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FE Exam | The distance between the two points
In this video, we dive into the method for calculating the distance between two points using the distance formula. You’ll learn how to apply this essential concept step-by-step, making it easy to understand and use in practice. Perfect for anyone studying geometry or preparing for the FE Exam, this tutorial will guide you through several examples to reinforce your understanding.
By the end of the video, you’ll be equipped with the skills to solve distance problems quickly and accurately. Don’t forget to like, comment, and subscribe for more engineering and math content!
https://youtu.be/rtyJLVhCNOk
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Thank you for your subscription.
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FE Exam | Why Slopes Must Be Equal?
In this video, we explore the concept of parallel lines and the mathematical condition that makes two lines parallel: having the same slope. We’ll break down what slope means, how to calculate it from a linear equation, and why having equal slopes ensures that lines never intersect. This explanation will be essential for anyone preparing for the FE Exam or those wanting to strengthen their understanding of coordinate geometry.
By the end of this video, you’ll be able to identify parallel lines easily and apply this knowledge to solve real-world engineering problems. Don’t forget to like, comment, and subscribe for more videos on engineering and math concepts!
https://youtu.be/EdeNTIwhBzk
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Introduction:
Are you preparing for the FE Exam, studying for university courses, or navigating the challenges of advanced high school math? Look no further! This concise yet comprehensive book on analytical geometry is designed to meet the needs of students and aspiring engineers alike.
Who is this book for?
• FE Exam Candidates: Analytical geometry is a crucial component of the exam, and this book simplifies complex concepts with practical examples.
• University Students: Perfect for those tackling geometry-related topics in engineering, mathematics, or physics.
• High School Students: A valuable resource for those aiming to excel in math and build a strong foundation for higher education.
Key Topics Covered:
• Cartesian Coordinates and Graphs
• Equations of Lines, Circles, and Parabolas
• Vectors and Their Applications
• Conic Sections and Transformations
• Distance, Midpoints, and Slopes
• Solving Systems of Equations Geometrically
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On the Object and Subject of Architecture and Capital Construction
Abstract.
Over the last decades, there has been a process of replacement in official language of documents significant for architectural practice of those terms that denote the object of architectural activity. “Capital construction object” (OKS) is aggressively replacing the formerly habitual “architectural object” and “buildings and structures”. This phenomenon is revealed
as a result of a conceptual and terminological analysis of several regulatory and legislative documents issued over the period from 1995 to 2022. Using an encyclopedic definition and based on the “life cycle” model of a building, the paper deduces the true meaning of the concept of OKS, as relating only to the construction stage, its unjustified claims to the role of an umbrella term covering all states of the created and operated objects. It is shown that only “building” and “architectural object”, but not OKS, are carriers of compositional, functional, and operational, consumer properties. The substitution of the former by the latter
in the vocabulary of architects and builders is theoretically unjustified and is fraught with problems for the entire architectural and construction business.
Kiyanenko Konstantin V.
(Vologda). Doctor of Sciences in Architecture, Professor, Adviser of RAACS. Moscow Institute of
Architecture (State Academy) (11/4 Rozhdestvenka st., block 1, bldg. 4, Moscow, 107031. MARKHI); Adjunct Professor of the RUDN
University” (6 Miklukho-Maklaya Street, Moscow, 117198. RUDN). E-mail: kiyanenko_k@yahoo.com
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For our Russian-speaking subscribers, we’re excited to announce the launch of a new Telegram channel crafted specifically with your needs in mind. This channel will feature a refreshed approach to content creation, focusing on topics and formats that are tailored for our Russian audience, and all content will be presented exclusively in Russian. Join us there for insightful, relevant content that speaks directly to you. Here’s the link to subscribe:
https://t.me/+14UBZkprtsExZmVi
Для наших русскоязычных подписчиков мы рады представить новый Telegram-канал, созданный специально с учетом ваших интересов. На этом канале вас ждет свежий подход к созданию контента, с акцентом на темы и форматы, ориентированные на русскоязычную аудиторию. Весь контент будет представлен исключительно на русском языке. Присоединяйтесь к нам, чтобы получать актуальную и полезную информацию, которая говорит с вами на одном языке. Вот ссылка для подписки:
https://t.me/+14UBZkprtsExZmVi
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The Engineer’s Creed (NSPE)
As a Professional Engineer, I dedicate my professional knowledge and skill to the advancement and betterment of human welfare.
I pledge:
• To give the utmost of performance;
• To participate in none but honest enterprise;
• To live and work according to the laws of man and the highest standards of professional conduct;
• To place service before profit, the honor and standing of the profession before personal advantage, and the public welfare above all other considerations.
In humility and with need for Divine Guidance, I make this pledge.
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The American Society of Civil Engineers (ASCE), founded in 1852, is one of the oldest and largest professional organizations for civil engineers. ASCE’s mission is to advance the civil engineering profession and improve society’s quality of life through sustainable infrastructure development. It provides resources for professional growth, including standards, publications, and educational programs.
ASCE is known for publishing the Infrastructure Report Card, which evaluates the state of U.S. infrastructure and influences policy decisions. The organization sets global standards, promotes innovation, and advocates for engineers’ interests in legislation. ASCE’s headquarters are in Reston, Virginia, and its impact extends worldwide.
Visit their official site: www.asce.org.
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Dream. Plan. Build. 🏠
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General Contractor (GC)
The General Contractor is the main entity responsible for managing the construction process. This role involves overseeing all aspects of the project on-site, coordinating the activities of subcontractors, and ensuring that work is completed according to the project’s specifications, schedule, and budget.
The General Contractor also manages materials, equipment, and labor, ensuring that safety and quality standards are met. Acting as the main point of contact between the client and the construction team, the General Contractor regularly updates the client on progress and addresses any challenges that may arise during the project.
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In the United States, various types of concrete are used depending on project requirements and environmental conditions. Here are the main types of concrete commonly used in construction:
1. Ordinary Concrete: Used for general construction purposes, such as foundations, sidewalks, and walls. It consists of cement, water, and aggregates.
2. Reinforced Concrete: Contains steel reinforcement bars or mesh to improve tensile strength. It is used in load-bearing structures, bridges, and high-rise buildings.
3. Prestressed Concrete: Includes pre-tensioned or post-tensioned steel wires or cables to handle greater loads. It is commonly used in bridges, slabs, and structures with long spans.
4. Lightweight Concrete: Made with lightweight aggregates such as expanded clay or glass to reduce the structure’s weight. It is used in buildings for improved insulation and reduced structural load.
5. High-Strength Concrete: Has a compressive strength greater than 6000 psi. It is used for skyscrapers and structures that require high durability and load-bearing capacity.
6. Self-Consolidating Concrete (SCC): Can flow and compact under its own weight without the need for mechanical vibration. It is ideal for complex forms and heavily reinforced structures.
7. Fiber-Reinforced Concrete: Contains fibers (glass, steel, or synthetic) to increase strength and reduce cracking. It is used in industrial floors, pavements, and construction projects where enhanced durability is needed.
8. Pervious Concrete: Has a high porosity, allowing water to pass through it. It is used for environmentally friendly pavements and parking lots to improve water drainage.
9. High-Performance Concrete (HPC): Designed for enhanced strength, durability, and resistance to harsh conditions. It is often used in infrastructure projects such as bridges and tunnels.
These types of concrete are used for various applications, providing optimal performance and durability in construction projects across the country.
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The elections will be held on November 5, 2024. Don’t forget to vote! 🇺🇸
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Subcontractor
Subcontractors are specialized professionals or companies hired by the General Contractor to complete specific tasks within the construction project.
Each subcontractor focuses on a particular area, such as electrical work, plumbing, HVAC (heating, ventilation, and air conditioning), or interior finishing. They work under the coordination of the General Contractor and ensure their specialized tasks are completed according to project specifications, safety standards, and schedules.
Subcontractors bring expert skills to their specific roles, contributing to the overall quality and efficiency of the construction process.
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Halloween originated from the ancient Celtic festival of Samhain, where people lit bonfires and wore costumes to ward off evil spirits. With the spread of Christianity, Samhain evolved into All Hallows’ Eve. In the 18th and 19th centuries in the U.S., new traditions emerged, including carving pumpkins (jack-o’-lanterns) and dressing up as spooky characters.
The commercialization of Halloween in the 20th century brought familiar decorations like cobwebs, skeletons, and ghosts. Today, it’s a vibrant holiday marked by elements of horror and fun.
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Друзья, на нашем канале начали появляться многочисленные комментарии с негативными заявлениями, что якобы мы приносим политику в наше инженерное сообщество, что администрация “продалась” и занимает ту или иную позицию. Хочу прояснить: наш канал посвящен исключительно знаниям и профессиональному развитию в инженерии, и мы стремимся объединять людей, а не разъединять их.
Мне довелось работать с множеством украинцев здесь, в Америке, и наше общение всегда было дружелюбным и уважительным. Никогда не сталкивался с негативным отношением к себе как к русскому. Эти люди, несмотря на все сложности, поддерживают друг друга и окружающих, что заслуживает уважения. Это ещё раз подтверждает, что разногласия, разделяющие нас, не исходят от простых людей, а нацелены на то, чтобы посеять вражду и недоверие среди нас.
Мы уверены, что знание не имеет границ и национальностей, и будем продолжать делиться материалами о работе инженеров разных стран – будь то российские, японские, канадские, французские и многие другие. Однако, чтобы избежать непонимания, весь контент будет публиковаться на нейтральном английском языке.
Мы здесь для того, чтобы учиться, делиться опытом и поддерживать друг друга в профессиональном росте. Давайте не будем позволять негативу и предвзятости разрушить это сообщество. Спасибо за понимание и уважение к ценностям канала!
Friends, recently, we have seen numerous negative comments on our channel accusing us of bringing politics into our engineering community or being biased. Let me clarify: this channel is dedicated solely to knowledge and professional development in engineering, and our goal is to unite people, not divide them.
I have had the pleasure of working with many Ukrainians here in America, and our interactions have always been friendly and respectful. I have never experienced any negativity towards me as a Russian. Despite the challenges they face, these people support each other and those around them, which is truly admirable. This reinforces the belief that the divisions affecting us are not from ordinary people but are aimed at creating discord and distrust among us.
We firmly believe that knowledge has no borders or nationalities, and we will continue to share content highlighting engineers from around the world – Russian, Japanese, Canadian, French, and many others. However, to avoid misunderstandings, all content will be published in neutral English.
We are here to learn, share experiences, and support each other’s growth. Let’s not allow negativity and bias to undermine this community. Thank you for your understanding and respect for the values of this channel!
https://youtube.com/shorts/sfgatF9EmPE?si=mtHs75SM4no48AFQ
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The song “Mайже весна” by Okean Elzy
conveys a sense of hope, anticipation for change, and inner strength. The lyrics speak about personal struggles, the search for one’s path, and the desire to see light at the end of a challenging phase, similar to how spring arrives after a long winter.
The song is filled with symbolism of renewal and rebirth, which creates a strong parallel with the process of tackling complex problems and overcoming obstacles—both in engineering and in life.
https://youtu.be/ALYEHeZ-SgY?si=oII4-skTqbXcyFGj
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Surveyor
The Surveyor plays a critical role at the start of the construction process by providing precise measurements and mapping the land. They determine property boundaries, identify topographical features, and mark locations for buildings and infrastructure.
Surveyors use specialized tools and technology to ensure that the construction project is accurately positioned on the site, which is essential for maintaining structural integrity and adhering to local regulations. Their work lays the groundwork for architects, engineers, and contractors, helping to prevent costly adjustments later in the project.
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Client (Owner)
The Client or Owner is the person or organization that initiates, funds, and oversees the construction project. Their role is foundational, as they set the primary objectives, requirements, and expectations for the project, including its purpose, budget, and timeline. They often collaborate with architects and engineers in the initial planning stages to outline the vision and needs of the project. Additionally, they approve key decisions and ensure that the project aligns with their goals.
The Client may be involved throughout the project to track progress, approve adjustments, and review costs, especially in larger or more customized projects. In some cases, the Client may delegate day-to-day responsibilities to a Construction Manager or Project Manager, who acts on their behalf to monitor quality, budget, and timelines.
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Here are some outstanding Ukrainian engineers who made significant contributions to science and technology:
1. Yevhen Paton – An engineer and scientist in bridge construction and welding, founder of the Institute of Electric Welding in Kyiv. Paton developed unique welding technologies, and under his leadership, the famous Paton Bridge over the Dnipro was built—the world’s first all-welded bridge.
2. Igor Sikorsky – An aviation engineer and inventor, often called the “father of helicopters.” Born in Kyiv, he later emigrated to the U.S., where he developed the first production helicopter and other remarkable aircraft. His designs had a profound impact on the aviation industry.
3. Sergey Korolev – A leading Soviet engineer and space technology designer, born in Zhytomyr. He led the development of the first Soviet rockets and spacecraft, which made it possible to launch the first satellite and send the first human into space.
4. Stephen Timoshenko – The founder of modern mechanics and applied physics. Timoshenko’s work in elasticity theory and material strength laid the foundation for many engineering disciplines. He was born in Shpotivka (Ukraine) and later emigrated to the U.S., where he continued his research.
5. Vladimir Chelomey – A Ukrainian and Soviet engineer who made major contributions to the development of space technology and missile systems. Chelomey led the creation of satellites and spacecraft, including the famous Proton rocket.
These engineers left an invaluable legacy in global science and technology, impacting aviation, space exploration, mechanics, and construction.
