Imo Govt To Embark On Massive Renovation Of Schools In 3 LGs

The Federal Republic of Nigeria, Africa’s most populous country is in the West African sub-region, bordered by Niger in the north, Chad in the northeast, Cameroon in the east, and Benin in the west.

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A Career Guide in Engineering

Engineers specialize in different branches of engineering e.g. Mechanical, Electrical, Electronics, Chemical, Biomedical etc. They work in designing, planning large structures, maintenance, production, or testing of machines and equipment used in different sectors. Many engineers study management where their engineering background facilitates the marketing process and installation planning of engineering goods.

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Aug 4, 2013

About Civil Engineering

Civil engineering is about thinking big.
It is about serving society... It is about creating things for the benefit of millions of people.
FUTO provide research solutions and prepare graduates for the complex infrastructure challenges that face the society.


Pulpit rock

They have research strength in structures and are expanding our expertise and facilities to encompass sustainability, climate change and renewable energy.
Our staff expertise and laboratory facilities are muchsought after by our profession and industry partners as part of Their consulting services
Admission requirement for Civil Engineering in Futo

Civil Engineering futo admission requirement

Civil Engineering
admission requirements
Direct Entry Requirement:

At Least two ‘A’ level credits in Chemistry and one of Zoology, Botany, Agricultural Science, Biology, Mathematics, Physics, and Economics.

At Least Upper Credit OND/HND in Agriculture. Candidates must in addition meet UTME ‘O’ Level requirements

O LEVEL REQUIREMENTS
At least five ‘O’ Level credits in English Language, Chemistry, Mathematics, Physics, Biology or Agriculture, and any other science subject in not more than two sittings

UTME Subjects
English Language, Mathematics, Chemistry, and Physics.
SPECIAL CONSIDERATION (WAIVER) REMARKS
FUTO requires (i) At least three ‘A’ Level credits in Physics, Mathematics and Chemistry. (ii) OND/HND at Upper Credit Level in Engineering and does not accept NCE. Candidates must in addition meet the UTME ‘O’Level requirements
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About Materials and Metallurgical Engineering (MME) Futo

Materials and Metallurgical Engineering (MME) or Materials Science and Engineering (MSE) – following modern trends in terminology.
Materials are essential to the construction of any engineering structure, from the smallest integrated circuit to the largest bridge. In almost every technology, the performance, reliability, or cost is determined by the materials used. As a result, the drive to develop new materials and processes (or to improve existing ones) makes Materials and Metallurgical Engineering one of the most important and dynamic engineering disciplines. The field is concerned with the design, manufacture, and use of all classes of materials (including metals, ceramics, semi­conductors, polymers, and biomaterials), and with energy, environmental, health, economic, and manufacturing issues relating to materials. The very nature of Materials and Metallurgical Engineering means that it cuts across other disciplines.
The dominant theme of Materials and Metallurgical Engineering is that the relationships among the structure, properties, processing, and performance of materials are crucial to their function in engineering systems.All engineering products utilize materials. The steel of automobiles, building structures, the materials for aircrafts and ocean-going vessels, the concrete of highways and the less apparent but equally important materials of electronic circuits, the carbide bits on oil- well drills etc., are all engineering materials. Each of these products requires materials with specific characteristics such that the material can be processed into the final products satisfactorily and economically and the products will behave appropriately in service. Materials and their properties are important design considerations in many engineering projects. In fact, in many cases the success of major new technologies hinges critically upon new and unforeseen demands on materials performances.
Metallurgical Engineering is the study of the production, properties and uses of metals and alloys. It had been traditionally offered by many universities worldwide because of the extensive use of metals, for instance, iron and steel, aluminum, copper, titanium, magnesium, beryllium etc. and their alloys in engineering products. Within the decade preceding 1970, concurrent with the nucleation and growth of new disciplines, came the establishment of the Materials Engineering course. It is closely allied to Metallurgical Engineering but broadens the scope of engineering materials beyond that of metals and their alloys. Materials Engineering is therefore interested in the properties of a wide range of materials including electronic materials, ceramics, glass, polymers and many other natural and man-made materials.
The Materials or Metallurgical Engineer must therefore know how to manufacture and specify the materials for suspension bridges, TV sets, computers, oil refineries, rocket motors, nuclear reactors, supersonic transport vehicles, ocean-going vessels, electricity generating stations, automobiles, telecommunication equipment etc.
Students are therefore adequately exposed to the physics and chemistry of materials: with emphasis on the structure-property relations, the changes in structure and the concomitant property changes realizable through thermal and mechanical treatments. The programme furthermore aims at interlacing the above knowledge with adequate engineering and technology content.
Materials and Metallurgical Engineering (MME). Admission requirements

Materials and Metallurgical Engineering (MME) futo admission requirement

Materials and Metallurgical Engineering (MME)
admission requirements
Direct Entry Requirement:

At Least two ‘A’ level credits in Chemistry and one of Zoology, Botany, Agricultural Science, Biology, Mathematics, Physics, and Economics.

At Least Upper Credit OND/HND in Agriculture. Candidates must in addition meet UTME ‘O’ Level requirements

O LEVEL REQUIREMENTS
At least five ‘O’ Level credits in English Language, Chemistry, Mathematics, Physics, Biology or Agriculture, and any other science subject in not more than two sittings

UTME Subjects
English Language, Mathematics, Chemistry, and Physics.
SPECIAL CONSIDERATION (WAIVER) REMARKS
FUTO requires (i) At least three ‘A’ Level credits in Physics, Mathematics and Chemistry. (ii) OND/HND at Upper Credit Level in Engineering and does not accept NCE. Candidates must in addition meet the UTME ‘O’Level requirements

About Polymer and Textile Engineering Futo

FUTO's department of Polymer and Textile Engineering is concerned with the Science, Technology and Engineering of materials formed from large molecules.The programme is linked with two primary industries namely, textile and polymer/plastic processing industries. Textile Industries converts fibres into yarns and fabrics which are used for curtains, carpets, fabrics and other furnishings in our homes and in a lot of industrial applications. Polymer based industries produce, such items as plastics, tyres, varnishes, resins, elastomers, printing inks, foams etc. These industries practically deal with the wide and ever expanding range of polymers and man-made fibres firmly based on science and engineering principles.
A five year B. Eng. Degree programme is offered to students. The first year is broadly based on basic sciences including Mathematics, Physics, Chemistry, Biology, Engineering Drawing, Workshop practice and General studies. During the second year, the students take more courses in fundamental sciences, engineering, statistics, computing and humanities to enable them grasp with engineering, technological and scientific principles in later studies. The courses in subsequent years cover all aspects of polymer and fibre science and technology, including polymer and fibre chemistry; polymer structureand properties, all aspects of textile technology comprising yarn manufacture, fabric production, dyeing and finishing of textiles; polymer processing and technology; rubber technology; analysis and testing, economics; production and financial management. Some optional courses in various areas of polymer and textile technology are offered particularly in the fifth-year to meet the individual requirements of students and to give the programme acertain degree of specialization. There is one semester long vacation spent on approved individual industrial attachment and training. The B. Eng. Degree emphasizes all the common core-engineering courses which are prescribed by the school of Engineering and Engineering Technology to enable students become COREN Registered. Final yearprojects (PTE 515/516) are tailored to embrace chemical,physical, technology and engineering problems in application, polymer education and practice of Polymer and Fibre based industries in Nigeria in particular
Polymer courses
Admissio Requirements