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Codehub

Codehub

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Free Programming resources.

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📈 Analytical overview of Telegram channel Codehub

Channel Codehub (@pythonadvisorai) in the English language segment is an active participant. Currently, the community unites 32 489 subscribers, ranking 3 996 in the Technologies & Applications category and 1 016 in the Malaysia region.

📊 Audience metrics and dynamics

Since its creation on невідомо, the project has demonstrated rapid growth, gathering an audience of 32 489 subscribers.

According to the latest data from 27 August, 2026, the channel demonstrates stable activity. Although there has been a change in the number of participants by -446 over the last 30 days and by -31 over the last 24 hours, overall reach remains high.

  • Verification status: Not verified
  • Engagement rate (ER): The average audience engagement rate is 3.42%. Within the first 24 hours after publication, content typically collects N/A% reactions from the total number of subscribers.
  • Post reach: On average, each post receives 0 views. Within the first day, a publication typically gains 0 views.
  • Reactions and interaction: The audience actively supports content: the average number of reactions per post is 0.

📝 Description and content policy

The author describes the resource as a platform for expressing subjective opinions:
Free Programming resources.

Thanks to the high frequency of updates (latest data received on 28 August, 2026), the channel maintains relevance and a high level of publication reach. Analytics show that the audience actively interacts with content, making it an important point of influence in the Technologies & Applications category.

32 489
Subscribers
-3124 hours
-967 days
-44630 days
Posts Archive
Codehub
32 489
What will be the Output def fun_x(x): X=X+'2' x=x*2 return x print(fun_x("python"))
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Codehub
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WiFi Passwords Source Code python.coder_.py0.01 KB

Codehub
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import turtle screen = turtle.Screen() screen.setup(550, 600, startx=0, starty=100) t = turtle.Turtle() turtle.bgcolor('black') turtle.color('yellow') turtle.speed(11) turtle.right (45) for i in range(150): turtle.circle(25) if 7 < i < 62: turtle. left(5) if 80 < i < 133: turtle.right(5) if i < 80: turtle.forward(10) else: turtle.forward(5)

Codehub
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Python interview question with answers.
+4
Python interview question with answers.

Codehub
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You want python interview questions🤔
Anonymous voting

Codehub
32 489
Run this code

Codehub
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from turtle import * import turtle turtle.bgcolor('black') turtle.pencolor('red') turtle.hideturtle() turtle.speed() #curve01 def curve01(a,d): for i in range(d): turtle.right(a) turtle.forward(1) #making eye turtle.width(15) turtle.penup() turtle.right(90) turtle.forward(85) turtle.left(90) turtle.forward(35) turtle.pendown() turtle.fillcolor('white') turtle.begin_fill() turtle.left(55) curve01(0.09,100) curve01(0.2,100) turtle.forward(70) turtle.right(90) curve01(0.5,100) curve01(00,30) curve01(0.3,50) curve01(0.6,50) turtle.forward(50) turtle.right(47) curve01(0.1,95) turtle.end_fill() #changing turtle.penup() turtle.left(36) turtle.forward(70) turtle.pendown() #curve02 def curve02(a,d): for i in range(d): turtle.left(a) turtle.forward(1) #second eye turtle.fillcolor('white') turtle.begin_fill() turtle.right(55) curve02(0.09,100) curve02(0.2,100) turtle.forward(70) turtle.left(90) curve02(0.5,100) curve02(00,30) curve02(0.3,50) curve02(0.6,50) turtle.forward(50) turtle.left(47) curve02(0.1,95) turtle.end_fill() turtle.penup() turtle.width(0) turtle.right(49) turtle.forward(30) turtle.left(102) #100.40 turtle.forward(145) turtle.pencolor('red') #making left face turtle.fillcolor('red') turtle.begin_fill() turtle.speed() turtle.pendown() turtle.left(90) curve01(5,20) turtle.left(175) turtle.forward(50) turtle.left(25) turtle.forward(28) turtle.right(160) turtle.forward(170) curve02(0.2,65) turtle.right(60) curve01(0.1,140) curve01(0.5,50) turtle.left(180) curve02(0.2,150) curve02(0.1,95) turtle.left(127) turtle.forward(5) curve01(2,20) turtle.right(30) turtle.forward(90) turtle.right(7) turtle.forward(75) turtle.right(160) turtle.forward(100) curve02(0.1,105) turtle.right(70) curve01(0.2,200) curve01(0.3,70) turtle.left(175) curve02(0.2,150) curve02(0.3,150) turtle.forward(20) turtle.left(65) curve01(0.1,120) curve01(0.010,105) turtle.right(10) curve01(0.2,110) turtle.right(60) curve01(0.3,138) turtle.right(30) curve01(0.2,160) turtle.left(150) curve02(0.2,100) curve02(0.1,150) turtle.forward(70) curve02(0.4,40) turtle.left(160) curve01(0.1,60) turtle.left(7) curve01(0.1,120) curve01(0.2,30) turtle.forward(20) turtle.right(140) curve02(0.2,40) turtle.right(50) curve02(0.2,70) turtle.right(8) curve02(0.1,70) curve02(0.5,50) turtle.left(153) curve01(0.1,170) turtle.right(81) curve02(0.2,20) turtle.right(3) curve02(0.1,62) turtle.right(153) #.. curve01(0.1,63) turtle.left(50) curve02(0.1,175) turtle.left(60) turtle.forward(7) turtle.end_fill() #going to replicate turtle.left(92.15) turtle.penup() turtle.forward(417) turtle.pendown() turtle.fillcolor('red') turtle.begin_fill() #right face turtle.right(90) curve02(5,20) turtle.right(175) turtle.forward(50) turtle.right(25) turtle.forward(28) turtle.left(160) turtle.forward(170) curve01(0.2,65) turtle.left(60) curve02(0.1,140) curve02(0.5,50) turtle.right(180) curve01(0.2,150) curve01(0.1,95) turtle.right(127) turtle.forward(5) curve02(2,20) turtle.left(30) turtle.forward(90) turtle.left(7) turtle.forward(75) turtle.left(160) turtle.forward(100) curve01(0.1,105) turtle.left(70) curve02(0.2,200) curve02(0.3,70) turtle.right(175) curve01(0.2,150) curve01(0.3,150) turtle.forward(20) turtle.right(65) curve02(0.1,120) curve02(0.010,105) turtle.left(10) curve02(0.2,110) turtle.left(60) curve02(0.3,138) turtle.left(30) curve02(0.2,160) turtle.right(150) curve01(0.2,100) curve01(0.1,150) turtle.forward(70) curve01(0.4,40) turtle.right(160) curve02(0.1,60) turtle.right(7) curve02(0.1,120) curve02(0.2,30) turtle.forward(20) turtle.left(140) curve01(0.2,40) turtle.left(50) curve01(0.2,70) turtle.left(8) curve01(0.1,70) curve01(0.5,50) turtle.right(153) curve02(0.1,170) turtle.left(81) curve01(0.2,20) turtle.left(3) curve01(0.1,62) turtle.left(153) #.. curve02(0.1,63) turtle.right(50) curve01(0.1,100) #0.1 turtle.forward(75) turtle.right(75) turtle.forward(2) turtle.end_fill() turtle.done()

Codehub
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PythonHub: from turtle import * import turtle turtle.bgcolor('black') turtle.pencolor('red') turtle.hideturtle() turtle.speed() #curve01 def curve01(a,d): for i in range(d): turtle.right(a) turtle.forward(1) #making eye turtle.width(15) turtle.penup() turtle.right(90) turtle.forward(85) turtle.left(90) turtle.forward(35) turtle.pendown() turtle.fillcolor('white') turtle.begin_fill() turtle.left(55) curve01(0.09,100) curve01(0.2,100) turtle.forward(70) turtle.right(90) curve01(0.5,100) curve01(00,30) curve01(0.3,50) curve01(0.6,50) turtle.forward(50) turtle.right(47) curve01(0.1,95) turtle.end_fill() #changing turtle.penup() turtle.left(36) turtle.forward(70) turtle.pendown() #curve02 def curve02(a,d): for i in range(d): turtle.left(a) turtle.forward(1) #second eye turtle.fillcolor('white') turtle.begin_fill() turtle.right(55) curve02(0.09,100) curve02(0.2,100) turtle.forward(70) turtle.left(90) curve02(0.5,100) curve02(00,30) curve02(0.3,50) curve02(0.6,50) turtle.forward(50) turtle.left(47) curve02(0.1,95) turtle.end_fill() turtle.penup() turtle.width(0) turtle.right(49) turtle.forward(30) turtle.left(102) #100.40 turtle.forward(145) turtle.pencolor('red') #making left face turtle.fillcolor('red') turtle.begin_fill() turtle.speed() turtle.pendown() turtle.left(90) curve01(5,20) turtle.left(175) turtle.forward(50) turtle.left(25) turtle.forward(28) turtle.right(160) turtle.forward(170) curve02(0.2,65) turtle.right(60) curve01(0.1,140) curve01(0.5,50) turtle.left(180) curve02(0.2,150) curve02(0.1,95) turtle.left(127) turtle.forward(5) curve01(2,20) turtle.right(30) turtle.forward(90) turtle.right(7) turtle.forward(75) turtle.right(160) turtle.forward(100) curve02(0.1,105) turtle.right(70) curve01(0.2,200) curve01(0.3,70) turtle.left(175) curve02(0.2,150) curve02(0.3,150) turtle.forward(20) turtle.left(65) curve01(0.1,120) curve01(0.010,105) turtle.right(10) curve01(0.2,110) turtle.right(60) curve01(0.3,138) turtle.right(30) curve01(0.2,160) turtle.left(150) curve02(0.2,100) curve02(0.1,150) turtle.forward(70) curve02(0.4,40) turtle.left(160) curve01(0.1,60) turtle.left(7) curve01(0.1,120) curve01(0.2,30) turtle.forward(20) turtle.right(140) curve02(0.2,40) turtle.right(50) curve02(0.2,70) turtle.right(8) curve02(0.1,70) curve02(0.5,50) turtle.left(153) curve01(0.1,170) turtle.right(81) curve02(0.2,20) turtle.right(3) curve02(0.1,62) turtle.right(153) #.. curve01(0.1,63) turtle.left(50) curve02(0.1,175) turtle.left(60) turtle.forward(7) turtle.end_fill() #going to replicate turtle.left(92.15) turtle.penup() turtle.forward(417) turtle.pendown() turtle.fillcolor('red') turtle.begin_fill() #right face turtle.right(90) curve02(5,20) turtle.right(175) turtle.forward(50) turtle.right(25) turtle.forward(28) turtle.left(160) turtle.forward(170) curve01(0.2,65) turtle.left(60) curve02(0.1,140) curve02(0.5,50) turtle.right(180) curve01(0.2,150) curve01(0.1,95) turtle.right(127) turtle.forward(5) curve02(2,20) turtle.left(30) turtle.forward(90) turtle.left(7) turtle.forward(75) turtle.left(160) turtle.forward(100) curve01(0.1,105) turtle.left(70) curve02(0.2,200) curve02(0.3,70) turtle.right(175) curve01(0.2,150) curve01(0.3,150) turtle.forward(20) turtle.right(65) curve02(0.1,120) curve02(0.010,105) turtle.left(10) curve02(0.2,110) turtle.left(60) curve02(0.3,138) turtle.left(30) curve02(0.2,160) turtle.right(150) curve01(0.2,100) curve01(0.1,150) turtle.forward(70) curve01(0.4,40) turtle.right(160) curve02(0.1,60) turtle.right(7) curve02(0.1,120) curve02(0.2,30) turtle.forward(20) turtle.left(140) curve01(0.2,40) turtle.left(50) curve01(0.2,70) turtle.left(8) curve01(0.1,70) curve01(0.5,50) turtle.right(153) curve02(0.1,170) turtle.left(81) curve01(0.2,20) turtle.left(3) curve01(0.1,62) turtle.left(153) #.. curve02(0.1,63) turtle.right(50) curve01(0.1,100) #0.1 turtle.forward(75) turtle.right(75) turtle.forward(2) turtle.end_fill() turtle.done()

Codehub
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Concept of oops.
+2
Concept of oops.

Codehub
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In Python Programming "def" is a:
Anonymous voting

Codehub
32 489
Backend Technology
Backend Technology

Codehub
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IP-location-tracker-master.zip0.04 KB

Codehub
32 489
photo content

Codehub
32 489
Run this Code and send output screenshot

Codehub
32 489
import turtle a=turtle.Turtle() a.getscreen().bgcolor("black") a.penup() a.goto(-200, 100) a.pendown() a.color("yellow") a.speed(25) def star(turtle, size): if size<=10: return else: turtle.begin_fill() for i in range (5): turtle.pensize(2) turtle.forward(size) star(turtle, size/3) turtle.left(216) turtle.end_fill() star(a, 360) turtle.done()