soil / Field growers and specialty-crop operators
Representative soil sampling
Design a repeatable sampling process that keeps unlike areas separate and produces laboratory results that can support nutrient decisions.
See the whole mission
Orient before entering the field.
Connect the intended outcomes, operating stages, stop conditions, and supporting technology concepts before opening the detailed action sequence.
- 01Define representative management zones
- 02Collect and combine consistent subsamples
- 03Preserve labels and field context
- 04Use a qualified laboratory and interpret results locally
- 01Divide before collecting
A composite sample only represents the area from which its subsamples came.
3 field actions ↓ - 02Use one consistent method
Comparable depth, timing, tools, and placement make repeated tests more interpretable.
4 field actions ↓ - 03Protect identity and context
A technically sound sample loses value when its origin or management history is unclear.
3 field actions ↓ - 04Interpret with local guidance
Laboratory values become recommendations only after crop, soil, yield goal, method, and regional calibration are considered.
3 field actions ↓
- G01
Sampling depth and frequency vary by crop, tillage, nutrient, laboratory method, and region.
- G02
This guide does not prescribe fertilizer rates.
- G03
Use protective practices when sampling contaminated or suspect soil.
Divide before collecting
A composite sample only represents the area from which its subsamples came.
- 01Separate areas with different soil, slope, drainage, crop history, amendments, or plant performance
- 02Keep diagnostic problem areas separate from routine monitoring areas
- 03Record a stable name or map boundary for every sampling unit
Use one consistent method
Comparable depth, timing, tools, and placement make repeated tests more interpretable.
- 01Follow the laboratory or local Extension sampling instructions
- 02Collect multiple subsamples across the representative unit
- 03Avoid unusual points unless they are the specific diagnostic target
- 04Mix the subsamples thoroughly in a clean container
Protect identity and context
A technically sound sample loses value when its origin or management history is unclear.
- 01Label the sample before leaving the field
- 02Record date, crop, recent fertilizer or manure, and unusual conditions
- 03Retain the field boundary or sampling path for the next cycle
Interpret with local guidance
Laboratory values become recommendations only after crop, soil, yield goal, method, and regional calibration are considered.
- 01Use the laboratory report and locally calibrated recommendations
- 02Do not compare numbers from unlike extraction methods as if identical
- 03Investigate unexpected results before making a large corrective application
Continue through the operation
See where this field guide fits.
Move beyond one task into the complete evidence, technology, operating, and review sequence around it.
Follow the complete field-season evidence loop
Move from a reviewed field model through representative soil evidence, planter setup, emerged-stand verification, nutrition, water, integrated protection, application readiness, harvest-loss diagnosis, and a qualified yield record that can support the next planning cycle.
- 01 / DEFINE FIELDVerify the operational field modelField guide→
- 02 / OBSERVEBegin with representative soil evidenceField guide→
- 03 / ESTABLISHVerify the planter in the fieldField guide→
- 04 / VERIFYAssess the emerged standField guide→
- 05 / PLANBuild the nutrient application decisionField guide→
- 06 / DIAGNOSEInvestigate crop nutrient statusField guide→
- 07 / SCHEDULE WATERBuild the irrigation scheduleField guide→
- 08 / VERIFY FLOWQualify the flow readingField guide→
- 09 / TEST DISTRIBUTIONRun a center-pivot uniformity checkField guide→
- 10 / VERIFY WATERAudit application uniformityField guide→
- 11 / RECONCILE WATERClose the field water balanceField guide→
- 12 / INVESTIGATE CROPInvestigate suspected crop water stressField guide→
- 13 / VERIFY VRIReview variable rate irrigation readinessField guide→
- 14 / PROTECTUse the IPM decision loopField guide→
- 14B / HAND OFF SAMPLEProtect the diagnostic sample handoffField guide→
- 15 / PREPARE SPRAYERVerify sprayer calibration readinessField guide→
- 16 / GATE APPLICATIONMake the spray-condition decisionField guide→
- 16A / VERIFY LABELAudit the pesticide label-authority packetField guide→
- 16B / CONTROL INVENTORYAudit pesticide inventory and storageField guide→
- 16C / AUDIT LOADAudit the pesticide mix-load eventField guide→
- 16D / AUDIT CLEANOUTAudit application-equipment cleanoutField guide→
- 16E / CLOSE CUSTODYAudit container and rinsate dispositionField guide→
- 17 / ALIGN CANOPYCalibrate delivery to an orchard canopyField guide→
- 18 / RETAINDiagnose combine harvest lossField guide→
- 19 / VERIFY COMBINEVerify one combine adjustmentField guide→
- 20 / QUALIFY DATAQualify the harvest dataField guide→
- 21 / MAINTAINPlan machine maintenance before the next operationField guide→
- 22 / QUALIFY WEATHERCheck the local weather evidenceField guide→
- 23 / CHECK DELIVERYVerify a drip irrigation zoneField guide→
- 24 / TRIAGE PLANTERTurn a planter alert into a field checkField guide→
- 25 / GROUND TRUTHTest a remote-sensing pattern in the fieldField guide→
- 26 / ACCEPT POSITIONAccept the exact GNSS and RTK field chainField guide→
- 27 / VERIFY CONNECTIONReview mixed-fleet ISOBUS compatibilityField guide→
- 28 / PREFLIGHT INTENTPreflight the prescription handoffField guide→
- 29 / BOUND AUTOMATIONReview automation site readinessField guide→
- 30 / CONTROL DATAReview farm-data consent and exitField guide→
- 31 / VALIDATE VISIONValidate machine vision in the fieldField guide→
- 32 / PLAN UASBuild the UAS mission evidence planField guide→
- 33 / TRIAGE TELEMATICSInvestigate telematics data qualityField guide→
- 34 / CLOSE WORKClose the work order with evidenceField guide→
- 34A / BASELINE MACHINEAudit the machine configuration baselineField guide→
- 34B / QUALIFY CONDITIONAudit machinery condition evidenceField guide→
- 34C / INVESTIGATE FAILUREReview the machinery failure eventField guide→
- 34D / RELEASE MACHINERun the return-to-service readiness gateField guide→
- 35 / MANAGE DRAINAGEAudit the drainage water management planField guide→
- 36 / MONITOR OUTFLOWAudit edge-of-field evidenceField guide→
- 37 / HAND OFF TREATMENTReconcile the conservation drainage practiceField guide→
- 38 / BASELINE ENERGYAudit the farm energy baselineField guide→
- 39 / REVIEW DUAL USEReview the agrivoltaic site evidenceField guide→
- 40 / EXERCISE RESILIENCERun the farm critical-load exerciseField guide→
- 41 / AUDIT STORAGEAudit manure storage from outsideField guide→
- 42 / AUDIT MANUREAudit the manure sample evidenceField guide→
- 43 / REVIEW RECOVERYReconcile anaerobic digestion evidenceField guide→
- 44 / AUDIT SOIL DESIGNAudit the soil sampling designField guide→
- 45 / COMPARE SOIL REPORTSReconcile soil laboratory reportsField guide→
- 46 / REVIEW SOIL HEALTHReview soil health indicatorsField guide→
- 47 / REVIEW SOIL CHANGEAudit the soil evidence timelineField guide→
- 48 / REVIEW MICROCLIMATEAudit the microclimate network designField guide→
- 49 / PREPARE FOR FROSTReview frost-monitoring readinessField guide→
- 50 / AUDIT THERMAL TIMEAudit a degree-day model runField guide→
- 51 / QUALIFY WEATHER SOURCEReview weather-network representativenessField guide→
- 52 / AUDIT WATER SAMPLEAudit the irrigation-water sampleField guide→
- 53 / COMPARE WATER REPORTSReconcile irrigation-water reportsField guide→
- 54 / REVIEW SALT EVIDENCEReview salinity and sodicity evidenceField guide→
- 55 / AUDIT WATER REUSEAudit agricultural recycled-water governanceField guide→
- 56 / REVIEW FERTILIZERReview fertilizer product authorityField guide→
- 57 / AUDIT BLENDAudit blend production custodyField guide→
- 58 / AUDIT FERTILIZER STOREAudit fertilizer inventoryField guide→
- 59 / TRACE NUTRIENT LOADReconcile nutrient source to fieldField guide→
- 60 / CLOSE FERTILIZER CASEReview fertilizer nonconformance closureField guide
Begin with representative soil evidence
Keep unlike areas separate and preserve the field identity that later plans and machine records need.