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Can The Cartesian coordinate system can have three dimensions? - Answers

Yes, the Cartesian coordinate system can have three dimensions, commonly referred to as 3D. In this system, points are represented by three coordinates (x, y, z), which correspond to their positions along the three perpendicular axes: the x-axis, y-axis, and z-axis. This allows for the representation of objects and points in three-dimensional space, making it useful in fields such as physics, engineering, and computer graphics.



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Can The Cartesian coordinate system can have three dimensions? - Answers

https://math.answers.com/math-and-arithmetic/Can_The_Cartesian_coordinate_system_can_have_three_dimensions

Yes, the Cartesian coordinate system can have three dimensions, commonly referred to as 3D. In this system, points are represented by three coordinates (x, y, z), which correspond to their positions along the three perpendicular axes: the x-axis, y-axis, and z-axis. This allows for the representation of objects and points in three-dimensional space, making it useful in fields such as physics, engineering, and computer graphics.



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https://math.answers.com/math-and-arithmetic/Can_The_Cartesian_coordinate_system_can_have_three_dimensions

Can The Cartesian coordinate system can have three dimensions? - Answers

Yes, the Cartesian coordinate system can have three dimensions, commonly referred to as 3D. In this system, points are represented by three coordinates (x, y, z), which correspond to their positions along the three perpendicular axes: the x-axis, y-axis, and z-axis. This allows for the representation of objects and points in three-dimensional space, making it useful in fields such as physics, engineering, and computer graphics.

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      Yes, the Cartesian coordinate system can have three dimensions, commonly referred to as 3D. In this system, points are represented by three coordinates (x, y, z), which correspond to their positions along the three perpendicular axes: the x-axis, y-axis, and z-axis. This allows for the representation of objects and points in three-dimensional space, making it useful in fields such as physics, engineering, and computer graphics.
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