Lectures 1—6 are presented on their own pages, along with the lab exercises and homework assignments that accompanied each lecture. Lectures 7 and 8 are presented below; there were no associated labs and assignments, since students were working on the final project. Lecture 1: Compilation Pipeline. Lecture 3: C Memory Management. Lecture 4: Data Structures, Debugging. Don't show me this again. This is one of over 2, courses on OCW. Find materials for this course in the pages linked along the left.

No enrollment or registration. Freely browse and use OCW materials at your own pace. There's no signup, and no start or end dates. Knowledge is your reward.

Use OCW to guide your own life-long learning, or to teach others. We don't offer credit or certification for using OCW. Made for sharing. Download files for later. Send to friends and colleagues. Modify, remix, and reuse just remember to cite OCW as the source. Lectures and Assignments. Final Project. Need help getting started? Don't show me this again Welcome!This course is the largest of the introductory programming courses and is one of the largest courses at Stanford. Topics focus on the introduction to the engineering of computer applications emphasizing modern software engineering principles: object-oriented design, decomposition, encapsulation, abstraction, and testing.

Programming Methodology teaches the widely-used Java programming language along with good software engineering principles. Emphasis is on good programming style and the built-in facilities of the Java language. The course is explicitly designed to appeal to humanists and social scientists as well as hard-core techies.

In fact, most Programming Methodology graduates end up majoring outside of the School of Engineering. Prerequisites: The course requires no previous background in programming, but does require considerable dedication and hard work. FromI was a Senior Research Scientist at Google, where I continue to maintain a consulting appointment in the research group. My research interests include computer science education, machine learning, and information retrieval on the Web.

Please see my publications web page for more information. I was also an undergrad at Stanford and I loved it so much that I didn't want to leave. Outside of work, I enjoy spending time with family, playing the guitar, going on outdoor excursions, and sleeping which seems to be getting rarer and rarer these days. Stanford University. CSA - Programming Methodology. Course Details Show All.

Course Description. Sahami, Mehran.

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Lecture 1 general-information. Section Assignments. Course Sessions 28 : Show All. Lecture 1. Lecture 2. Lecture 3. Lecture 4. Lecture 5. Lecture 6. Lecture 7. Lecture 8. Lecture 9.

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Lecture No Handouts. No handouts. Download: Right Click, and Save As. Watch Now. Topics: String Processing, Tokenizers, Encryption.At present in the world of Structural Engineering, a lot of design enhancement and developments arises since the beginning of structural design. These developments include the use of structural design software which aims to enhance our ability as a structural engineer to come up with safe and sound designs especially when dealing with complex structures.

Although this structural engineering software helps us to make our life easier, bear in mind that the fundamental knowledge and experiences theoretical or practical is still important at the end of the day.

Because these software development are based on the fundamental knowledge that can only be understood by Structural Engineers. They are the following:. This software is perhaps the most powerful software in structural engineering when the design of buildings and towers is a concern.

ETABS is software that offers a set of tools for structural engineers who design multi-story buildings from simple to complex, whether they are working on single-story structures or the highest commercial skyscrapers and towers. Modeling tools and templates, code-based load prescriptions, analysis methods, and solution techniques, all coordinate with the grid-like geometry unique to this class of structure.

For a sophisticated assessment of seismic performance, modal and direct-integration time-history analyses may couple with P-Delta and Large Displacement effects. Nonlinear links and concentrated PMM or fiber hinges may capture material nonlinearity under monotonic or hysteretic behavior. Intuitive and integrated features make applications of any complexity practical to implement. Interoperability with a series of design and documentation platforms makes ETABS a coordinated and productive tool for designs which range from simple 2D frames to elaborate modern high-rises.

Download it now! SAFE integrates all aspects of the engineering design process in an easy and intuitive environment. The layout of the models is fast and efficient thanks to the sophisticated drawing tools, besides it presents import options to bring the data of the CAD programs, spreadsheets or databases.

The slabs or foundations can be of any shape and may include edges of circular shapes and spline curves. SAFE is immensely easy-to-use software for structural designers, providing all the necessary tools for the modeling, analysis, design and detailing of a concrete slab and foundation systems.

It is a software tailored for the engineering of elevated floor and foundation slab systems. Slab modeling, analysis, and design procedures feature a suite of sophisticated tools and applications, couple with post-tensioning, punching-shear, and beam detailing, and integrate the influence of soils, ramps, columns, braces, walls rectilinear or curvilinearand other interfacial elements.

Templates quickly initiate a model. To know and learn more about SAFE you can visit their website at www. It considered also as the most complete structural engineering software that can design and analyze almost every type of structures. It can perform comprehensive analysis and design for any size or type of structure. It designs and analyzes simple or complex structures for a wide range of loading conditions, including those induced by gravity such as dead and live loads, including skip conditions, in combination with lateral loads including wind and seismic.Lecture 1: Algorithmic Thinking, Peak Finding.

Lecture 2: Models of Computation, Document Distance. Lecture 3: Insertion Sort, Merge Sort. Lecture 4: Heaps and Heap Sort. Lecture 8: Hashing with Chaining. Lecture 9: Table Doubling, Karp-Rabin. Lecture Open Addressing, Cryptographic Hashing. Lecture Integer Arithmetic, Karatsuba Multiplication. Lecture Square Roots, Newton's Method. Lecture Dijkstra. Lecture Bellman-Ford.

Lecture Speeding up Dijkstra. Lecture Computational Complexity. Lecture Topics in Algorithms Research. Don't show me this again. This is one of over 2, courses on OCW.

Civil Engineering

Find materials for this course in the pages linked along the left. No enrollment or registration. Freely browse and use OCW materials at your own pace. There's no signup, and no start or end dates. Knowledge is your reward. Use OCW to guide your own life-long learning, or to teach others.

We don't offer credit or certification for using OCW. Made for sharing. Download files for later. Send to friends and colleagues. Modify, remix, and reuse just remember to cite OCW as the source. Lecture Videos. Course Home Syllabus.

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Subscribe to this collection.The determination of internal actions and deformations is called Structural Analysis OR The determination of response of the structure to loads. In designing a structure the engineer must account for the safety, aesthetics, serviceability and economic as well as environmental constraints. This completes the preliminary design of a structure.

Now the other part, that is Analysis of this preliminary designed structure starts. Analysis of a structure consists of:. The obtained results are used to re-design the structure to fulfill the required building codes and rules as well as other specifications that may be based on the specific climate, social interaction, culture or economy of the area.

Procedure for analysis for determining joint reactions for structure composed of pin-connected members.

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Structural engineering - explained (What is Structural Engineering ?)

Search AboutCivil. Similar Articles. Frame Structures - Types of Frame Structures. Definition and Types of Structures and Structural Members. What are Deep Beams? Minimum Steel Reinforcement in Concrete. Functions of Slab and Design of Slab. Methods of Simple Truss Analysis.

Training Course. Popular in this Category. Structural Engineering. Related Civil-Engg.Civil engineering encompasses all those work that involves construction, maintenance and innovative design of different aspects and things like bridges, canals, buildings and more.

In our video lectures, we will take you through the different steps which are involved in civil engineering. Some of the important lectures which we will be dealing with are as follows.

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This is not all as our video lectures will take you through a lot more details. We believe that civil engineering is one such area which needs thorough knowledge and by offering the best lectures and tutorials; we aim at educating people about the same. We will explore further details and those who choose to go through the details of all the video tutorials will be able to refine their knowledge in an apt manner.

Be all set to learn about stochastic hydrology, transportation engineering, fluid engineering and more. With these tutorials, civil engineers will be able to polish their expertise in their field of operation. Home All Courses Civil Engineering. Civil Engineering Civil engineering encompasses all those work that involves construction, maintenance and innovative design of different aspects and things like bridges, canals, buildings and more.

Introduction to Tekla Tedds: Engineering Calculation Automation

Showing 20 of 52 courses. Show: 16 32 48 Added to favorite list Remove from favorite list Added to compare list Remove from compare list. Earthquakes in Your Backyard.

engineering structures video introduction

UC Berkeley Fall Introduction to earthquakes, their causes and effects. General discussion of basic principles and methods of seismology and geological tectonics, distribution of earthquakes i.

Modern Construction Materials. Ground Water Hydrology. Vibration of Structures. Geotechnical Earthquake Engineering. Application of Soil Mechanics.One of the main forms of communication in engineering is the technical report. In the workplace, the report is a practical working document written by engineers for clients, managers, and other engineers.

This means every report has a purpose beyond the simple presentation of information.

engineering structures video introduction

Some common purposes are:. When planning an assignment report, your first step is to clarify its purpose; that is, what you want it to achieve. Many student reports are written as if to inform the reader about what the student knows, rather than to persuade the reader that the solution presented is valid and viable.

While reports vary in purpose and in the type of information they present e. This tutorial contains general engineering report writing guidelines only. For specific assignment, unit or departmental requirements, see your unit guide. Most reports contain the sections listed below. Where each report will differ is in the body; the sections you decide to include will depend on the type of report and the specific topic. You will usually be expected to decide on the structure of the body yourself.

The best way is to put yourself in the place of the reader. Ask yourself:. A report usually has the following components. Click on the links below or use the navigation sidebar to learn more about each section.

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Introduction to technical reports One of the main forms of communication in engineering is the technical report. Some common purposes are: To convince the reader of something. For example: to convince a government agency of the effect of a particular course of action to convince a client that your solution will fulfill their needs to convince the public that a proposed project will bring benefits To persuade the reader to do something.

engineering structures video introduction

For example: to persuade a government or council to adopt a particular course of action to persuade a client to choose one design over another to persuade an organisation to partner with your company on a project To inform the reader about something usually for a further purpose. For example: to provide a government department with information they will base policy on to instruct other engineers who will work from your plans to present the outcomes of a project to stakeholders When planning an assignment report, your first step is to clarify its purpose; that is, what you want it to achieve.

Reports are designed for: so they use: selective reading sections with numbered headings and subheadings quick and easy communication of information figures and tables bullet-point lists. Basic report structure Most reports contain the sections listed below. Ask yourself: What does the reader need to know first? What is the most logical way to develop the story of the project? Title page Summary Table of contents Introduction Body of the report Conclusions and recommendations References and appendices.

Next: The role of 'the literature'. Reports are designed for:.


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