Contained Resource
Estimates the theoretical quantity of the target material contained within the entered ore tonnage.
Estimate the theoretical amount of contained material in a mineral resource and calculate a rough gross reference value using tonnage, grade, recovery, and a value per unit.
Separate geological quantity from recoverable material and gross reference value.
Based on the figures entered into the calculator.
The result does not subtract mining, processing, transportation, capital, operating, financing, environmental, tax, royalty, permitting, infrastructure, marketing, or other project costs.
The calculator converts grade into a quantity of contained material, applies the recovery assumption, and converts that material into the unit used for the reference value.
Estimates the theoretical quantity of the target material contained within the entered ore tonnage.
Recovery represents the proportion of contained material assumed to be recovered during processing.
The recoverable quantity is converted into the selected pricing unit before the reference value is applied.
Common for bulk and base-metal deposits such as copper, nickel, zinc, iron, and some lithium resources.
Example: 0.8% copperCommonly used for precious metals where economically meaningful concentrations may be relatively small.
Example: 2.5 g/t goldUsed for lower-concentration elements and selected mineral-resource reporting.
10,000 ppm = 1%Used for very low concentrations, particularly in geochemical sampling and analytical results.
1,000 ppb = 1 ppmA hypothetical deposit containing one million metric tonnes of ore at an average copper grade of 0.8% would theoretically contain 8,000 metric tonnes of copper before recovery losses.
If a 90% recovery assumption were applied, the estimated recoverable quantity would be 7,200 metric tonnes.
Multiplying contained material by a commodity reference value can produce a very large number. That number should not be interpreted as the value of the mine, company, property, or investment.
Economic value depends on whether the resource can actually be extracted, processed, transported, permitted, financed, and sold at a cost below the revenue it generates.
What Makes One Mineral More Valuable Than Another? →Resource profiles provide the geology, supply, processing, market structure, and real-world uses a calculator alone cannot show.
Precious-metal grades, supply, mining, uses, and resource-value context.
CuOre grades, electrical demand, production, processing, and global supply.
LiResource forms, battery demand, chemical processing, and strategic supply.
UUranium grades, nuclear fuel markets, mining, conversion, and global supply.
This calculator provides simplified mathematical estimates from user-supplied inputs. Results should not be used as mineral reserve statements, feasibility studies, property valuations, securities analysis, investment advice, engineering conclusions, or financial projections.
Use Earth Value Index resource profiles, tools, Resource Uses, country information, and market references together to understand what natural resources are worth and why they matter.