IP | Country | PORT | ADDED |
---|---|---|---|
212.108.155.170 | cy | 9090 | 2 minutes ago |
176.31.110.126 | fr | 45517 | 2 minutes ago |
67.43.228.250 | ca | 28855 | 2 minutes ago |
128.140.113.110 | de | 4145 | 2 minutes ago |
31.130.127.215 | ru | 5678 | 2 minutes ago |
72.10.164.178 | ca | 10055 | 2 minutes ago |
67.201.33.10 | us | 25283 | 2 minutes ago |
46.105.105.223 | fr | 18579 | 2 minutes ago |
51.89.21.99 | gb | 59577 | 2 minutes ago |
41.230.216.70 | tn | 80 | 2 minutes ago |
168.126.68.80 | kr | 80 | 2 minutes ago |
89.161.90.203 | pl | 5678 | 2 minutes ago |
62.103.186.66 | gr | 4153 | 2 minutes ago |
72.195.34.59 | us | 4145 | 2 minutes ago |
37.128.107.102 | pl | 4145 | 2 minutes ago |
45.177.80.214 | ar | 1080 | 2 minutes ago |
67.43.236.20 | ca | 12651 | 2 minutes ago |
185.49.31.205 | pl | 8080 | 2 minutes ago |
213.143.113.82 | at | 80 | 2 minutes ago |
103.216.50.224 | kh | 8080 | 2 minutes ago |
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Each option has its own advantages and disadvantages. HTTP is faster because it supports caching. And SOCKS provides better anonymity because it hides the headers of requested pages.
Working with dynamically loaded buttons and forms on a webpage in Selenium can be challenging, as these elements may not be present when the page initially loads. To interact with these elements, you'll need to wait for them to become available.
You can use the following strategies to work with dynamically loaded elements in Selenium:
Explicit waits:
Explicit waits allow you to wait for a specific element to become available before interacting with it. This can be useful when working with dynamically loaded elements, as you can wait for the element to appear, become clickable, or disappear.
Here's an example using Python:
from selenium import webdriver
from selenium.webdriver.common.by import By
from selenium.webdriver.support.ui import WebDriverWait
from selenium.webdriver.support import expected_conditions as EC
driver = webdriver.Chrome()
driver.get('your_url')
# Replace 'dynamic_button_id' with the ID of the dynamic button
dynamic_button = WebDriverWait(driver, 10).until(
EC.element_to_be_clickable((By.ID, 'dynamic_button_id'))
)
dynamic_button.click()
# Rest of your code
driver.quit()
In this example, we use the WebDriverWait class to wait for the dynamic_button_id element to become clickable. The element_to_be_clickable() method takes a tuple containing the locator strategy and the element's identifier. The 10 parameter specifies the maximum amount of time to wait for the element, in seconds.
1. Implicit waits:
Implicit waits set a global timeout for the WebDriver to wait for elements to become available before throwing a NoSuchElementException. While implicit waits can be useful for some scenarios, they are not recommended for waiting for elements to become clickable, as they can lead to unexpected behavior.
2. Polling:
Polling is a technique where you repeatedly check for the presence of an element at a specific interval. This can be done using a loop and the WebDriverWait class. However, polling can be inefficient and may not be the best solution for waiting for elements to become available.
3. JavaScript execution:
In some cases, you may need to use JavaScript to interact with dynamically loaded elements. You can use the execute_script() method to run JavaScript code that interacts with the webpage.
Here's an example of using JavaScript to click a dynamic button:
from selenium import webdriver
from selenium.webdriver.common.by import By
driver = webdriver.Chrome()
driver.get('your_url')
# Replace 'dynamic_button_id' with the ID of the dynamic button
dynamic_button = driver.find_element(By.ID, 'dynamic_button_id')
driver.execute_script("arguments[0].click();", dynamic_button)
# Rest of your code
driver.quit()
In this example, we use the execute_script() method to run a JavaScript code that clicks the dynamic_button_id element.
When working with dynamically loaded elements, it's essential to use the appropriate waiting strategy to ensure that your code interacts with the elements only when they are available and in the correct state.
A proxy address is the URL or IP address of a proxy server. It is the destination that a client's request is forwarded to, instead of directly to the intended website or server. When a client wants to access a website or resource, the request is sent to the proxy server instead. The proxy server then fetches the requested content and returns it to the client.
To log in to your proxy, you will need to provide the required authentication credentials in the proxy settings of your client. The process varies depending on the type of client you are using.
For web browsers, you can usually find the proxy settings in the browser's options or preferences menu. Look for the "Connections" or "Network" section, and find the "Proxy" or "LAN settings" subsection. Enter the proxy address and port, and choose the appropriate proxy type (HTTP, HTTPS, or SOCKS). If your proxy requires authentication, you can typically enter your username and password in the appropriate fields.
For system-wide proxy settings on Windows, macOS, or Linux, you can use the network settings in the control panel or system preferences. Enter the proxy address and port, and choose the appropriate proxy type (HTTP, HTTPS, or SOCKS). If your proxy requires authentication, you can usually enter your username and password in the appropriate fields.
For applications or software that require a proxy, check the application's documentation or settings menu to see if it allows you to configure a proxy server. If authentication is needed, you'll typically find fields for entering your username and password.
There are many free VPN services. But it is not safe to use them. After all, they are just engaged in parsing. That is, they collect information about users. Most often - their IP-addresses, as well as text data (these are search queries and their personal information).
What else…