Tom Lehrer is an American musician, satirist, and mathematician known for his humorous songs that often contain social commentary. His work primarily gained popularity in the 1950s and 1960s. Here are some of his notable albums: 1. **Songs by Tom Lehrer (1953)** - His debut album featuring songs like "The Elements" and "The Vatican Rag.
Tom Lehrer is an American singer-songwriter, satirist, and mathematician known for his humorous and satirical songs, many of which were written in the 1950s and 1960s. Some of his most famous songs include: 1. **"The Elements"** - A comedic song listing the chemical elements to the tune of "I Am the Very Model of a Modern Major General.
A three-dimensional edge-matching puzzle is a type of spatial puzzle that involves fitting together pieces with matching edges to form a coherent three-dimensional structure. Each piece is typically a geometric shape, such as a cube or a polyhedron, and features different colors, patterns, or designs along its edges. The challenge is to assemble these pieces such that adjacent edges match according to specific rules or criteria.
Tantrix is a puzzle and strategy game that involves tiles featuring colored paths. Each tile is rectangular and has a combination of colors on its edges, and the objective is to create connected paths or loops of a single color. The game can be played solo or with multiple players, and it often involves spatial reasoning and planning. In addition to the original tile-based game, there are variations and extensions of Tantrix, including different game modes and challenges.
The T puzzle is a type of dissection puzzle that involves rearranging a set of pieces to form a specific shape, often the letter "T." It typically consists of a few geometric shapes, such as squares and rectangles, which need to be fit together in a particular way without overlapping. The challenge of the T puzzle is not only to create the desired shape but also to do so using all the pieces provided.
Puzz 3D is a brand of three-dimensional jigsaw puzzles that were popularized in the 1990s. Unlike traditional flat jigsaw puzzles, Puzz 3D allows you to build structures in three dimensions, adding a new layer of complexity and engagement to puzzle solving. The puzzles typically consist of plastic pieces that interlock to create various architectural or landscape designs, such as famous landmarks, castles, or scenes from nature.
Ostomachion, also known as the "Savant's Puzzle" or "Archimedes' Puzzle," is an ancient Greek dissection puzzle attributed to Archimedes. It consists of a square divided into 14 different geometric pieces, which can be rearranged to form various shapes, including a square and potentially many other configurations. The challenge of the Ostomachion is to determine the number of distinct ways to rearrange the pieces to recreate the original square, as well as other shapes.
The Eternity puzzle is a geometrical jigsaw puzzle designed by British mathematician Alex Bellos and created by David J. Chalmers. Originally released in 1999, it consists of 209 irregularly shaped pieces that are meant to fit together to form a large, symmetrical shape, usually in the form of a 600-piece puzzle. The challenge is to assemble the pieces in such a way that they fit together perfectly without any gaps or overlaps.
Eternity II is a geometric puzzle created by Christopher Monckton, released in 2007 as a follow-up to the original Eternity puzzle from 1999. The puzzle consists of 256 square pieces, each with different shapes and designs. The objective is to fit all the pieces together to create a symmetrical 16x16 square. What sets Eternity II apart from other puzzles is its complexity and the difficulty level involved in solving it.
Working fluid selection refers to the process of choosing the appropriate fluid to act as the working medium in a thermodynamic cycle or system. This selection is crucial in various engineering applications, such as in refrigeration, HVAC (heating, ventilation, and air conditioning) systems, power generation, and heat exchangers. The performance, efficiency, safety, and environmental impact of the respective systems can significantly depend on the selected working fluid.
A working fluid is a substance used in thermodynamic cycles to transfer energy, typically in the form of heat, work, or both. It is the medium through which energy is exchanged in various thermal processes, such as heat engines, refrigeration cycles, and heat pumps. Key characteristics of working fluids include: 1. **Phase Change**: Many working fluids undergo phase changes (e.g.
"Work output" generally refers to the amount of work produced by a system or machine, often expressed in units such as joules (in the context of physics) or other relevant measures depending on the context. In different contexts, it may have specific meaning: 1. **Physics:** In physics, work output can refer to the useful work done by a machine or system, calculated as the product of the force applied and the distance over which that force is applied, typically in a mechanical context.
In thermodynamics, "work" is a defined form of energy transfer that occurs when a force is applied to an object, causing that object to move. Work is a fundamental concept and is closely associated with energy changes in a system. In the context of thermodynamics, work is usually denoted by \( W \) and can be expressed mathematically.
The Wong–Sandler mixing rule is a numerical method used in thermodynamics, particularly in the field of fluid mixture modeling. It is often employed in the context of defining the properties of mixtures in systems where different components exhibit non-ideal behavior. This mixing rule is an extension of the traditional mole-fraction averaging, and it helps to improve the prediction of phase equilibria and thermodynamic properties of mixtures, especially in systems with strong interactions between different components.
The Wohl model is a theoretical framework used in the field of chemistry and materials science, particularly for studying phase transitions and the thermodynamic behavior of systems. It is often associated with the way certain materials behave under varying conditions of temperature and pressure.
Weatherization refers to a series of modifications and improvements made to buildings to enhance their energy efficiency and reduce energy consumption. The goal of weatherization is to create a more comfortable indoor environment, reduce energy costs, and improve the building's overall performance, particularly in terms of heating and cooling. Key components of weatherization may include: 1. **Insulation**: Adding or improving insulation in walls, attics, and floors to minimize heat loss in the winter and heat gain in the summer.
The Watt steam engine, developed by Scottish engineer James Watt in the late 18th century, is a significant advancement in steam engine technology. Watt's improvements built upon earlier designs, particularly those of Thomas Newcomen, and he introduced several innovations that made steam engines more efficient and practical for various applications. Key features of the Watt steam engine include: 1. **Separate Condenser**: One of Watt's major innovations was the introduction of a separate condenser.
Waste heat is the thermal energy that is generated as a byproduct of various industrial processes, power production, and other activities but is not used for any productive purpose. Instead, it is released into the environment, typically through exhaust gases, cooling water, or other means.

Pinned article: Introduction to the OurBigBook Project

Welcome to the OurBigBook Project! Our goal is to create the perfect publishing platform for STEM subjects, and get university-level students to write the best free STEM tutorials ever.
Everyone is welcome to create an account and play with the site: ourbigbook.com/go/register. We belive that students themselves can write amazing tutorials, but teachers are welcome too. You can write about anything you want, it doesn't have to be STEM or even educational. Silly test content is very welcome and you won't be penalized in any way. Just keep it legal!
We have two killer features:
  1. topics: topics group articles by different users with the same title, e.g. here is the topic for the "Fundamental Theorem of Calculus" ourbigbook.com/go/topic/fundamental-theorem-of-calculus
    Articles of different users are sorted by upvote within each article page. This feature is a bit like:
    • a Wikipedia where each user can have their own version of each article
    • a Q&A website like Stack Overflow, where multiple people can give their views on a given topic, and the best ones are sorted by upvote. Except you don't need to wait for someone to ask first, and any topic goes, no matter how narrow or broad
    This feature makes it possible for readers to find better explanations of any topic created by other writers. And it allows writers to create an explanation in a place that readers might actually find it.
    Figure 1.
    Screenshot of the "Derivative" topic page
    . View it live at: ourbigbook.com/go/topic/derivative
  2. local editing: you can store all your personal knowledge base content locally in a plaintext markup format that can be edited locally and published either:
    This way you can be sure that even if OurBigBook.com were to go down one day (which we have no plans to do as it is quite cheap to host!), your content will still be perfectly readable as a static site.
    Figure 5. . You can also edit articles on the Web editor without installing anything locally.
    Video 3.
    Edit locally and publish demo
    . Source. This shows editing OurBigBook Markup and publishing it using the Visual Studio Code extension.
  3. https://raw.githubusercontent.com/ourbigbook/ourbigbook-media/master/feature/x/hilbert-space-arrow.png
  4. Infinitely deep tables of contents:
    Figure 6.
    Dynamic article tree with infinitely deep table of contents
    .
    Descendant pages can also show up as toplevel e.g.: ourbigbook.com/cirosantilli/chordate-subclade
All our software is open source and hosted at: github.com/ourbigbook/ourbigbook
Further documentation can be found at: docs.ourbigbook.com
Feel free to reach our to us for any help or suggestions: docs.ourbigbook.com/#contact