{
  "id": 357528,
  "title": "The next G2Net gravitational-wave competition",
  "url": "/competitions/g2net-gravitational-wave-detection/discussion/357528",
  "author_name": "",
  "post_date": "2022-10-04T15:16:06.092223200Z",
  "votes": 6,
  "comment_count": 1,
  "views": 0,
  "content": "<p>We were so pleased with the outcome of the first G2Net competition that we've prepared another. We're happy to announce <a href=\"https://www.kaggle.com/competitions/g2net-detecting-continuous-gravitational-waves\" target=\"_blank\">G2Net Detecting Continuous Gravitational Waves</a>!</p>\n<p>This new competition is harder than the previous one; with a different type of source and the signals are even weaker and longer than before. We've also incorporated your feedback. This time there are both real and simulated data and we're giving you code to generate your own data.</p>\n<p>We look forward to seeing you again in the new competition. Good luck!</p>",
  "messages": [
    {
      "id": "1971388",
      "postDate": "10/04/2022 15:16:06",
      "content": "<p>We were so pleased with the outcome of the first G2Net competition that we've prepared another. We're happy to announce <a href=\"https://www.kaggle.com/competitions/g2net-detecting-continuous-gravitational-waves\" target=\"_blank\">G2Net Detecting Continuous Gravitational Waves</a>!</p>\n<p>This new competition is harder than the previous one; with a different type of source and the signals are even weaker and longer than before. We've also incorporated your feedback. This time there are both real and simulated data and we're giving you code to generate your own data.</p>\n<p>We look forward to seeing you again in the new competition. Good luck!</p>",
      "rawMarkdown": "We were so pleased with the outcome of the first G2Net competition that we've prepared another. We're happy to announce [G2Net Detecting Continuous Gravitational Waves](https://www.kaggle.com/competitions/g2net-detecting-continuous-gravitational-waves)!\n\nThis new competition is harder than the previous one; with a different type of source and the signals are even weaker and longer than before. We've also incorporated your feedback. This time there are both real and simulated data and we're giving you code to generate your own data.\n\nWe look forward to seeing you again in the new competition. Good luck!",
      "votes": null
    },
    {
      "id": "2850590",
      "postDate": "06/02/2024 08:29:36",
      "content": "<p>How can be converting the signal into wavelets or other forms instead of generating spectrogram.anyone pls answer me</p>",
      "rawMarkdown": "How can be converting the signal into wavelets or other forms instead of generating spectrogram.anyone pls answer me",
      "votes": null
    }
  ],
  "comments": [
    {
      "id": 2850590,
      "author_name": "vyshnavkp",
      "author_url": "",
      "post_date": "06/02/2024 08:29:36",
      "content": "<p>How can be converting the signal into wavelets or other forms instead of generating spectrogram.anyone pls answer me</p>",
      "votes": null,
      "replies": []
    }
  ],
  "raw_markdown_by_id": {
    "1971388": "We were so pleased with the outcome of the first G2Net competition that we've prepared another. We're happy to announce [G2Net Detecting Continuous Gravitational Waves](https://www.kaggle.com/competitions/g2net-detecting-continuous-gravitational-waves)!\n\nThis new competition is harder than the previous one; with a different type of source and the signals are even weaker and longer than before. We've also incorporated your feedback. This time there are both real and simulated data and we're giving you code to generate your own data.\n\nWe look forward to seeing you again in the new competition. Good luck!",
    "2850590": "How can be converting the signal into wavelets or other forms instead of generating spectrogram.anyone pls answer me"
  },
  "source": "meta"
}