Boundary element formulations for crack growth analysis in concrete structures; Studies on shape-selective catalytic cracking of C12+-oil obtained from pyrolysis of waste plastics; A methodology for the selection of overall strategic performance measure for manufacturing business; Bus fleet maintenance modelling in a developing country; Hydrostatic pressure studies of semiconductor heterostructures and schottky diodes
Title
Boundary element formulations for crack growth analysis in concrete structures; Studies on shape-selective catalytic cracking of C12+-oil obtained from pyrolysis of waste plastics; A methodology for the selection of overall strategic performance measure for manufacturing business; Bus fleet maintenance modelling in a developing country; Hydrostatic pressure studies of semiconductor heterostructures and schottky diodes

Publication Information
Portsmouth : Wessex Institute of Technology, 1995

Physical Description
1 reel : positif ; 35 mm

General Note
5 judul dalam 1 mikrofilem

Subject Term
Boundary element methods
 
Concrete -- Cracking
 
Deformations (Mechanics)
 
Catalytic cracking
 
Pyrolysis
 
Plastic scrap -- Recycling
 
Performance -- Measurement
 
Efficiency, Industrial
 
Efficiency, Industrial -- Measurement
 
Buses -- Maintenance and repair -- Mathematical models
 
Buses -- Maintenance and repair -- Data processing
 
Semiconductors
 
Diodes, Schottky-barrier
 
Hydrostatic pressure

Added Author
Abd. Latif Saleh
 
Abdul Rahman Songip
 
Azhari Md. Salleh
 
Mohammad Ishak Desa
 
Zulkafli Othaman

Added Title
Studies on shape-selective catalytic cracking of C12+-oil obtained from pyrolysis of waste plastics
 
A methodology for the selection of overall strategic performance measure for manufacturing business
 
Bus fleet maintenance modelling in a developing country
 
Hydrostatic pressure studies of semiconductor heterostructures and schottky diodes

Thesis (PhD) - Wessex Institute of Technology, Plymouth, 1995


LibraryItem BarcodeCall NumberMaterial TypeItem Category 1
PSZ JB30000003869199MFL 8502 raNon Circulating MicrofilmMicrofilm