Respan Dataset Explorer

Select one behavior. Every returned turn has one binary label: Present or Absent. Source: final dense boolean release.

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turns-00052.parquet:2559

09e34d892051e84fe0a03eca
turn 2/18gpt-4o-2024-08-06EnglishUnited States529 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to capture overhead imagery from a plane or satellite and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, and the size of the object to be imaged in square meters. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Do not use the terms latitude, longitude, area of interest, AOI, or degrees.
ASSISTANT
1. Locate the site at coordinates 37.7749, -122.4194, with a span of 1000 meters, and document an object that is 50 square meters.

2. Survey overhead at the point 34.0522, -118.2437; explore within 500 meters and capture a subject of 30 square meters.

3. Conduct imaging above 40.7128, -74.0060, involving a target region of 1500 meters, focusing on an item measuring 100 square meters.

4. Secure a plane image of position 51.5074, -0.1278, marking a circumference of 900 meters, highlighting an entity of 75 square meters.

5. Acquire a bird’s-eye view over 48.8566, 2.3522, covering a circle of 1200 meters with an interest point of 65 square meters.

6. Grab a vantage point at 55.7558, 37.6173, with a sweep of 700 meters, spotlighting a focal object of 80 square meters.

7. Explore the aerial view over the spot 35.6895, 139.6917, with a coverage radius of 600 meters and feature a structure of 55 square meters.

8. Provide an overpass insight into 28.6139, 77.2090 by encompassing a radius of 450 meters and capturing an area's 90 square meters.

9. Retrieve a perspective over 39.9042, 116.4074, with a centered span of 1300 meters and a details capture sized at 40 square meters.

10. Snap a view from above around 41.9028, 12.4964, securing within 800 meters and zoning in on a feature of 110 square meters.

11. Transmit overhead visuals focused at 19.0760, 72.8777 with a range of 1100 meters, observing a parcel of 70 square meters.

12. Obtain topographic imagery around 34.6937, 135.5023 inside a 950-meter boundary, centering on a subject occupying 25 square meters.

13. Achieve snapshot coverage pointing to 37.5665, 126.9780 within a set of 1400 meters, focusing on an area using 95 square meters.

14. Aim for a wide coverage of the spot 41.0082, 28.9784, encompassing 550 meters while highlighting a key section of 45 square meters.

15. Document an aviating visual over 29.7604, -95.3698 with a sweep of 2000 meters, centering on an object measuring 85 square meters.

16. Arrange vista capture around 31.2304, 121.4737, ensuring a 650-meter radius, spotlighting an object 35 square meters in size.

17. Command an aerial check of 53.3498, -6.2603, traversing an expanse of 1800 meters, with a focal feature measuring 60 square meters.

18. Collect skyward data at 13.7563, 100.5018, with a radius reaching 400 meters and a key target of 105 square meters in focus.

19. Survey the terrain of 33.4484, -112.0740, spreading to 750 meters and capturing the essence of an item at 20 square meters.

20. Acquire an elevated glance at 55.9533, -3.1883, within a perimeter of 1600 meters, recording an entity at 120 square meters.

turns-00052.parquet:2560

b1df6d1ff9fb0b13af5d78e7
turn 3/18gpt-4o-2024-08-06EnglishUnited States554 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to capture overhead imagery from a plane or satellite and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, and the size of the object to be imaged in square meters. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Do not use the terms latitude, longitude, area of interest, AOI, or degrees.
ASSISTANT
1. Capture aerial shots centered at 37.7749 North and 122.4194 West, covering a radius of 1000 meters, focusing on an object spanning 50 square meters.

2. Fetch overhead captures for the location 34.0522 North, 118.2437 West, within a 500-meter circle, highlighting a feature that occupies 30 square meters.

3. Secure satellite visuals at 40.7128 North by 74.0060 West, focusing on a target area of 1500 meters and an item area of 100 square meters.

4. Acquire images from above at 51.5074 North, and 0.1278 West, taking in a 900-meter radius, centering on a structure that covers 75 square meters.

5. Get panoramic shots of 48.8566 North and 2.3522 East, with a spread of 1200 meters, concentrating on an entity measuring 65 square meters.

6. Record overhead views at 55.7558 North, 37.6173 East, over an area of 700 meters, capturing an element of 80 square meters.

7. Survey the skies over 35.6895 North, 139.6917 East, with a 600-meter coverage, focusing on an object 55 square meters in size.

8. Extract imagery for the coordinates 28.6139 North, 77.2090 East, with a 450-meter focus zone, and spotlight an object occupying 90 square meters.

9. Arrange a satellite view over 39.9042 North, 116.4074 East, covering up to 1300 meters and mapping out a feature of 40 square meters.

10. Photo-document from above at 41.9028 North, 12.4964 East, using an 800-meter radius, with emphasis on an item of 110 square meters.

11. Gather bird's-eye images for 19.0760 North, 72.8777 East, within a range of 1100 meters, capturing a focus area totaling 70 square meters.

12. Ensure coverage over 34.6937 North, 135.5023 East, by setting a sweep of 950 meters, concentrating on a section covering 25 square meters.

13. Snap wide-angle shots at 37.5665 North, 126.9780 East, inside a scope of 1400 meters, featuring a central object of 95 square meters.

14. Obtain imagery positioned at 41.0082 North, 28.9784 East, detailing a zone with a radius of 550 meters, featuring a focus area of 45 square meters.

15. Paint aerial photographs over 29.7604 North, 95.3698 West, within a 2000-meter span, surveying an object covering 85 square meters.

16. Highlight an upper view at 31.2304 North, 121.4737 East, within a 650-meter reach, targeting a subject of 35 square meters.

17. Direct aerial snapshots at 53.3498 North, 6.2603 West, with a stretch of 1800 meters, homing in on an area measuring 60 square meters.

18. Enlist satellite imagery over 13.7563 North, 100.5018 East, with a radius of 400 meters, focusing on a key area of 105 square meters.

19. Chart overhead documentation at 33.4484 North, 112.0740 West, spreading to 750 meters, capturing a feature totaling 20 square meters.

20. Command an aerial survey for 55.9533 North, 3.1883 West, within 1600 meters, centering on an object sized at 120 square meters.

turns-00052.parquet:2561

2a836b4cfb2858bb3a36feeb
turn 4/18gpt-4o-2024-08-06EnglishUnited States528 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to capture overhead imagery from a plane or satellite and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, and the size of the object to be imaged in square meters. Use random numbers for latitude, longitude, radius, and object size.  Also use positive and negative numbers for latitude and longitude instead of directions such as North, East, South, and West.  Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Do not use the terms imagery, latitude, longitude, area of interest, AOI, or degrees.
ASSISTANT
1. Obtain an overhead capture of the spot at 12.3456, -78.9012, highlighting an 800-meter circle and focusing on a 56 square meter object.

2. Conduct a satellite survey over -23.4567, 45.6789 with a 1500-meter perimeter, capturing an object of 120 square meters.

3. Record a bird’s-eye perspective at 34.5678, -98.7654, ensuring a 500-meter radius and zeroing in on a feature of 30 square meters.

4. Capture aerial images focused on -12.3456, 78.9012, covering 700 meters, with attention to a 95 square meter item.

5. Spy a high-altitude snapshot centered at 45.6789, -23.4567, accessing 1000 meters across and focusing on an object spanning 60 square meters.

6. Secure a top-down view above -34.5678, 98.7654, expanding to a 450-meter range, capturing a detail of 75 square meters.

7. Fetch the sky view at 23.4567, -45.6789, enclosed by a 950-meter radius, and documenting an area of 110 square meters.

8. Photograph from above 56.7890, -12.3456, exploring up to 1200 meters, spotlighting a feature measuring 40 square meters.

9. Envelop a satellite shot over -45.6789, 23.4567, with a 600-meter span, detailing a section of 85 square meters.

10. Arrange an aerial review at 67.8901, -34.5678, within a 1600-meter circle, targeting an object 50 square meters in size.

11. Source a panoramic scan above -56.7890, 12.3456, traversing 800 meters, with emphasis on a unit of 70 square meters.

12. Map out overhead coverage at 78.9012, -45.6789, by implementing a layout of 1400 meters, honing in on a 35 square meter subject.

13. Render visual documentation for -67.8901, 34.5678, spreading across a 550-meter zone, capturing an element of 55 square meters.

14. Collect an aerial image surrounding 89.0123, -56.7890, with an 1800-meter boundary, viewing an object of 65 square meters.

15. Chronicle a top-level shot at -78.9012, 45.6789, covering 650 meters, featuring a section spanning 25 square meters.

16. Project a plane's-eye documentation over 12.6789, -67.8901, sweeping through 900 meters, focusing on a region of 100 square meters.

17. Harvest an elevated perspective at -89.0123, 56.7890, with a reach of 500 meters, earmarking a motif of 20 square meters.

18. Deploy a wide-angled study above 23.8901, -78.9012, canvassing within 1300 meters, zoning in on 45 square meters of interest.

19. Achieve a comprehensive survey around -12.6789, 67.8901, in a range of 750 meters, circling an object at 15 square meters.

20. Generate a full-scope observation at 34.9012, -89.0123, extending up to a 2000-meter radius, spotlighting an area of 90 square meters.

turns-00052.parquet:2562

5114ff091775f5fb9b854589
turn 5/18gpt-4o-2024-08-06EnglishUnited States482 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to capture overhead imagery from a plane or satellite and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, and the size of the object to be imaged in square meters. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Do not use the terms imagery, latitude, longitude, area of interest, AOI, perimeter, or degrees.
ASSISTANT
1. Capture a high-altitude image centered at 12.3456, -78.9012 with a span of 800 meters, focusing on an object of 56 square meters.

2. Secure aerial visuals at -23.4567, 45.6789, within a 1500-meter radius, paying attention to a 120 square meter feature.

3. Photograph from above the point 34.5678, -98.7654, covering 500 meters and highlighting an area of 30 square meters.

4. Aim satellite coverage at -12.3456, 78.9012, capturing everything within 700 meters and focusing on an object of 95 square meters.

5. Generate overhead shots for 45.6789, -23.4567, sweeping 1000 meters, documenting an aspect of 60 square meters.

6. Collect a top-view survey over -34.5678, 98.7654, wrapping up 450 meters and concentrating on a detail of 75 square meters.

7. Obtain sky shots at 23.4567, -45.6789, handling a 950-meter circle, and examine an element of 110 square meters.

8. Acquire satellite footage of 56.7890, -12.3456, stretching up to 1200 meters, focused on a piece 40 square meters in size.

9. Grab bird's-eye visuals around -45.6789, 23.4567, embracing 600 meters and honing in on an area of 85 square meters.

10. Observe from above at 67.8901, -34.5678, encircling 1600 meters, emphasizing an object spanning 50 square meters.

11. Dispatch aerial reconnaissance over -56.7890, 12.3456, within an 800-meter boundary, capturing a feature of 70 square meters.

12. Schedule photographs at 78.9012, -45.6789, branching out 1400 meters, with a focus on 35 square meters of interest.

13. Execute top-down coverage for -67.8901, 34.5678, within a span of 550 meters, showcasing a region of 55 square meters.

14. Retrieve high-altitude images at 89.0123, -56.7890, encompassing 1800 meters while inspecting a target of 65 square meters.

15. Aim for an elevated scene over -78.9012, 45.6789, with a 650-meter focal range, underlining an object of 25 square meters.

16. Task a panoramic view for 12.6789, -67.8901, surveying 900 meters, and examining a feature of 100 square meters.

17. Set up an aerial overview at -89.0123, 56.7890, stretching up to 500 meters, identifying a focus of 20 square meters.

18. Outline satellite observation for 23.8901, -78.9012, drawing around 1300 meters, capturing an aspect of 45 square meters.

19. Arrange reconnaissance images at -12.6789, 67.8901, exploring within 750 meters, spotlighting an object of 15 square meters.

20. Implement a top-side scan over 34.9012, -89.0123, traversing 2000 meters, and highlighting an area covering 90 square meters.

turns-00052.parquet:2563

3200eadd21209456408c62fb
turn 6/18gpt-4o-2024-08-06EnglishUnited States513 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect RF data such as digitized I/Q and lines of bearing and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, and the center frequency and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West.  Do not use the terms frequency latitude, longitude, area of interest, AOI, perimeter, or degrees.
ASSISTANT
1. Gather RF signals at 12.3456, -78.9012, ensuring a reach of 800 meters, with a central frequency of 2.4GHz and a bandwidth of 200kHz.

2. Capture I/Q data from -23.4567, 45.6789, over a region expanding 1500 meters, using a main frequency of 5.8GHz and a span of 100kHz.

3. Collect lines of bearing focused on 34.5678, -98.7654, with an 800-meter radius, set at 1.2GHz and covering a width of 300kHz.

4. Secure RF readings centered at -12.3456, 78.9012, stretching 700 meters around, at 3GHz with a spread of 500kHz.

5. Extract radio data around 45.6789, -23.4567, encompassing a 1000-meter distance, deployed at 900MHz, and 150kHz bandwidth.

6. Procure RF insights targeting -34.5678, 98.7654, with a 450-meter area, pinning a frequency of 2.1GHz and capturing 250kHz.

7. Harvest signal data at 23.4567, -45.6789, covering 950 meters, tuned to a core frequency of 5GHz and 180kHz range.

8. Obtain telemetry views from the coordinates 56.7890, -12.3456, and including 1200 meters, centralizing on 6GHz with a 220kHz breadth.

9. Record radio frequency emissions at -45.6789, 23.4567, across a 600-meter range, set to 4.5GHz and observing a 350kHz band.

10. Capture RF findings related to 67.8901, -34.5678, involving 1600 meters, oriented at a 433MHz frequency with a 75kHz allocation.

11. Amass I/Q sequences around -56.7890, 12.3456, spanning 800 meters, with focus on a frequency of 7.5GHz and utilizing 500kHz.

12. Monitor radiowaves at 78.9012, -45.6789 in a radius of 1400 meters, centered on 2.3GHz and responsive to a 600kHz channel.

13. Retrieve directional bearings related to -67.8901, 34.5678, with 550 meters in scope, aligned to a frequency of 3.6GHz and 180kHz.

14. Collect RF data for 89.0123, -56.7890, extending over 1800 meters, keying on 5.5GHz with a 210kHz bandwidth.

15. Record RF signals at -78.9012, 45.6789, surrounding 650 meters, working at 1GHz and featuring a 120kHz frequency range.

16. Gather I/Q samples focused on 12.6789, -67.8901, observing 900 meters, centered on 8GHz, and accommodating a span of 70kHz.

17. Obtain RF readings from -89.0123, 56.7890, covering 500 meters, with a center of 2.7GHz and a bandwidth of 130kHz.

18. Amass signal analysis involving 23.8901, -78.9012, within 1300 meters, noting a frequency of 1.8GHz with a 90kHz range.

19. Register RF paths around -12.6789, 67.8901 within 750 meters, based at 6.5GHz, and allowing a 400kHz interval.

20. Capture telemetry data attached to 34.9012, -89.0123, gathering within 2000 meters, directed at 4.2GHz with a breadth of 165kHz.

turns-00052.parquet:2564

68e3edb51646ef8d7b692c71
turn 7/18gpt-4o-2024-08-06EnglishUnited States513 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect RF data such as digitized I/Q and lines of bearing and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, center frequency in Hz, and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West. Do not use the terms frequency latitude, longitude, area of interest, AOI, perimeter, or degrees.
ASSISTANT
1. Gather radio signals at coordinates 12.3456, -78.9012 with an 800-meter range, centered on 2,400,000 Hz, and a bandwidth of 200,000 Hz.

2. Capture I/Q data for the location -23.4567, 45.6789 consisting of 1,500 meters, at 5,800,000 Hz with a 100,000 Hz spread.

3. Collect RF lines at 34.5678, -98.7654 spanning 800 meters, using 1,200,000 Hz and a width of 300,000 Hz.

4. Secure RF signals from -12.3456, 78.9012, covering up to 700 meters, with a base of 3,000,000 Hz and a 500,000 Hz band.

5. Extract radio I/Q readings at 45.6789, -23.4567, reaching out 1,000 meters, stationed at 900,000 Hz, and a 150,000 Hz definition.

6. Procure signal insights at -34.5678, 98.7654 over 450 meters, focusing on 2,100,000 Hz and a capture range of 250,000 Hz.

7. Harvest RF data near 23.4567, -45.6789 expanding 950 meters, centered on 5,000,000 Hz with a span of 180,000 Hz.

8. Obtain telemetry at 56.7890, -12.3456, engaging 1,200 meters, highlighting a 6,000,000 Hz center and 220,000 Hz scope.

9. Record frequency paths at -45.6789, 23.4567, enveloping 600 meters, operating within 4,500,000 Hz and a 350,000 Hz division.

10. Capture RF patterns related to 67.8901, -34.5678, comprehending 1,600 meters, aimed at 433,000 Hz with a 75,000 Hz segment.

11. Amass I/Q data from -56.7890, 12.3456, featuring 800 meters, driven by 7,500,000 Hz and a 500,000 Hz aperture.

12. Monitor RF measurements at 78.9012, -45.6789, through 1,400 meters, central on 2,300,000 Hz and a 600,000 Hz bandwidth.

13. Retrieve directional signals at -67.8901, 34.5678, taking in 550 meters, harmonized to 3,600,000 Hz with 180,000 Hz.

14. Collect radio evidence at 89.0123, -56.7890, involving 1,800 meters, coordinating on 5,500,000 Hz paired with 210,000 Hz.

15. Track RF emissions at -78.9012, 45.6789, drawing within 650 meters, set at 1,000,000 Hz and utilizing a 120,000 Hz frequency range.

16. Gather digitized data at 12.6789, -67.8901, surrounding 900 meters, with the focus on 8,000,000 Hz and 70,000 Hz interval.

17. Obtain RF coverage around -89.0123, 56.7890, deploying 500 meters, with a focal point of 2,700,000 Hz and wide 130,000 Hz.

18. Amass radio findings at 23.8901, -78.9012, integrating 1,300 meters, keyed at 1,800,000 Hz with a 90,000 Hz range.

19. Register radio signal patterns from -12.6789, 67.8901, inside 750 meters, based at 6,500,000 Hz and pinned to a 400,000 Hz interval.

20. Implement RF data collection at 34.9012, -89.0123, touching 2,000 meters, targeting 4,200,000 Hz with a 165,000 Hz breadth.

turns-00052.parquet:2565

0a198e3c01c1cba34bb3d6d1
turn 8/18gpt-4o-2024-08-06EnglishUnited States489 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect geolocations and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, center frequency in Hz, and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West. Do not use the terms frequency latitude, longitude, area of interest, AOI, perimeter, or degrees.
ASSISTANT
1. Collect geolocations around 12.3456, -78.9012 within 800 meters, using a central 2,400,000 Hz and a 200,000 Hz range. 

2. Pinpoint geolocations at -23.4567, 45.6789 across 1,500 meters, set at 5,800,000 Hz with 100,000 Hz width.

3. Acquire location data near 34.5678, -98.7654, expanding to 800 meters, with a core of 1,200,000 Hz and a 300,000 Hz spread.

4. Capture location points centering on -12.3456, 78.9012, covering 700 meters, with focus on 3,000,000 Hz and a 500,000 Hz span.

5. Gather geolocation information from 45.6789, -23.4567, sweeping 1,000 meters around, under a 900,000 Hz control and 150,000 Hz bandwidth.

6. Secure position data at -34.5678, 98.7654 encompassing 450 meters, rooted in 2,100,000 Hz and 250,000 Hz channel.

7. Document geolocations for 23.4567, -45.6789 within 950 meters, centralized on 5,000,000 Hz and extending 180,000 Hz.

8. Register location markers close to 56.7890, -12.3456, spanning 1,200 meters, targeting 6,000,000 Hz and leveraging 220,000 Hz.

9. Log geolocation coordinates near -45.6789, 23.4567 covering 600 meters, attuned to 4,500,000 Hz and a 350,000 Hz window.

10. Acquire position readings at 67.8901, -34.5678 across 1,600 meters, utilizing 433,000 Hz with a 75,000 Hz field.

11. Record location specifics at -56.7890, 12.3456, within 800 meters, linked to a 7,500,000 Hz point and 500,000 Hz band.

12. Track geolocation data from 78.9012, -45.6789 over 1,400 meters, centered on 2,300,000 Hz and adapting to 600,000 Hz.

13. Lock in location figures around -67.8901, 34.5678 traversing 550 meters, set to 3,600,000 Hz with the width of 180,000 Hz.

14. Seize geolocations for 89.0123, -56.7890 covering 1,800 meters, focused on 5,500,000 Hz and deploying 210,000 Hz.

15. Collate geolocation inputs at -78.9012, 45.6789 encircling 650 meters, working at 1,000,000 Hz and a frequency of 120,000 Hz.

16. Harvest location data over 12.6789, -67.8901 navigating 900 meters, with a focal set at 8,000,000 Hz and 70,000 Hz breadth.

17. Map geolocation points near -89.0123, 56.7890, exploring 500 meters, under 2,700,000 Hz control and 130,000 Hz extension.

18. Capture geospatial data involving 23.8901, -78.9012 with a reach of 1,300 meters, attuned to 1,800,000 Hz and a 90,000 Hz stretch.

19. Gather position details at -12.6789, 67.8901 crossing 750 meters, oriented to 6,500,000 Hz and an interval of 400,000 Hz.

20. Consolidate geolocation markers around 34.9012, -89.0123 measuring 2,000 meters, keyed to 4,200,000 Hz with a 165,000 Hz frame.

turns-00052.parquet:2566

092cf6248924dd628752fd8f
turn 9/18gpt-4o-2024-08-06EnglishUnited States494 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect geolocations and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, center frequency in Hz, and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West. Do not use the terms geolocation, frequency, latitude, longitude, area of interest, AOI, perimeter, or degrees.
ASSISTANT
1. Log positions at 12.3456, -78.9012 across an 800-meter range, centered on 2,400,000 Hz with a 200,000 Hz bandwidth.

2. Capture coordinates near -23.4567, 45.6789 within 1,500 meters, using a central signal of 5,800,000 Hz and 100,000 Hz coverage.

3. Record location points at 34.5678, -98.7654, covering 800 meters, focused on a central 1,200,000 Hz and extending 300,000 Hz.

4. Chart data around -12.3456, 78.9012, reaching 700 meters, utilizing a core of 3,000,000 Hz and a band of 500,000 Hz.

5. Secure position details for 45.6789, -23.4567, with a span of 1,000 meters at 900,000 Hz and tracking a 150,000 Hz channel.

6. Log locations at -34.5678, 98.7654, across 450 meters, tuning to a central 2,100,000 Hz and leveraging 250,000 Hz.

7. Collect mapping inputs from 23.4567, -45.6789 over 950 meters, adhering to 5,000,000 Hz and a breadth of 180,000 Hz.

8. Register points at 56.7890, -12.3456, inside 1,200 meters, targeting 6,000,000 Hz with a spread of 220,000 Hz.

9. Secure readings around -45.6789, 23.4567 in a 600-meter area, centered on 4,500,000 Hz and extending 350,000 Hz.

10. Acquire location figures near 67.8901, -34.5678, circulating a zone of 1,600 meters, tuned to 433,000 Hz with a 75,000 Hz range.

11. Collate site data for -56.7890, 12.3456, covering up to 800 meters, structured around 7,500,000 Hz and an interval of 500,000 Hz.

12. Track presence at 78.9012, -45.6789, spanning 1,400 meters, aligned with 2,300,000 Hz, and 600,000 Hz spectrum.

13. Mark locales at -67.8901, 34.5678, embracing 550 meters, centered on 3,600,000 Hz and a band of 180,000 Hz.

14. Capture field points at 89.0123, -56.7890, incorporating 1,800 meters, located at 5,500,000 Hz and 210,000 Hz scope.

15. Identify positions around -78.9012, 45.6789 within 650 meters, focused on 1,000,000 Hz and utilizing a 120,000 Hz bandwidth.

16. Define areas surrounding 12.6789, -67.8901, within a circle of 900 meters, specifying 8,000,000 Hz, and allowing 70,000 Hz.

17. Compile territorial data at -89.0123, 56.7890 spread over 500 meters, set to 2,700,000 Hz and leveraging 130,000 Hz.

18. Draw target points about 23.8901, -78.9012, flowing through 1,300 meters, centered on 1,800,000 Hz and a 90,000 Hz radius.

19. Note locale references near -12.6789, 67.8901 extending to 750 meters, aligned with 6,500,000 Hz, and 400,000 Hz frequency.

20. Pinpoint site coordinates at 34.9012, -89.0123, covering 2,000 meters, focused on 4,200,000 Hz with a 165,000 Hz parameter.

turns-00052.parquet:2567

2d3897c3d082cacfe216194f
turn 10/18gpt-4o-2024-08-06EnglishUnited States505 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect geolocations and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, center frequency in Hz, and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West. Do not use the terms frequency, latitude, longitude, area of interest, AOI, perimeter, or degrees.  Also use terms related to locate, locations, and locales instead of geolocation.
ASSISTANT
1. Locate positions within 800 meters around 12.3456, -78.9012, tuned to 2,400,000 Hz with a bandwidth of 200,000 Hz.

2. Map out locales at -23.4567, 45.6789, extending across 1,500 meters, with a central signal of 5,800,000 Hz and 100,000 Hz coverage.

3. Chart location points surrounding 34.5678, -98.7654, covering up to 800 meters, set at 1,200,000 Hz and spanning 300,000 Hz.

4. Pinpoint sites around -12.3456, 78.9012, spanning 700 meters, centered on 3,000,000 Hz and with a reach of 500,000 Hz.

5. Secure mapping details for 45.6789, -23.4567 across 1,000 meters, operating at 900,000 Hz and channeling 150,000 Hz.

6. Track positions in the region of -34.5678, 98.7654 within 450 meters, focusing on 2,100,000 Hz and capturing a band of 250,000 Hz.

7. Survey locations from 23.4567, -45.6789 over 950 meters, synchronized to 5,000,000 Hz and stretching 180,000 Hz.

8. Identify locales near 56.7890, -12.3456, encompassing an area of 1,200 meters, attuned to 6,000,000 Hz, and leveraging 220,000 Hz.

9. Follow points around -45.6789, 23.4567, within a circle of 600 meters, set at 4,500,000 Hz, and using 350,000 Hz.

10. Chart territories near 67.8901, -34.5678, encircling a span of 1,600 meters, tuned to 433,000 Hz with 75,000 Hz range.

11. Capture site data around -56.7890, 12.3456, reaching 800 meters, focusing on 7,500,000 Hz and including 500,000 Hz.

12. Anchor locations at 78.9012, -45.6789, stretching over 1,400 meters, centered on a 2,300,000 Hz signal and 600,000 Hz band.

13. Map locations for -67.8901, 34.5678 spanning 550 meters, centered on 3,600,000 Hz and expanding 180,000 Hz.

14. Plot site specifics at 89.0123, -56.7890 involving 1,800 meters, tracking at 5,500,000 Hz and covering 210,000 Hz.

15. Record locations near -78.9012, 45.6789 within a zone of 650 meters, using a 1,000,000 Hz core and broadening 120,000 Hz.

16. Establish locales surrounding 12.6789, -67.8901 reaching 900 meters, oriented at 8,000,000 Hz and adjusting a 70,000 Hz range.

17. Align site markers about -89.0123, 56.7890 spanning 500 meters, tuning into 2,700,000 Hz and a 130,000 Hz frequency.

18. Define location references near 23.8901, -78.9012 flowing through 1,300 meters, pinpointed on 1,800,000 Hz and channeling 90,000 Hz.

19. Chart locales at -12.6789, 67.8901 covering 750 meters, zeroing in on 6,500,000 Hz and weaving through 400,000 Hz.

20. Locate site parameters around 34.9012, -89.0123, across 2,000 meters, utilizing a 4,200,000 Hz signal and a width of 165,000 Hz.

turns-00052.parquet:2568

07989056ffdad4ec19d742e6
turn 11/18gpt-4o-2024-08-06EnglishUnited States516 words
degenerate_repetitionAbsentFinal dense release
USER
Generate 20 sentences in an imperative mood where a human tells a digital assistant to collect geolocations and the human provides the latitude and longitude of the center of an Area of Interest (AOI) in degrees, the radius of the AOI in meters, center frequency in Hz, and bandwidth in Hz. Do not mention the name of the digital assistant. Make sure to use as diverse language as possible. Use positive and negative values for latitude and longitude instead of directions such as North, East, South, and West. Do not use the terms frequency, latitude, longitude, area of interest, AOI, perimeter, or degrees. Also use terms related to collecting locations, locales, and positions instead of collecting  geolocations.
ASSISTANT
1. Gather positions around 12.3456, -78.9012 within a range of 800 meters, centered on 2,400,000 Hz and using a 200,000 Hz bandwidth.

2. Pinpoint locales at -23.4567, 45.6789 spanning 1,500 meters, with a central signal of 5,800,000 Hz and a spread of 100,000 Hz.

3. Collect site markers near 34.5678, -98.7654 covering 800 meters, tuned to 1,200,000 Hz and a width of 300,000 Hz.

4. Secure location data surrounding -12.3456, 78.9012, reaching 700 meters and set to 3,000,000 Hz with a channel of 500,000 Hz.

5. Track positions at 45.6789, -23.4567, enveloping 1,000 meters, operating at 900,000 Hz and a frequency span of 150,000 Hz.

6. Identify locations around -34.5678, 98.7654 across 450 meters, focusing on 2,100,000 Hz and capturing a 250,000 Hz range.

7. Map out locales from 23.4567, -45.6789 over 950 meters, aligned to 5,000,000 Hz with a 180,000 Hz reach.

8. Follow mapped points at 56.7890, -12.3456 enveloping 1,200 meters, tuned to 6,000,000 Hz and a bandwidth of 220,000 Hz.

9. Register positions near -45.6789, 23.4567, encircling a zone of 600 meters, using a core of 4,500,000 Hz and a spectrum of 350,000 Hz.

10. Capture site information around 67.8901, -34.5678, expanding 1,600 meters, aligned with 433,000 Hz and utilizing 75,000 Hz.

11. Establish location points at -56.7890, 12.3456 over 800 meters, centered at 7,500,000 Hz and featuring a channel of 500,000 Hz.

12. Chart locales near 78.9012, -45.6789 extending to 1,400 meters, attuned to 2,300,000 Hz and a passage of 600,000 Hz.

13. Determine mapping points around -67.8901, 34.5678, spanning 550 meters, set to 3,600,000 Hz with an extent of 180,000 Hz.

14. Compile locations at 89.0123, -56.7890, incorporating 1,800 meters, centered on 5,500,000 Hz and a stretch of 210,000 Hz.

15. Plot positions near -78.9012, 45.6789, within 650 meters, focusing on 1,000,000 Hz and tracing a width of 120,000 Hz.

16. Define locales around 12.6789, -67.8901 out to 900 meters, utilizing 8,000,000 Hz with a spread of 70,000 Hz.

17. Log mapped coordinates at -89.0123, 56.7890 covering 500 meters, zeroed in on 2,700,000 Hz and ranging 130,000 Hz.

18. Outline positions from 23.8901, -78.9012, expanding through 1,300 meters, highlighted at 1,800,000 Hz with a breadth of 90,000 Hz.

19. Collect site references near -12.6789, 67.8901, across 750 meters, centered on 6,500,000 Hz and extending 400,000 Hz.

20. Secure locations surrounding 34.9012, -89.0123, covering 2,000 meters, targeting 4,200,000 Hz within a bandwidth of 165,000 Hz.