IP | Country | PORT | ADDED |
---|---|---|---|
32.223.6.94 | us | 80 | 59 minutes ago |
50.217.226.44 | us | 80 | 59 minutes ago |
41.207.187.178 | tg | 80 | 59 minutes ago |
50.219.249.62 | us | 80 | 59 minutes ago |
170.78.211.161 | mx | 1080 | 59 minutes ago |
203.99.240.179 | jp | 80 | 59 minutes ago |
80.228.235.6 | 80 | 59 minutes ago | |
50.239.72.17 | us | 80 | 59 minutes ago |
50.232.104.86 | us | 80 | 59 minutes ago |
50.122.86.118 | us | 80 | 59 minutes ago |
80.120.130.231 | at | 80 | 59 minutes ago |
203.99.240.182 | jp | 80 | 59 minutes ago |
50.169.222.241 | us | 80 | 59 minutes ago |
170.254.92.198 | ar | 4153 | 59 minutes ago |
190.58.248.86 | tt | 80 | 59 minutes ago |
213.33.126.130 | at | 80 | 59 minutes ago |
50.207.199.86 | us | 80 | 59 minutes ago |
72.10.164.178 | ca | 30043 | 59 minutes ago |
85.8.68.2 | de | 80 | 59 minutes ago |
84.247.168.26 | de | 1366 | 59 minutes ago |
Simple tool for complete proxy management - purchase, renewal, IP list update, binding change, upload lists. With easy integration into all popular programming languages, PapaProxy API is a great choice for developers looking to optimize their systems.
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All you need to know when using a web proxy is the address of the web site of the proxy server. A web proxy is like a browser built into a web page. Usually, it always has a bar for entering the URL of the web site you want to open. After entering the URL of the web proxy server address into the address bar of the browser, enter the address of the desired web site into the proxy URL and press "Enter".
A proxy server spoofs the IP address, port, and hardware information. It can also act as a secure gateway for data transmission in an already encrypted form (for example, this is how a proxy with the SOCKS5 protocol works).
To scrape Binance courses data in Python, you can use web scraping libraries such as BeautifulSoup and requests. Here's an example using BeautifulSoup to scrape Binance courses
Install required libraries:
pip install beautifulsoup4 requests
Write the scraping code:
import requests
from bs4 import BeautifulSoup
def scrape_binance_courses():
url = 'https://www.binance.com/en/academy/courses'
# Send a GET request to the URL
response = requests.get(url)
# Check if the request was successful (status code 200)
if response.status_code == 200:
soup = BeautifulSoup(response.text, 'html.parser')
# Find the container containing course information
course_container = soup.find('div', {'class': 'css-7sfsgn'})
if course_container:
# Extract course details
courses = course_container.find_all('div', {'class': 'css-1jiwjuo'})
for course in courses:
course_title = course.find('div', {'class': 'css-1mg41yd'}).text
course_description = course.find('div', {'class': 'css-1q62c8m'}).text
print(f"Title: {course_title}\nDescription: {course_description}\n")
else:
print("Course container not found.")
else:
print(f"Failed to retrieve the webpage. Status code: {response.status_code}")
# Run the scraping function
scrape_binance_courses()
This example sends a GET request to the Binance Academy courses page, parses the HTML content using BeautifulSoup, and extracts course details such as title and description.
Run the code:
python your_script_name.py
To realize receiving and transmitting UDP packets in different threads for parallel work in Java, you can use the DatagramSocket class along with the Thread class to create separate threads for receiving and transmitting. Here's an example of a simple UDP server that handles receiving and transmitting in different threads:
import java.net.*;
import java.io.*;
public class ParallelUDPServer {
private static final int PORT = 12345;
public static void main(String[] args) throws IOException {
// Create a DatagramSocket for receiving UDP packets
DatagramSocket receiveSocket = new DatagramSocket(PORT);
// Create a thread for receiving UDP packets
Thread receiveThread = new Thread(() -> {
byte[] receiveBuffer = new byte[1024];
while (true) {
DatagramPacket receivePacket = new DatagramPacket(receiveBuffer, receiveBuffer.length);
try {
receiveSocket.receive(receivePacket);
processReceivePacket(receivePacket);
} catch (IOException e) {
e.printStackTrace();
}
}
});
// Create a thread for transmitting UDP packets
Thread transmitThread = new Thread(() -> {
while (true) {
// Simulate sending UDP packets to a client
sendUDPPacket("Hello from the server!", "127.0.0.1", 6789);
try {
Thread.sleep(5000);
} catch (InterruptedException e) {
e.printStackTrace();
}
}
});
// Start the threads
receiveThread.start();
transmitThread.start();
}
private static void processReceivePacket(DatagramPacket packet) {
byte[] data = packet.getData();
int length = packet.getLength();
InetAddress address = packet.getAddress();
int port = packet.getPort();
System.out.println("Received packet:");
for (int i = 0; i < length; i++) {
System.out.print(data[i] + " ");
}
System.out.println();
System.out.println("From: " + address + ":" + port);
}
private static void sendUDPPacket(String message, String host, int port) throws IOException {
byte[] sendData = message.getBytes();
DatagramPacket sendPacket = new DatagramPacket(sendData, sendData.length, InetAddress.getByName(host), port);
DatagramSocket socket = new DatagramSocket();
socket.send(sendPacket);
socket.close();
}
}
In this example, the ParallelUDPServer class creates two threads: one for receiving UDP packets (receiveThread) and another for transmitting UDP packets (transmitThread).
In Windows 10 you need to go to "Settings", go to "Network and Internet", open the tab "Proxy" and make the necessary settings for the connection (under "Manual", the item should also be made active).
What else…