DataStructure Notes.pdf
16.9 MB
Complete 100 👍 Reaction & We'll share Python Handwritten Notes 📌
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--- Do you like me Source Code ---
import tkinter as tk
import random
def show_popup():
popup = tk.Toplevel(root)
popup.title("Popup")
label = tk.Label(popup, text="Thanks for Accepting")
label.pack(padx=20, pady=20)
def move_button(event):
x = random.randint(0, 350)
y = random.randint(0, 350)
no_button.place(x=x, y=y)
root = tk.Tk()
root.title("instagram: @python.coder_")
root.geometry("400x400")
question_label = tk.Label(root, text="Do you like me?")
question_label.pack(pady=20)
yes_button = tk.Button(root, text="Yes", command=show_popup)
yes_button.pack()
no_button = tk.Button(root, text="No")
no_button.pack()
no_button.bind("<Enter>", move_button)
root.mainloop()
import tkinter as tk
import random
def show_popup():
popup = tk.Toplevel(root)
popup.title("Popup")
label = tk.Label(popup, text="Thanks for Accepting")
label.pack(padx=20, pady=20)
def move_button(event):
x = random.randint(0, 350)
y = random.randint(0, 350)
no_button.place(x=x, y=y)
root = tk.Tk()
root.title("instagram: @python.coder_")
root.geometry("400x400")
question_label = tk.Label(root, text="Do you like me?")
question_label.pack(pady=20)
yes_button = tk.Button(root, text="Yes", command=show_popup)
yes_button.pack()
no_button = tk.Button(root, text="No")
no_button.pack()
no_button.bind("<Enter>", move_button)
root.mainloop()
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- 📌 Python Logo Source Code📌 -
import turtle
t = turtle.Turtle()
s = turtle.Screen()
s.bgcolor("black")
t.speed(10)
t.pensize(2)
t.pencolor("white")
def s_curve():
for i in range(90):
t.left(1)
t.forward(1)
def r_curve():
for i in range(90):
t.right(1)
t.forward(1)
def l_curve():
s_curve()
t.forward(80)
s_curve()
def l_curve1():
s_curve()
t.forward(90)
s_curve()
def half():
t.forward(50)
s_curve()
t.forward(90)
l_curve()
t.forward(40)
t.left(90)
t.forward(80)
t.right(90)
t.forward(10)
t.right(90)
t.forward(120) #on test
l_curve1()
t.forward(30)
t.left(90)
t.forward(50)
r_curve()
t.forward(40)
t.end_fill()
def get_pos():
t.penup()
t.forward(20)
t.right(90)
t.forward(10)
t.right(90)
t.pendown()
def eye():
t.penup()
t.right(90)
t.forward(160)
t.left(90)
t.forward(70)
t.pencolor("black")
t.dot(35)
def sec_dot():
t.left(90)
t.penup()
t.forward(310)
t.left(90)
t.forward(120)
t.pendown()
t.dot(35)
t.fillcolor("#306998")
t.begin_fill()
half()
t.end_fill()
get_pos()
t.fillcolor("#FFD43B")
t.begin_fill()
half()
t.end_fill()
eye()
sec_dot()
def pause():
t.speed(2)
for i in range(100):
t.left(90)
pause()
import turtle
t = turtle.Turtle()
s = turtle.Screen()
s.bgcolor("black")
t.speed(10)
t.pensize(2)
t.pencolor("white")
def s_curve():
for i in range(90):
t.left(1)
t.forward(1)
def r_curve():
for i in range(90):
t.right(1)
t.forward(1)
def l_curve():
s_curve()
t.forward(80)
s_curve()
def l_curve1():
s_curve()
t.forward(90)
s_curve()
def half():
t.forward(50)
s_curve()
t.forward(90)
l_curve()
t.forward(40)
t.left(90)
t.forward(80)
t.right(90)
t.forward(10)
t.right(90)
t.forward(120) #on test
l_curve1()
t.forward(30)
t.left(90)
t.forward(50)
r_curve()
t.forward(40)
t.end_fill()
def get_pos():
t.penup()
t.forward(20)
t.right(90)
t.forward(10)
t.right(90)
t.pendown()
def eye():
t.penup()
t.right(90)
t.forward(160)
t.left(90)
t.forward(70)
t.pencolor("black")
t.dot(35)
def sec_dot():
t.left(90)
t.penup()
t.forward(310)
t.left(90)
t.forward(120)
t.pendown()
t.dot(35)
t.fillcolor("#306998")
t.begin_fill()
half()
t.end_fill()
get_pos()
t.fillcolor("#FFD43B")
t.begin_fill()
half()
t.end_fill()
eye()
sec_dot()
def pause():
t.speed(2)
for i in range(100):
t.left(90)
pause()
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