Records

License Records

John R Rohde

License #:
RS110856A - Expired
Category:
Real Estate Commission
Type:
Real Estate Salesperson-Standard

Medicine Doctors

John Rohde Photo 1

John P. Rohde

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Specialties:
Emergency Medicine
Work:
Vanderbilt University Medical Center Emergency
1313 21 Ave S 703 A Oxford House, Nashville, TN 37232
(615) 936-0087 (phone)
Education:
Medical School
University of Texas Medical School at San Antonio
Graduated: 1999
Languages:
English
Description:
Dr. Rohde graduated from the University of Texas Medical School at San Antonio in 1999. He works in Nashville, TN and specializes in Emergency Medicine. Dr. Rohde is affiliated with Vanderbilt University Medical Center.

Resumes

Resumes

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John Rohde

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Location:
United States
John Rohde Photo 3

John Rohde

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Location:
United States
John Rohde Photo 4

John Rohde

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Location:
United States

Publications

Us Patents

Bore Hole Rock Shear Tester And Method For Using Same

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US Patent:
45571473, Dec 10, 1985
Filed:
May 14, 1984
Appl. No.:
6/609967
Inventors:
John R. Rohde - Ames IA
John M. Pitt - Nevada IA
Assignee:
Iowa State University Research Foundation, Inc. - Ames IA
International Classification:
G01N 324
G01N 3324
US Classification:
73784
Abstract:
The bore hole rock shear testing device of the present invention comprises a case assembly having a longitudinal axis, a driving block, at least one wedge member, and a restraint member. The wedge member is positioned between the restraint member and the driving block and includes a rock engaging surface facing radially outwardly from the longitudinal axis of the case assembly. The driving block and the wedge member have complimentary tapered surfaces which cause the rock engaging surface to be urged radially outwardly when the wedge member is compressed or squeezed between the driving block and the restraint member. Power means are provided for moving the driving block toward the restraint member, and a restraint mechanism selectively holds the restraint member against movment. The restraint mechanism is movable to an inoperative position which results in both outward radial forces and axial forces being applied simultaneously to the rock engaging surface when the driving block is moved toward the wedge member and the restraint member.
John A Rohde from North Potomac, MD, age ~41 Get Report