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  • Geometry : Geometry
    Geometry : Geometry


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  • Geometry
    Geometry

    This text is the fifth and final in the series of educational books written by Israel Gelfand with his colleagues for high school students.These books cover the basics of mathematics in a clear and simple format – the style Gelfand was known for internationally.Gelfand prepared these materials so as to be suitable for independent studies, thus allowing students to learn and practice the material at their own pace without a class. Geometry takes a different approach to presenting basic geometry for high-school students and others new to the subject. Rather than following the traditional axiomatic method that emphasizes formulae and logical deduction, it focuses on geometric constructions.Illustrations and problems are abundant throughout, and readers are encouraged to draw figures and “move” them in the plane, allowing them to develop and enhance their geometrical vision, imagination, and creativity.Chapters are structured so that only certain operations and the instruments to perform these operations are available for drawing objects and figures on the plane.This structure corresponds to presenting, sequentially, projective, affine, symplectic, and Euclidean geometries, all the while ensuring students have the necessary tools to follow along. Geometry is suitable for a large audience, which includes not only high school geometry students, but also teachers and anyone else interested in improving their geometrical vision and intuition, skills useful in many professions.Similarly, experienced mathematicians can appreciate the book’s unique way of presenting plane geometry in a simple form while adhering to its depth and rigor. “Gelfand was a great mathematician and also a great teacher.The book provides an atypical view of geometry. Gelfand gets to the intuitive core of geometry, to the phenomena of shapes and how they move in the plane, leadingus to a better understanding of what coordinate geometry and axiomatic geometry seek to describe.” - Mark Saul, PhD, Executive Director, Julia Robinson Mathematics Festival“The subject matter is presented as intuitive, interesting and fun. No previous knowledge of the subject is required. Starting from the simplest concepts and by inculcating in the reader the use of visualization skills, [and] after reading the explanations and working through the examples, you will be able to confidently tackle the interesting problems posed. I highly recommend the book to any person interested in this fascinating branch of mathematics.” - Ricardo Gorrin, a student of the Extended Gelfand Correspondence Program in Mathematics (EGCPM)

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  • Make - Geometry
    Make - Geometry

    Geometry, of all the branches of mathematics, is the one that is most easily visualized by making something.However, it is all too easy to reduce it to reams of formulas to memorize and proofs to replicate.This book aims to take geometry back to its practical roots with 3D printed models and puzzles as well as demonstrations with household objects like flashlights and paper towel tubes. This is not a traditional geometry textbook, but rather builds up understanding of geometry concepts while also bringing in elements of concepts normally learned much later.Some of the models are counterintuitive, and figuring out how and why they work will both entertain and give insights.Two final chapters suggesting open-ended projects in astronomy and physics, and art and architecture, allow for deeper understanding and integration of the learning in the rest of the book.

    Price: 23.99 £ | Shipping*: 3.99 £
  • Differential Geometry
    Differential Geometry

    This book combines the classical and contemporary approaches to differential geometry.An introduction to the Riemannian geometry of manifolds is preceded by a detailed discussion of properties of curves and surfaces.The chapter on the differential geometry of plane curves considers local and global properties of curves, evolutes and involutes, and affine and projective differential geometry.Various approaches to Gaussian curvature for surfaces are discussed.The curvature tensor, conjugate points, and the Laplace-Beltrami operator are first considered in detail for two-dimensional surfaces, which facilitates studying them in the many-dimensional case.A separate chapter is devoted to the differential geometry of Lie groups.

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  • Can you help me with solid geometry and geometry?

    Yes, I can help you with solid geometry and geometry. I can explain concepts, provide examples, and help you solve problems related to these topics. Whether you need assistance with understanding the properties of 3D shapes or the principles of geometric theorems, I am here to support you in your learning. Feel free to ask me any specific questions you have, and I will do my best to assist you.

  • What is geometry?

    Geometry is a branch of mathematics that deals with the study of shapes, sizes, relative positions of figures, and properties of space. It involves the study of points, lines, angles, surfaces, and solids. Geometry is used to solve problems related to measurements, design, and spatial reasoning. It plays a crucial role in various fields such as architecture, engineering, art, and physics.

  • Can you review geometry?

    Yes, I can review geometry. Geometry is a branch of mathematics that deals with shapes, sizes, and properties of space. It includes concepts such as points, lines, angles, shapes, and dimensions. By studying geometry, we can understand the relationships between different geometric figures and solve problems related to them.

  • What is Geometry 36?

    Geometry 36 is a branch of mathematics that focuses on the study of shapes, sizes, and properties of space. It involves the study of points, lines, angles, surfaces, and solids, as well as their relationships and measurements. Geometry 36 is essential in various fields such as architecture, engineering, physics, and computer graphics, as it helps in understanding spatial relationships and solving real-world problems.

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  • Differential Geometry
    Differential Geometry

    This textbook provides a concise introduction to the differential geometry of curves and surfaces in three-dimensional space, tailored for undergraduate students with a solid foundation in mathematical analysis and linear algebra. The book emphasizes the geometric content of the subject, aiming to quickly cover fundamental topics such as the isoperimetric inequality and the Gauss–Bonnet theorem.This approach allows the author to extend beyond the typical content of introductory books and include additional important geometric results, such as curves and surfaces of constant width, the classification of complete surfaces of non-negative constant curvature, and Hadamard's theorem on surfaces of non-positive curvature.This range of topics offers greater variety for an introductory course.

    Price: 44.99 £ | Shipping*: 0.00 £
  • Tragedy & Geometry
    Tragedy & Geometry


    Price: 16.49 £ | Shipping*: 3.99 £
  • Urban Geometry
    Urban Geometry


    Price: 16.95 £ | Shipping*: 3.99 £
  • Fantastic Geometry
    Fantastic Geometry

    Deals with a little-known, short-lived, tradition of imaginative geometry that flourished in 16th century Germany, during the Northern Renaissance.The key figure in this movement was the goldsmith Wenzel Jamnitzer, whose graphic fantasies were an imaginative response to the newly rediscovered geometrical theories associated with such important figures as Pythagoras, Plato, Archimedes and Euclid - all part of the great revival of interest in Classical knowledge that characterised the Renaissance. 'Fantastic Geometry' provides a fairly comprehensive overview of the work of this group (with many illustrations), together with an account of the historical background and the sources of their inspiration.David Wade is a sculptor and photographer.

    Price: 12.99 £ | Shipping*: 3.99 £
  • What does geometry mean?

    Geometry is a branch of mathematics that deals with the study of shapes, sizes, and properties of space. It involves the study of points, lines, angles, surfaces, and solids, and how they relate to each other. Geometry is used to solve problems related to measurements, spatial relationships, and visualization of objects in both two and three dimensions. It is an essential part of mathematics and has applications in various fields such as architecture, engineering, art, and physics.

  • What is Geometry 23?

    Geometry 23 is a specific course or textbook chapter that covers advanced topics in geometry. It may include concepts such as three-dimensional shapes, geometric proofs, trigonometry, and more complex geometric theorems. Students studying Geometry 23 are likely to have a strong foundation in basic geometry and are ready to explore more challenging geometric principles.

  • What is Geometry 22?

    Geometry 22 is a branch of mathematics that focuses on the study of shapes, sizes, and properties of space. It involves the study of points, lines, angles, surfaces, and solids, as well as the relationships between them. Geometry 22 also deals with concepts such as symmetry, congruence, similarity, and transformations. It is an important field of study that has practical applications in various fields such as architecture, engineering, and physics.

  • What is bond geometry?

    Bond geometry refers to the spatial arrangement of atoms in a molecule, specifically focusing on the angles between the atoms involved in a chemical bond. The geometry of a molecule is determined by the arrangement of electron pairs around the central atom, which can be influenced by factors such as the number of bonding and non-bonding electron pairs. The most common bond geometries include linear, trigonal planar, tetrahedral, trigonal bipyramidal, and octahedral, each with specific bond angles that contribute to the overall shape of the molecule. Understanding bond geometry is crucial in predicting the physical and chemical properties of a molecule, as well as its reactivity with other molecules.

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