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How to Relate Kinematics Quantities with Rectangular Components of Vectors! #EGE210 #076
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Are you struggling to boost your physics grade? This expert tutorial will help you learn how to relate kinematics quantities with the rectangular components of vectors! With easy-to-follow explanations and helpful diagrams, this tutorial will give you the tools to understand this challenging subject. Learn the fundamentals of kinematics and how to calculate the components of a vector, and get the grades you want in physics! #EGE210 #076
Dr. Loay Al-Zube explains how to represent position, velocity, and acceleration vectors in rectangular components. You will learn about the magnitudes and directions of position, velocity, and acceleration vectors.
This statics and dynamics physics video tutorial focuses on kinematics in three dimension. It explains how to solve 3-dimensional motion problems using kinematic equations and formulas with objects moving at constant/variable speeds and with constant/variable accelerations. This video contains plenty of examples and practice problems.
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0:00 Intro
1:04 Rectangular Components (x, y, z)
1:34 What is the Position Vector?
2:40 Position Vector as a function of time
3:07 Magnitude and Direction of a Position Vector
3:36 What is the Velocity Vector?
4:18 Magnitude and Direction of a Velocity Vector
5:00 What is the acceleration Vector?
5:21 Magnitude and Direction of an Acceleration Vector
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► This Episode
- Statics and Dynamics: Lecture 24 Video 4 - Curve-linear Motion (Kinematics & Rectangular Components)
- How to Relate Kinematics Quantities in Terms of Rectangular Components of Vectors? | Dr Loay Al-Zube
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► All Dr. Loay Al-Zube (Kinematics of a Curved Line) Lecture Videos / Episodes::
Statics and Dynamics: Lecture 24 Video 1 - Curve-linear Motion (Intro)
Statics and Dynamics: Lecture 24 Video 2 - Curve-linear Motion (Position)
Statics and Dynamics: Lecture 24 Video 3 - Curve-linear Motion (Velocity and acceleration)
Statics and Dynamics: Lecture 24 Video 4 - Curve-linear Motion (Kinematics & Rectangular Components)
Statics and Dynamics: Lecture 24 Video 5 - Rectangular Components (Partial Derivatives Example)
_________________________________
► If you haven't already, subscribe to our YouTube channel, please do so by clicking on the link below for Engineering / Biomedical Engineering / Product Design and Development Spring Videos:
► Follow me on social media for more great engineering content and tips!
► FTC Legal Disclaimer - Some links found in the description box of my videos may be affiliate links, meaning I will make commission on sales you make through my link. This is at no extra cost to you to use my links/codes, it's just one more way to support me and my channel! :)
► To support my channel:
►► For business inquiries:
Thank you for watching!
Dr. Al-Zube
How to Relate Kinematics Quantities in Terms of Rectangular Components of Vectors? | Dr Loay Al-Zube
Dr. Loay Al-Zube explains how to represent position, velocity, and acceleration vectors in rectangular components. You will learn about the magnitudes and directions of position, velocity, and acceleration vectors.
This statics and dynamics physics video tutorial focuses on kinematics in three dimension. It explains how to solve 3-dimensional motion problems using kinematic equations and formulas with objects moving at constant/variable speeds and with constant/variable accelerations. This video contains plenty of examples and practice problems.
_________________________________
0:00 Intro
1:04 Rectangular Components (x, y, z)
1:34 What is the Position Vector?
2:40 Position Vector as a function of time
3:07 Magnitude and Direction of a Position Vector
3:36 What is the Velocity Vector?
4:18 Magnitude and Direction of a Velocity Vector
5:00 What is the acceleration Vector?
5:21 Magnitude and Direction of an Acceleration Vector
_________________________________
► This Episode
- Statics and Dynamics: Lecture 24 Video 4 - Curve-linear Motion (Kinematics & Rectangular Components)
- How to Relate Kinematics Quantities in Terms of Rectangular Components of Vectors? | Dr Loay Al-Zube
_________________________________
► All Dr. Loay Al-Zube (Kinematics of a Curved Line) Lecture Videos / Episodes::
Statics and Dynamics: Lecture 24 Video 1 - Curve-linear Motion (Intro)
Statics and Dynamics: Lecture 24 Video 2 - Curve-linear Motion (Position)
Statics and Dynamics: Lecture 24 Video 3 - Curve-linear Motion (Velocity and acceleration)
Statics and Dynamics: Lecture 24 Video 4 - Curve-linear Motion (Kinematics & Rectangular Components)
Statics and Dynamics: Lecture 24 Video 5 - Rectangular Components (Partial Derivatives Example)
_________________________________
► If you haven't already, subscribe to our YouTube channel, please do so by clicking on the link below for Engineering / Biomedical Engineering / Product Design and Development Spring Videos:
► Follow me on social media for more great engineering content and tips!
► FTC Legal Disclaimer - Some links found in the description box of my videos may be affiliate links, meaning I will make commission on sales you make through my link. This is at no extra cost to you to use my links/codes, it's just one more way to support me and my channel! :)
► To support my channel:
►► For business inquiries:
Thank you for watching!
Dr. Al-Zube
How to Relate Kinematics Quantities in Terms of Rectangular Components of Vectors? | Dr Loay Al-Zube