Structural Engineering Degree Online

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Can You Get A Structural Engineering Degree Online

The Structural Engineering specialization within CEE Online includes the following core courses and advanced electives. Students can select courses for specialization or breadth of study, and all students are required to complete a Plan of Study, which must be submitted and approved during the first semester of graduate work.

Structural Engineering via distance learning

Courses list (each subject accounts for 3 academic credits):

1 BIU Earned Credit = 1 USA Semester Credit (15 hours of learning) = 1 ECTS Credit (30 hours of study). 
This course is suitable for company training.

Foundation Engineering
This course presents methods of subsurface exploration and sampling, shallow foundations, lateral earth pressure theories, and earth retaining systems. It explains the engineering properties of soils and how they relate to design and construction including soil identification and classification.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Materials Science
This course explains how materials are manufactured; why they behave the way they do; how they are fabricated into structural objects-parts; and how they can be compounded into alloys, reinforced composite structures, and flexibilized toughened structures. It considers the properties of materials utilized in practice of engineering, and the atomic, molecular, and crystalline structure of metals, ceramics, composites, and polymeric materials.
Academic Supervisor: Wolf Dettmer

Construction Materials & Assemblies
This course examines the principles, techniques, equipment, and materials used in the construction industry. It focuses on selecting the proper materials and equipment for specific construction tasks and estimating costs. It evaluates the properties of building materials such as: concrete, brick, wood, steel, plastics, synthetic fibers, adhesives, sealants, and composites.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Architectural Structures
This course deals with the structural systems behavior statics, and force analysis; the study of the strength and properties of materials; and the shapes of structural elements with respect to their effectiveness in resisting stresses. It includes stress and strain, analysis and design of beams and columns, and it examines forces on buildings (snow, live loads, wind, and earthquake).
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Concrete Design & Construction
This course explores the design of reinforced concrete structures. It presents the mechanics of structural concrete in bending, shear, and axial forces, and the structural behavior and design of bricks, tiles, and masonry. It includes beams, slabs systems, columns, foundations, retaining walls, and concrete.
Academic Supervisor: Graeme Dean Hamilton

Steel Design & Construction
This course explores the mechanics, structural behavior, and design of steel construction. It examines steel tension members, beams, columns, and their combinations in addition to the elastic and plastic methods employed. It also portrays the design of bolted and welded connections and the structural design of steel bridges and frames of buildings.
Academic Supervisor: Graeme Dean Hamilton

Wood Design & Construction
This course explores the design methods related to wood structures. It examines the nature of wood as a building material, plywood, glued laminated wood, timber piles and pile foundations, pole buildings, and conventional wood building framing.
Academic Supervisor: Graeme Dean Hamilton

Building Technology
This course presents important issues of building technology namely heating, cooling, plumbing, electrical distribution, and fire protection systems and emphasizes on the aspects of their design, construction, budgeting, and problem solving. It presents solutions for achieving energy-efficient buildings, for evaluating thermal performances, materials and envelopes resistance, air flow through and around buildings, and strategies for integrating technology into the architectural design process.
Academic Supervisor: Graeme Dean Hamilton

Ground Mechanics
This course examines the physical and engineering properties of soils considering soil mechanics, soil composition, soil structure, soil consolidation, shear strength, effective stress principle, water flow through soil, stability analysis of slope, earth pressure, bearing capacity, soil dynamics, ground motion, vibration, and earthquake engineering.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Ground Retaining Structures
This course explores special problems in ground retaining structures and construction-related soil engineering. It reviews diaphragm walls, continuous bored piles, cofferdams, shoring and underpinning methods, and other ground retaining structures.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Geotechnical Engineering
This course explains the characteristics of geological materials; soil and rock classifications; physical, mechanical, and hydraulic properties; stress principles; soil and rock improvement; seepage, consolidation; stress distribution; and settlement analysis. It discusses shear strength, bearing capacity, lateral earth pressures, slope stability, and underground construction. It examines the design of shallow and deep foundations, retaining walls, tunnels, and other earth and rock structures.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Structural Engineering
This course deals with the structural engineering principles and design techniques. It is a must for every engineer and architect who works with the design of buildings, bridges, and other structures. It provides concise and up-to-date information on the planning, design, and construction of a variety of engineered structures.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Civil Engineering
This course provides a valuable source on civil engineering principles and techniques. It also consider the management of many civil engineering projects and incorporates innovations in design, construction, materials, and equipment.
Academic Supervisor: Mohamed Abdallah Naguib El-Reedy

Admission requirements

How To Get A Structural Engineering Degree

For official admission status at Bircham distance education university; you need to send in a filled out, dated, and signed official Application for Admission. You may download this application form from the website or request it by email or mail. Please send this application and enclosed documents to our address. You may also submit this application and attached documents by email in a PDF Format.

Allow 10 business days for processing.

All applicants must:

* Fill out the application for admission
* Submit one ID-sized photo
* ID card or passport
* Date and sign the application

All Bachelor’s, Master’s, & Doctorate applicants also must:

* Attach a Curriculum Vitae (Resume)
* Submit registration Fee of 200 €uros or 250 US$ (contact BIU Office for payment details)
* Include copies of diplomas, transcripts, relevant documents
* Include any additional program proposal, scholarship request, etc. (optional).

Bircham International University issues an admission certificate after receiving your complete application for admission. This document will show the amount of credits transferred and validated from previous education and experience, and the amount of credits required to complete the distance learning degree program’s major. Bircham University can not perform this evaluation without the complete application for admission.

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