Quaternion example sentences

Related (1): octonions

"Quaternion" Example Sentences

1. The quaternion formula is a powerful tool in mathematics.
2. The physics problem required the use of quaternion rotation.
3. The quaternion group is a well-known algebraic structure.
4. The computer graphics software relied on quaternion calculations.
5. The equation involved four quaternion components.
6. The researchers discovered a new way to represent rotations using quaternions.
7. The mathematician explained the properties of quaternion multiplication.
8. The aerospace engineer used quaternions to solve the control problem.
9. The algorithm used quaternions to track the orientation of the object.
10. The student struggled with understanding the concept of quaternion division.
11. The game developer implemented quaternion-based animation for smooth movements.
12. The scientific paper discussed the benefits of using quaternions for robotics.
13. The virtual reality application utilized quaternion tracking for accurate head movements.
14. The physics simulation required quaternion interpolation for smooth motion.
15. The electrical engineer designed a control system using quaternion feedback.
16. The mathematician proved the existence of a quaternion integral.
17. The computer vision system used quaternions for camera orientation.
18. The researcher proposed a quaternion-based deep learning method for gesture recognition.
19. The aerospace simulation required quaternion integration for accurate trajectory calculations.
20. The robot arm movement was controlled using quaternion optimization.
21. The computer graphics software implemented a quaternion-based camera system for realistic rendering.
22. The physics theory required the use of quaternion calculus.
23. The navigation system used quaternions for attitude estimation.
24. The geometric modeling software utilized quaternion-based transformations for object manipulation.
25. The virtual reality game implemented quaternion-based orientation correction for reduced motion sickness.
26. The control system design involved quaternion-based sliding mode control.
27. The robotics researcher developed a quaternion-based robot arm kinematics model.
28. The computer graphics algorithm used quaternion-based inverse kinematics for animation.
29. The biomedical engineer used quaternions for motion tracking in gait analysis.
30. The control engineer designed a quaternion-based adaptive control system.

Common Phases

1. Quaternion multiplication;
2. Quaternion conjugation;
3. Quaternion normalization;
4. Quaternion interpolation;
5. Quaternion rotation;
6. Quaternion inverse;
7. Quaternion addition;
8. Quaternion subtraction;
9. Quaternion dot product;
10. Quaternion cross product.

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