トピック: Industrial and Production Engineering
- LIGHTWEIGHT FOAMED CONCRETE WITH COIR, BAGASSE AND POLYPROPYLENE FIBER: A SUSTAINABLE APROACH /
- DEVELOPMENT AND MECHANICAL CHARACTERIZATION OF RAMIE FIBER REINFORCED BIO-COMPOSITE WITH EPOXY MATRIX AND MUSTARD OIL CAKE FILLER FOR LOW-LOAD AUTOMOBILE PARTS APPLICATION /
- FABRICATION & CHARACTERIZATION OF CORN-STSRTCH BASED BIOPLASTIC REINFORCED WITH CORN HUSK FIBERS /
- SUPPLY CHAIN RESILIENCE MODELING FOR RMG INDUSTRY IN BANFLADESH; AN INTELLIGENT APPROACH /
- DEVELOPMENT OF BIODEGRADABLE POLYBAG USING SUGARCANE BAGASSE FIBER AND CORN STARCH BY ANALYSING OF DIFFERENT MATERIALS RATIO /
- OPTIMIZATION OF MOS2 NANOPARTICLE ENRICHED GREEN LUBRICANT FOR ENHANCED MACHINABILITY OF TI-6AL-4V ALLOY /
トピック: This Thesis Paper of IPE in BSc Program
- LIGHTWEIGHT FOAMED CONCRETE WITH COIR, BAGASSE AND POLYPROPYLENE FIBER: A SUSTAINABLE APROACH /
- DEVELOPMENT AND MECHANICAL CHARACTERIZATION OF RAMIE FIBER REINFORCED BIO-COMPOSITE WITH EPOXY MATRIX AND MUSTARD OIL CAKE FILLER FOR LOW-LOAD AUTOMOBILE PARTS APPLICATION /
- FABRICATION & CHARACTERIZATION OF CORN-STSRTCH BASED BIOPLASTIC REINFORCED WITH CORN HUSK FIBERS /
- SUPPLY CHAIN RESILIENCE MODELING FOR RMG INDUSTRY IN BANFLADESH; AN INTELLIGENT APPROACH /
- DEVELOPMENT OF BIODEGRADABLE POLYBAG USING SUGARCANE BAGASSE FIBER AND CORN STARCH BY ANALYSING OF DIFFERENT MATERIALS RATIO /
- OPTIMIZATION OF MOS2 NANOPARTICLE ENRICHED GREEN LUBRICANT FOR ENHANCED MACHINABILITY OF TI-6AL-4V ALLOY /
著者: Supervised by AKM Nurul Amin
- OPTIMIZATION OF MOS2 NANOPARTICLE ENRICHED GREEN LUBRICANT FOR ENHANCED MACHINABILITY OF TI-6AL-4V ALLOY /
- MULTI-OBJECTIVE OPTIMIZATION OF PARAMETERS IN HIGH-SPEED MACHINING OF H13 UNDER HYBRID NANO-MQL USING RSM, GA AND MOPSO /
- OPTIMIZATION OF MACHINING PERFORMANCE IN HYBRID NPMEDM OF INCOME 718 WITH RSM AND ANN APPLICATION /
- OPTIMIZATION OF PROCESS PARAMETERS MIXED EDM OF Ti-6Al-4V USING RSM NANG POWDER /
- OPTIMIZATION OF HIGH-SPEED END MILLING OF INCONEL 718 USING AI₂O3, DISPERSED NATURAL OIL IN MOL WITH RSM AND GA-ANN /
著者: Supervised by Col Syed Rashedul Haque
- DEVELOPMENT OF BIODEGRADABLE POLYBAG USING SUGARCANE BAGASSE FIBER AND CORN STARCH BY ANALYSING OF DIFFERENT MATERIALS RATIO /
- BIO-BASED POLYURETHANE FOAM REINFORCED WITH AGRICULTURAL WASTE FIBRES/
- COMPARATIVE ASSESSMENT OF COMMERCIAL AND OYSTERSHELL BIOWASTE DERIVED HYDROXYAPATITE AS SUSTAINABLE REINFORCEMENTS IN A190Zn10 METAL MATRIX COMPOSITES /
- FABRICATION AND CHARACTERIZATION OF PLA-CASSAVA STARCH BIODEGRADABLE FILMS USING HOT PRESSING /
- MICROSTRUCTURES AND MECHANICAL PROPERTIES OF HYDROXYAPATITE BIO-CERAMICS EXTRACTED THROUGH EGGSHELL AND FABRICATED BY SLA 3D PRINTING /
類似資料: LIGHTWEIGHT FOAMED CONCRETE WITH COIR, BAGASSE AND POLYPROPYLENE FIBER: A SUSTAINABLE APROACH /
- DEVELOPMENT OF BIODEGRADABLE POLYBAG USING SUGARCANE BAGASSE FIBER AND CORN STARCH BY ANALYSING OF DIFFERENT MATERIALS RATIO /
- BIO-BASED POLYURETHANE FOAM REINFORCED WITH AGRICULTURAL WASTE FIBRES/
- INVESTIGATION OF PROPERTIES OF HYBRID NATURAL FIBER REINFORCED COMPOSITE WITH JUTE, BANANA AND BAMBOO FIBERS /
- SUPPLIER SEGMENTATION AND ALLOCATION OPTIMIZATION USING SF-SBWM: A SUSTAINABLE AND RESILIENT APPROACH /
- FABRICATION & CHARACTERIZATION OF CORN-STSRTCH BASED BIOPLASTIC REINFORCED WITH CORN HUSK FIBERS /
- COMPARATIVE ASSESSMENT OF COMMERCIAL AND OYSTERSHELL BIOWASTE DERIVED HYDROXYAPATITE AS SUSTAINABLE REINFORCEMENTS IN A190Zn10 METAL MATRIX COMPOSITES /
類似資料: DEVELOPMENT AND MECHANICAL CHARACTERIZATION OF RAMIE FIBER REINFORCED BIO-COMPOSITE WITH EPOXY MATRIX AND MUSTARD OIL CAKE FILLER FOR LOW-LOAD AUTOMOBILE PARTS APPLICATION /
- IMPROVEMENT OF VEHICLE EXHAUST BY USING MUSTARD OIL BASED BIO DIESEL / Shafquat Hasan Noor, Susmony Datta, Khandokar Shoveet Faraz .
- OPTIMIZATION OF INBOUND LOGISTICS OF FMCG AND AUTOMOBILE INDUSTRY USING FLEXSIM /
- BIO-BASED POLYURETHANE FOAM REINFORCED WITH AGRICULTURAL WASTE FIBRES/
- IMPROVING MECHANICAL PROPERTIES OF E-GLASS FIBER REINFORCED EPOXY COMPOSITES WITH FILLER MATERIALS /
- Automobile engineering /
- Automobile engineering /