Bushels Of Corn Per Acre Calculator

Bushels Of Corn Per Acre Calculator

Estimate corn grain yield by acre from harvest tickets, wet grain weight, or pre-harvest ear counts with moisture correction, field loss, harvested-acre, and kernel-size adjustments.

bu per acre 15.5% moisture ear count method field total
🌽Corn Yield Presets

Choose a realistic grain corn situation, then edit the harvested acres, moisture, stand, kernel count, shrink, and field loss values for your field or test strip.

📏Field Area And Yield Method
Use harvested acres only; remove drown-outs, waterways, and unharvested headlands.
Used for row-strip acres and ear-count conversion.
🚜Harvest Ticket Or Grain Weight
Use elevator, monitor, or bin bushels already corrected to standard corn bushels.
Use negative if the monitor runs high; positive if tickets show it runs low.
Include only corn grain weight, not wagon tare.
Market corn bushels are commonly adjusted to 15.5% moisture.
Used to show biological yield before header, gathering, and dropped-ear losses.
🔍Ear Count And Kernel Estimate
More zones reduce the risk of using one unusually strong or weak spot.

Corn Yield Estimate

Your adjusted corn yield is ready.

Adjusted Yield
0
bu per acre at 15.5%
0 t/ha grain equivalent
Field Total
0
standard corn bushels
0 lb standard weight
Harvested Area
0
acres harvested
0 hectares
Pre-Loss Yield
0
bu/ac before field loss
Loss setting: 0%
Yield Breakdown
Method usedHarvest ticket
Measured or corrected bushels0 bu
Moisture and shrink adjustmentStandard bushels
Bushels after shrink0 bu
Harvested acres used0 ac
Estimated corn grain weight0 lb
Component yield detailNot used
Reliability noteReady
📊Key Corn Yield Factors
56 lb
Standard bushel
Shelled corn bushels are based on 56 pounds at standard moisture.
15.5%
Moisture basis
Wet grain weight is corrected to market moisture before yield per acre.
85k
Kernel factor
Common pre-harvest estimates use about 80,000 to 90,000 kernels per bushel.
43,560
Sq ft per acre
Row-strip acres use row spacing, row count, and harvested length.
📘Reference Tables

Corn moisture correction example

Harvest moistureStandard bushel factor from wet weightWet pounds per standard bushelUse in calculator
15.5%1.00056.0 lbNo moisture correction beyond shrink or handling loss.
18%0.97057.7 lbModerate correction for normal early harvest corn.
22%0.92360.7 lbUseful for wet fall harvest and dryer planning.
26%0.87664.0 lbLarge correction; verify moisture samples and tare weights.

Kernel-count yield guide

Crop conditionKernel factorWhat it meansCalculator effect
Excellent grain fill75,000 to 80,000Large, heavy kernels with good test weight.Raises estimated bushels per acre.
Average field corn85,000 to 90,000Normal kernel size for many scouting estimates.Balanced pre-harvest estimate.
Heat or drought stress95,000 to 100,000Small kernels, shallow fill, or low test weight risk.Lowers estimated bushels per acre.
Unknown late season90,000 to 95,000Use when kernels are not fully dented or weight is uncertain.Builds in a conservative check.

Common corn yield ranges

Field situationTypical yield rangePrimary driverCalculator note
Dryland stress90 to 150 bu/acRain timing, stand loss, kernel depthUse field loss and higher kernel factor.
Average grain field160 to 220 bu/acHybrid fit, fertility, populationTickets usually give the strongest final number.
Irrigated strong field220 to 300 bu/acWater, nitrogen, disease controlCheck monitor calibration against scale weights.
Research or contest strip280+ bu/acUniform stand, edge, intensive managementMeasure harvested strip acres carefully.

Row length for 1/1000 acre counts

Row spacingLength for 1/1000 acrePlants counted x 1000Best use
15 inches34 ft 10 inPlants per acreNarrow-row corn stand checks.
20 inches26 ft 2 inPlants per acreHigh population systems.
30 inches17 ft 5 inPlants per acreCommon ear-count scouting strip.
36 inches14 ft 6 inPlants per acreWide-row or older equipment spacing.
Field Calculation Notes

Separate harvested yield from biological yield. Ticket bushels divided by harvested acres show what went into storage, while the field-loss setting estimates what the crop may have produced before header, shatter, dropped-ear, or machine loss.

Use several scouting zones. Ear counts are sensitive to thin spots, end rows, compaction lanes, and hybrid changes. Average representative zones before using the kernel method for marketing or storage decisions.

For hours, you might sit in the cab of combine harvester, watching it carve its way across field. But as long as grain doesn’t hit the scale, you’re not sure just what is going on. When it does, the numbers are no longer hypothetical, they become a part of your bottom line.

A few more bushels of corn per acre mean the difference between a good year and one that leaves you scratching your head over the ledger. The calculator above will do the math for you, but knowing why inputs makes a difference makes those numbers more than just data; they’re the path to making your farm pay off.

How to Count Your Corn Yield

By far the biggest error farmers make is confusing their acres planted with acres harvested. For example, suppose you plant eighty acres but left five unharvested, perhaps due to wet conditions on headlands. Using wrong denominator will give you an artificially high yield-per-harvested-acre number. Only count the ground that produce grain and put it in bin.

Sounds easy, right? But people often overlook flooded section or a waterway. You want to keep your yield estimate honest, so the tool allow you to adjust for harvested share. And that honesty comes into play if you’re trying to compare how different field performed compared to each other from one year to next.

On the other hand, intuition often fails when it come to moisture correction. Yes, wet grain is heavier, but that doesn’t mean it has more actual corn in it! For instance, a bushel of corn are defined as weighing a certain amount when its moisture content equals 15.5 percent. If you harvest your crop at 22 percent moisture, all that additional weight is water (not product).

That means that if you didn’t adjust for moisture, you’d end up paying to ship water to the elevator. The table below show what the moisture adjustment looks like. It shows how much it shrinks as moisture increases. You make the correction because you don’t want to pay to haul around water when selling grain or storing it.

This seems like a small thing, but it matter a lot for both sales contract planning and storage. If you don’t do the adjustment, you’ll think you’ve harvested more then you really have.

Counting Ears: Walking the field before combine and estimating yield has nothing to do with predicting weather. It’s based off counting ears (harvestable) per plant, plants per acre, and kernel counts. That’s the part that sounds complicated. A lot of it is knowing what you’re measuring.

The thing to know about the yield-estimating process is that you need to count harvestable ears and pick a realistic kernel size factor, because using a standard factor for a drought-stressed field could of make your estimate too high. Then there is the matter of the “kernel size factor.” Kernels is smaller in a drought year. There are fewer kernels per bushel. That makes a big difference. If you use an average number for a drought year, you’ll guess wrong. Tweak that factor in calculator using ear appearance. It is not exact, but it beats a guess.

Field loss is the silent thief of yield. Ears drop off the header. There’s kickback. There’s shrink in handling. Entering a field loss percentage allows you to back-calculate the biological yield that never saw the machine. This helps you distinguish between mechanical efficiency and agronomic performance.

In other words, did you have a good crop (calculated high biological) or was there something wrong with combine (low ticket yield)? Or was it the other way around? Were both bad? Then you look toward weather or maybe lack of fertility. The key to avoid blaming the crop when it’s really the combine is learning to distinguish those two causes for a poor harvest.

It’s all about yield, which means it’s always going to be a story of weather, soil and your management. The plot comes from the numbers; the meaning comes from context. Whatever measuring tool you use, the intention is the same. You might use pre-harvest scouting data, numbers from the wagon scale, or harvest tickets. I want to know what I’ve got so I can confidently make my next move. Uncertanty becomes a plan when you have accuratley numbers.

Bushels Of Corn Per Acre Calculator

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