5A seismologist is analyzing data from 12 seismic sensors placed along a fault line. Each sensor detects tremors and records data in 15-minute intervals. If each sensor generates 2.4 MB of data per interval, how many gigabytes of data are collected from all sensors over a 48-hour period?

["Title: How 5A Seismologist Analyzes Massive Seismic Data in 48 Hours", "When monitoring active fault lines, precision and data volume become critical. A 5A seismologist recently deployed 12 advanced seismic sensors along a high-risk fault zone, each capturing detailed tremor data every 15 minutes. Understanding the sheer scale of data generated is essential for timely analysis, real-time hazard assessment, and long-term geological studies.", "Sensor Network Scale and Data Generation\nEach of the 12 seismic sensors records 2.4 megabytes (MB) of data every 15 minutes. With continuous operation over a 48-hour window, each sensor captures multiple data points across changing intervals.", "Step-by-step Calculation of 48-Hour Data per Sensor:\n- There are 60 minutes in an hour, so each 15-minute interval lasts 1/4 of an hour.\n- In 48 hours, the number of 15-minute intervals is:\n [\n 48 \ imes \frac{60}{15} = 48 \ imes 4 = 192 \ ext{ intervals}\n ]\n- Data per sensor:\n [\n 192 \ imes 2.4\ \ ext{MB} = 460.8\ \ ext{MB}\n ]", "Total Data from All Sensors:\nWith 12 sensors working simultaneously:\n[\n12 \ imes 460.8\ \ ext{MB} = 5,529.6\ \ ext{MB}\n]", "Convert to Gigabytes (GB):\nSince 1 GB = 1024 MB:\n[\n\frac{5,529.6}{1024} \approx 5.4\ \ ext{GB}\n]", "Conclusion:\nThe 5A seismologist collects approximately 5.4 gigabytes of high-resolution seismic data from the 12 sensors over a 48-hour period. This massive dataset enables detailed pattern recognition, anomaly detection, and improved earthquake forecasting—key components in modern seismology. Efficient data handling and advanced analytics are essential to transform raw sensor inputs into actionable scientific insights."]









