TRANSLASI (PERGESERAN) || TRANSFORMASI GEOMETRI
Summary
TLDRIn this engaging video lesson, students are introduced to geometric transformations, specifically focusing on translations. The instructor explains the concept of translating geometric shapes without altering their size or form, highlighting the significance of translation vectors. Through practical examples, students learn to calculate new coordinates after translation and reverse the process to find original points. The lesson emphasizes real-life applications of transformations and encourages practice for better understanding, setting the stage for future lessons on reflections. Overall, it's a clear and interactive approach to understanding the fundamentals of geometry.
Takeaways
- 😀 Geometry transformation involves changing the position or shape of an object.
- 😀 There are four types of geometric transformations: translation, reflection, rotation, and dilation.
- 😀 Translation (or shifting) moves a shape from one location to another without altering its size or shape.
- 😀 During translation, all points of a shape are moved the same distance in a specified direction.
- 😀 Translation requires information about how far to shift a point both horizontally and vertically.
- 😀 The translation vector is denoted as (a, b), where 'a' represents horizontal movement and 'b' represents vertical movement.
- 😀 Positive values of 'a' and 'b' indicate movement to the right or upward, while negative values indicate movement to the left or downward.
- 😀 An example of translation is moving point A(4,5) to point A'(7,3) by translating it 3 units right and 2 units down.
- 😀 When translating a shape like a triangle, each vertex must be translated individually.
- 😀 To find the original point before translation, subtract the translation vector from the translated point.
Q & A
What is geometric transformation?
-Geometric transformation is a process that changes the position or shape of a figure, mapping all points of the figure to another location on the same plane.
How many types of geometric transformations are discussed in the video?
-The video discusses four types of geometric transformations: translation, reflection, rotation, and dilation.
What does translation mean in the context of geometry?
-Translation refers to shifting a shape from one location to another without altering its size or shape.
How is the distance of translation represented mathematically?
-The distance of translation is represented as a translation vector (a, b), where 'a' is the horizontal shift and 'b' is the vertical shift.
What happens when the values of 'a' and 'b' are positive or negative?
-If both 'a' and 'b' are positive, the object moves to the right and upward. If they are negative, the object moves to the left and downward.
Can you provide an example of a translation transformation?
-For example, if point A(4, 5) is translated by (3, -2), the new coordinates of point A' would be (4 + 3, 5 - 2), resulting in A'(7, 3).
What is the formula to find the coordinates after translation?
-The formula is: if point (x, y) is translated by vector (a, b), the new coordinates will be (x + a, y + b).
How do you find the original point before translation if the translated point is known?
-To find the original point, you subtract the translation vector from the coordinates of the translated point.
What is the result of translating a triangle with vertices A(1, 2), B(4, 2), and C(3, 5) by (4, 2)?
-After translation, the new vertices will be A'(5, 4), B'(8, 4), and C'(7, 7).
What will the next video cover after translation?
-The next video will cover the second type of geometric transformation, which is reflection.
Outlines
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