Medical and Laboratory Converters
Choose the units you want to convert. Each tool includes a calculator, formula and examples.
11 converters
Blood Glucose mg/dL to mmol/L
→ mmol/L glucose
Blood Glucose mmol/L to mg/dL
→ mg/dL glucose
Cholesterol mg/dL to mmol/L
→ mmol/L
Hemoglobin Converter
→ g/L from g/dL
Creatinine Converter
→ mmol/L
Vitamin D Converter
→ nmol/L
Medication Dosage Unit Converter
→ destination unit under your verified factor
Micrograms to Milligrams
→ mg
IU to Micrograms
→ µg
Body Temperature Converter
→
Medical Laboratory SI Unit Converter
→ destination unit under your verified factor
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About these conversions
Browse 11 published tools in Medical and Laboratory Converters. Select the source and destination unit that match your measurement. Each generated calculator shows a formula, worked examples, a conversion table and detailed answers so you can check the relationship before using the result.
Choosing a unit convention
Read the unit definition beside the calculator. The same everyday name can describe a different regional or industry standard. Keep the original unit and its convention with the converted value. A unit change does not determine a missing density, duration, market rate or material property.
Temperature readings versus temperature differences
An absolute temperature reading locates a point on a scale, while a temperature difference describes the interval between two readings. Celsius and Fahrenheit readings require both a multiplier and an offset. A Celsius temperature difference uses a multiplier of 1.8 to become a Fahrenheit temperature difference, without adding 32. Celsius and Kelvin intervals have the same size, even though their zero points differ by 273.15. This calculator converts readings. When describing heating, cooling or a temperature rise, check whether you need an interval calculation instead. Applying the reading offset to a temperature difference produces the wrong physical interpretation.
Absolute zero and instrument accuracy
Absolute zero corresponds to 0 kelvin, −273.15 degrees Celsius and −459.67 degrees Fahrenheit. The calculator rejects readings below these limits. A sensor’s calibration, range and resolution still govern the reliability of its reported temperature. Expressing a thermometer reading on another scale does not improve its calibration. An oven dial, ambient thermometer and laboratory probe can have very different tolerances. Follow the manufacturer’s instructions or the applicable protocol when choosing a reporting precision. The conversion equation describes the relationship between scales, while the instrument documentation describes how confidently the original reading is known.
Checking and reporting your answer
Use a one-unit reference value to confirm the conversion direction, then compare a worked example with your own arithmetic. Keep intermediate digits and round the final answer according to the accuracy of the original measurement. Include the destination unit in a report or spreadsheet header. For work governed by a contract, protocol or technical standard, follow that document’s definition and validation requirements.
Frequently asked questions
Which tools are available in Medical and Laboratory Converters?+
This category contains 11 published calculators. Select the unit pair that matches your input and required output. Each generated guide includes the formula, examples, a reference table, conventions and detailed answers.
How do I choose the correct conversion?+
Identify the source quantity and unit, then choose the matching destination unit. Confirm regional or industry conventions before entering a value. If the calculation needs density, time, a rate or another input, use a tool that explicitly requests that information.
Are conversion results exact?+
Some unit relationships are defined exactly; others use conventional or rounded coefficients. The accuracy of a measured result still depends on the original measurement. Keep intermediate digits and round the final result according to your task.