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Titlebook: Elementary Mechanics Using Matlab; A Modern Course Comb Anders Malthe-Sørenssen Textbook 2015 Springer Nature Switzerland AG 2015 Computati

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https://doi.org/10.1007/978-3-662-39776-3ssociated with the deformation either: A rigid body can only be translated or rotated. In this chapter we will introduce the kinetic and potential energy of a rigid body. We find that it depends on the rotational inertia of a rigid body, called the moment of inertia. Rigid bodies with large moments
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Textbook 2015ic programming with Matlab is included. A parallel edition using Python instead of Matlab is also available..Last but not least, each chapter is accompanied by an extensive set of course-tested exercises and solutions..
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Forces in Two and Three Dimensions,lve the equations of motion, and determine the position and velocity of the objects as functions of time. Finally, we analyze the resulting motion, use the solution to answer the questions posed, and check the validity of the solutions. In this chapter, we discuss how to identify forces, how to appl
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Momentum, Impulse, and Collisions, objects can be very complicated, and may consist of both conservative and non-conservative forces, but as long as the objects are not affected by any external forces, their total momentum is conserved. We use this to find the velocities of each object after a collision from the velocities before a
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Rotation of Rigid Bodies,ssociated with the deformation either: A rigid body can only be translated or rotated. In this chapter we will introduce the kinetic and potential energy of a rigid body. We find that it depends on the rotational inertia of a rigid body, called the moment of inertia. Rigid bodies with large moments
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Textbook 2015ly integrated to solve physics problems. This approach allows students to solve more advanced and applied problems at an earlier stage and equips them to deal with real-world examples well beyond the typical special cases treated in standard textbooks..Another advantage of this approach is that stud
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