Laboratory study of rolling element bearings defect analysis [microfilm] /

Project Paper (Bachelor of Engineering (Mechanical) - University Teknologi Malaysia, 2002

Bibliographic Details
Main Author: Ngeow, Yeong Ken
Format:
Language:eng
Published: Skudai : Universiti Teknologi Malaysia, 2002
Subjects:
_version_ 1796649030207406080
author Ngeow, Yeong Ken
author_facet Ngeow, Yeong Ken
author_sort Ngeow, Yeong Ken
collection OCEAN
description Project Paper (Bachelor of Engineering (Mechanical) - University Teknologi Malaysia, 2002
first_indexed 2024-03-04T13:30:38Z
format
id KOHA-OAI-TEST:20755
institution Universiti Teknologi Malaysia - OCEAN
language eng
last_indexed 2024-03-04T13:30:38Z
publishDate 2002
publisher Skudai : Universiti Teknologi Malaysia,
record_format dspace
spelling KOHA-OAI-TEST:207552020-12-19T16:55:56ZLaboratory study of rolling element bearings defect analysis [microfilm] / Ngeow, Yeong Ken Skudai : Universiti Teknologi Malaysia,2002engProject Paper (Bachelor of Engineering (Mechanical) - University Teknologi Malaysia, 20020PSZJBLRoller bearingsAutomobilesIndustrial safetyAccidentsGas-turbinesHeat exchangersHeat
spellingShingle Roller bearings
Automobiles
Industrial safety
Accidents
Gas-turbines
Heat exchangers
Heat
Ngeow, Yeong Ken
Laboratory study of rolling element bearings defect analysis [microfilm] /
title Laboratory study of rolling element bearings defect analysis [microfilm] /
title_full Laboratory study of rolling element bearings defect analysis [microfilm] /
title_fullStr Laboratory study of rolling element bearings defect analysis [microfilm] /
title_full_unstemmed Laboratory study of rolling element bearings defect analysis [microfilm] /
title_short Laboratory study of rolling element bearings defect analysis [microfilm] /
title_sort laboratory study of rolling element bearings defect analysis microfilm
topic Roller bearings
Automobiles
Industrial safety
Accidents
Gas-turbines
Heat exchangers
Heat
work_keys_str_mv AT ngeowyeongken laboratorystudyofrollingelementbearingsdefectanalysismicrofilm