{
  "id": 264412,
  "title": "Do the simulated gravitational wave signal arrive at different time?",
  "url": "/competitions/g2net-gravitational-wave-detection/discussion/264412",
  "author_name": "",
  "post_date": "2021-08-12T04:04:11.732681300Z",
  "votes": 1,
  "comment_count": 3,
  "views": 0,
  "content": "<p>Hi everybody:<br>\n     In real world, the actual gravitational wave （GW150914） arrived first at L1 and 6.9 millisecond later at H1 (to account for the detectors’ relative orientations), even though Gravitational Waves travel at the speed of light.<br>\n     And I am puzzled that is simulated gravitational wave signal arrive at different time too? Or it was plus to noisy directly without shifted?<br>\n     Welcome to discuss!!!</p>",
  "messages": [
    {
      "id": "1467575",
      "postDate": "08/12/2021 04:04:11",
      "content": "<p>Hi everybody:<br>\n     In real world, the actual gravitational wave （GW150914） arrived first at L1 and 6.9 millisecond later at H1 (to account for the detectors’ relative orientations), even though Gravitational Waves travel at the speed of light.<br>\n     And I am puzzled that is simulated gravitational wave signal arrive at different time too? Or it was plus to noisy directly without shifted?<br>\n     Welcome to discuss!!!</p>",
      "rawMarkdown": "Hi everybody:\n     In real world, the actual gravitational wave （GW150914） arrived first at L1 and 6.9 millisecond later at H1 (to account for the detectors’ relative orientations), even though Gravitational Waves travel at the speed of light.\n     And I am puzzled that is simulated gravitational wave signal arrive at different time too? Or it was plus to noisy directly without shifted?\n     Welcome to discuss!!!",
      "votes": null
    },
    {
      "id": "1468165",
      "postDate": "08/12/2021 09:32:39",
      "content": "<p>Host said yes, look for their answers as I don't have a link handy.</p>",
      "rawMarkdown": "Host said yes, look for their answers as I don't have a link handy.",
      "votes": null
    },
    {
      "id": "1468606",
      "postDate": "08/12/2021 13:55:28",
      "content": "<p>Here's the link <a href=\"https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934\" target=\"_blank\">https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934</a></p>",
      "rawMarkdown": "Here's the link https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934",
      "votes": null
    },
    {
      "id": "1561208",
      "postDate": "10/27/2021 12:19:47",
      "content": "<p>Hey All,</p>\n<p>Thank you all for taking part in our competition. The participation has been overwhelmingly positive. We are currently conducting a survey to gauge the demographic and outreach achieved. Kindly spare 2min and fill in this survey <a href=\"https://forms.gle/QP9L16niPexozyhu5\" target=\"_blank\">https://forms.gle/QP9L16niPexozyhu5</a>.</p>\n<p>Thank you all,</p>\n<p>Regards,<br>\nChris</p>",
      "rawMarkdown": "Hey All,\n\nThank you all for taking part in our competition. The participation has been overwhelmingly positive. We are currently conducting a survey to gauge the demographic and outreach achieved. Kindly spare 2min and fill in this survey https://forms.gle/QP9L16niPexozyhu5.\n\nThank you all,\n\nRegards,\nChris",
      "votes": null
    }
  ],
  "comments": [
    {
      "id": 1468165,
      "author_name": "cpmpml",
      "author_url": "",
      "post_date": "08/12/2021 09:32:39",
      "content": "<p>Host said yes, look for their answers as I don't have a link handy.</p>",
      "votes": null,
      "replies": [
        {
          "id": 1468606,
          "author_name": "anjum48",
          "author_url": "",
          "post_date": "08/12/2021 13:55:28",
          "content": "<p>Here's the link <a href=\"https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934\" target=\"_blank\">https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934</a></p>",
          "votes": null,
          "replies": []
        }
      ]
    },
    {
      "id": 1561208,
      "author_name": "zerafachris",
      "author_url": "",
      "post_date": "10/27/2021 12:19:47",
      "content": "<p>Hey All,</p>\n<p>Thank you all for taking part in our competition. The participation has been overwhelmingly positive. We are currently conducting a survey to gauge the demographic and outreach achieved. Kindly spare 2min and fill in this survey <a href=\"https://forms.gle/QP9L16niPexozyhu5\" target=\"_blank\">https://forms.gle/QP9L16niPexozyhu5</a>.</p>\n<p>Thank you all,</p>\n<p>Regards,<br>\nChris</p>",
      "votes": null,
      "replies": []
    }
  ],
  "raw_markdown_by_id": {
    "1467575": "Hi everybody:\n     In real world, the actual gravitational wave （GW150914） arrived first at L1 and 6.9 millisecond later at H1 (to account for the detectors’ relative orientations), even though Gravitational Waves travel at the speed of light.\n     And I am puzzled that is simulated gravitational wave signal arrive at different time too? Or it was plus to noisy directly without shifted?\n     Welcome to discuss!!!",
    "1468165": "Host said yes, look for their answers as I don't have a link handy.",
    "1468606": "Here's the link https://www.kaggle.com/c/g2net-gravitational-wave-detection/discussion/251934",
    "1561208": "Hey All,\n\nThank you all for taking part in our competition. The participation has been overwhelmingly positive. We are currently conducting a survey to gauge the demographic and outreach achieved. Kindly spare 2min and fill in this survey https://forms.gle/QP9L16niPexozyhu5.\n\nThank you all,\n\nRegards,\nChris"
  },
  "source": "meta"
}