python turtle graphics example
The answer is to use Python's turtle module to draw color-rotated square patterns, 1. Set the screen background to black and create a brush, 2. Define a list of red, yellow, blue, green, purple, and orange colors, 3. Draw a square each time through 90 cycles and turn right 4 degrees, 4. Use a different color each time and finally form a flower-like pattern, 5. Click the window to exit the program, and after the complete code is run, a circular pattern composed of color-rotated squares will be displayed.
Drawing with Python's turtle
module is very intuitive, especially suitable for beginners to learn programming and graphic drawing. Here is a simple but complete Turtle Graphics example , drawing a colorful rotating square pattern.

? Example: Draw a colored rotating square with Turtle
import turtle # Set screen = turtle.Screen() screen.bgcolor("black") # Background color# Create brush t = turtle.Turtle() t.speed(0) # fastest speed t.width(2) # Define color list colors = ["red", "yellow", "blue", "green", "purple", "orange"] # Draw a rotating square for i in range(90): # Draw 90 squares, rotate 4 degrees each time t.pencolor(colors[i % len(colors)]) # Looping color for _ in range(4): # Draw a square t.forward(100) t.left(90) t.right(4) # Each rotation is 4 degrees# Click the screen to exit t.hideturtle() after completion screen.exitonclick()
? Code description
-
turtle.Screen()
: Creates a drawing window. -
t.speed(0)
: Set the brush speed, 0 is the fastest. -
t.width(2)
: Set the line thickness. -
t.pencolor(...)
: Set the brush color. -
t.forward(100)
: Move forward by 100 pixels. -
t.left(90)
: Turn left 90 degrees (draw square). -
t.right(4)
: Turn right 4 degrees after each drawing of the square to create a rotation effect. -
screen.exitonclick()
: Click the window to close the program.
✅ Effect
After running, a window will pop up, drawing a circular pattern composed of colorful squares, like a "rotating flower".
? Tips
- Changing the values of
range(90)
andt.right(4)
can change the pattern density. - Try drawing circles with
t.circle(50)
, or combining graphics to make more complex patterns. - Colors can be filled with
t.fillcolor("yellow")
andt.begin_fill()
/t.end_fill()
.
Basically that's all, not complicated but very interesting. You can copy this code and run it directly to see how the graphics are drawn step by step.

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