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📈 Análisis del canal de Telegram Codehub

El canal Codehub (@pythonadvisorai) en el segmento lingüístico de Inglés es un actor destacado. Actualmente la comunidad reúne a 32 489 suscriptores, ocupando la posición 3 996 en la categoría Tecnologías y Aplicaciones y el puesto 1 016 en la región Malasia.

📊 Métricas de audiencia y dinámica

Desde su creación el невідомо, el proyecto ha mostrado un crecimiento acelerado, reuniendo a 32 489 suscriptores.

Según los últimos datos del 27 agosto, 2026, el canal mantiene una actividad estable. En los últimos 30 días la variación de miembros fue de -446, y en las últimas 24 horas de -31, conservando un alto alcance.

  • Estado de verificación: No verificado
  • Tasa de interacción (ER): El promedio de interacción de la audiencia es 3.42%. Durante las primeras 24 horas tras publicar, el contenido suele obtener N/A% de reacciones respecto al total de suscriptores.
  • Alcance de las publicaciones: Cada publicación recibe en promedio 0 visualizaciones. En el primer día suele acumular 0 visualizaciones.
  • Reacciones e interacción: La audiencia responde de forma activa: el promedio de reacciones por publicación es 0.

📝 Descripción y política de contenido

El autor describe el recurso como un espacio para expresar opiniones subjetivas:
Free Programming resources.

Gracias a la alta frecuencia de actualizaciones (últimos datos recibidos el 28 agosto, 2026), el canal mantiene la vigencia y un amplio alcance. La analítica demuestra que la audiencia interactúa activamente con el contenido, lo que lo convierte en un punto de referencia dentro de la categoría Tecnologías y Aplicaciones.

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Suscriptores
-3124 horas
-967 días
-44630 días
Archivo de publicaciones
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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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WiFi Passwords Source Code python.coder_.py0.01 KB

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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.

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You want python interview questions🤔
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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()

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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()

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Concept of oops.
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Concept of oops.

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In Python Programming "def" is a:
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Backend Technology
Backend Technology

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

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photo content

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Run this Code and send output screenshot

Codehub
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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()