| Composition | gram |
|---|---|
| Fat | 5.2 |
| Carbohydrate | 0.0 |
| Protein | 21.8 |
| Dietary fibre | 0.0 |
| Alcohol | 0.0 |
| Water | 73.0 |
| Energy content | energiprosent |
|---|---|
| Fat | 34 |
| Carbohydrate | 0 |
| Protein | 66 |
| Dietary fibre | 0 |
| Alcohol | 0 |
| Nutrient | Source | Quantity | Energiprosent |
|---|---|---|---|
| Fat | 34 E% | ||
| Carbohydrate | 0 E% | ||
| Dietary fibre | 0 E% | ||
| Protein | 65 E% | ||
| Alcohol | 0 E% | ||
| Water | - |
| Carbohydrate | Source | Quantity |
|---|---|---|
| Starch | ||
| Sugar, total | ||
| Sugar, added | ||
| Sugar, free |
| Fat | Source | Quantity |
|---|---|---|
| Saturated fatty acids | ||
| Trans fatty acids | ||
| Monounsaturated fatty acids | ||
| Polyunsaturated fatty acids | ||
| Omega-3 | ||
| Omega-6 | ||
| Cholesterol |
| Saturated fatty acids | Source | Quantity |
|---|---|---|
| C12:0 (lauric acid) | ||
| C14:0 (myristic acid) | ||
| C16:0 (palmitic acid) | ||
| C18:0 (stearic acid) |
| Monounsaturated fatty acids | Source | Quantity |
|---|---|---|
| C16:1 sum (palmitoleic acid) | ||
| C18:1 sum (oleic acid) |
| Fat-soluble vitamins | Source | Quantity | |
|---|---|---|---|
| Vitamin A (RAE) | |||
| Vitamin A (RE) | 4 RE | 0 % | |
| Retinol | |||
| Beta-carotene | |||
| Vitamin D | 0 % | ||
| Vitamin E | 3 % |
| Minerals | Source | Quantity | |
|---|---|---|---|
| Salt (NaCl) | |||
| Calcium (Ca) | 0 % | ||
| Sodium (Na) | |||
| Potassium (K) | 10 % | ||
| Magnesium (Mg) | 7 % | ||
| Phosphorus (P) | 33 % |
| Trace elements | Source | Quantity | |
|---|---|---|---|
| Iron (Fe) | 16 % | ||
| Zinc (Zn) | 16 % | ||
| Selenium (Se) | 3 % | ||
| Copper (Cu) | 10 % | ||
| Iodine (I) | 1 % |
Food ID: 03.058
Scientific name: Bos taurus Linnaeus, 1758
| LanguaL | Classification |
|---|---|
| A0150 | Meat or meat product (FROM MAMMAL) (US CFR) |
| A0794 | Red meat (EUROFIR) |
| B1161 | Cattle |
| C0268 | Skeletal meat part, without bone, without skin |
| E0122 | Divided or disintegrated |
| F0003 | Not heat-treated |
| G0003 | Cooking method not applicable |
| H0003 | No treatment applied |
| J0142 | Preserved by chilling or freezing |
| K0003 | No packing medium used |
| M0001 | Container or wrapping not known |
| N0001 | Food contact surface not known |
| P0024 | Human consumer, no age specification |
| Z0217 | Tenderloin |
The foods in the Food Composition Table are described using two classification systems.
FoodEx2 is a classification and standardization system for foods and feed developed by the European Food Safety Authority (EFSA). The system consists of a main code that describes the type of food. In addition, there are facets that provide more detailed information about the food, for example about ingredients, packaging, or method of preparation.
LanguaL is a similar system. LanguaL stands for “Langua aLimentaria”, or “language of food”. It also consists of a description of the type of food, and facets with additional information.
Missing value, content not known.
Estimated value.
Estimated as a naturally occurring zero value, not analysed.
Calculated from the percentual content of fat in a similar food item.
Norwegian Meat. Nutritional content of lamb, beef and pork, 1995.
University of Oslo (2018). Iodine project 2017-2018.
Norwegian meat and poultry research centre, Norwegian meat and poultry association, Matprat, University of Oslo and Norwegian food safety authority (2024). Updating nutritional value of Norwegian bovine meat 2020-2022. Published report, animalia.no
Salt equivalent calculated from sodium (NACL[g]=2.5*NA[mg]/1000.0)
Water by difference (WATER[g] = 100 - PROT[g] - FAT[g] - CHO[g] - FIBT[g] - ALC[g])
Carbohydrate, available calculated from sugar and starch (CHO[g] = SUGAR[g] + STARCH[g])
Fatty acids, saturated, calculated as the sum of individual fatty acids, excluding branched chain isomers (FASAT[g] = F4:0[g] + F5:0[g] + F6:0[g] + F7:0[g] + F8:0[g] + F9:0[g] + F10:0[g] + F11:0[g] + F12:0[g] + F13:0[g] + F14:0[g] + F15:0[g] + F16:0[g] + F17:0[g] + F18:0[g] + F18:0DO[g] + F19:0[g] + F20:0[g] + F21:0[g] + F22:0[g] + F23:0[g] + F24:0[g] + F25:0[g] + F26:0[g])
Fatty acids, monounsaturated, calculated as sum of individual fatty acids, cis isomers only (FAMSCIS[g] =F10:1CIS[g] +F12:1CIS[g] +F14:1CIS[g] + F15:1CN8[g] + F16:1CIS[g] + F17:1CIS[g] + F18:1CIS[g] + F20:1CIS[g] + F22:1CIS[g] + F24:1CIS[g])
Fatty acids, polyunsaturated, calculated as sum of individual fatty acids, all-cis isomers only (FAPUCIS[g] = F16:2CN4[g] + F16:3CN3[g] + F18:2CN6[g] + F18:2CN9[g] + F18:3CN3[g] + F18:3CN6[g] + F18:4CN3[g] + F20:2CN6[g] + F20:3CN3[g] + F20:3CN6[g] + F20:3CN9[g] + F20:4CN3[g] + F20:4CN6[g] + F20:5CN3[g] + F22:2CN3[g] + F22:2CN6[g] + F22:4CN6[g] + F22:5CN3[g] + F22:5CN6[g] + F22:6CN3[g] + F24:2CN6[g])
Vitamin A activity calculated from retinol and beta-carotene (factor 1/6) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 6))
Vitamin A activity calculated from retinol and beta-carotene (factor 1/12) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 12))
Niacin equivalents calculated from niacin and tryptophan (NIAEQ[mg] = NIA[mg] + TRP[mg] / 60)
Missing value, content not known.
Estimated value.
Estimated as a naturally occurring zero value, not analysed.
Calculated from the percentual content of fat in a similar food item.
Norwegian Meat. Nutritional content of lamb, beef and pork, 1995.
University of Oslo (2018). Iodine project 2017-2018.
Norwegian meat and poultry research centre, Norwegian meat and poultry association, Matprat, University of Oslo and Norwegian food safety authority (2024). Updating nutritional value of Norwegian bovine meat 2020-2022. Published report, animalia.no
Salt equivalent calculated from sodium (NACL[g]=2.5*NA[mg]/1000.0)
Water by difference (WATER[g] = 100 - PROT[g] - FAT[g] - CHO[g] - FIBT[g] - ALC[g])
Carbohydrate, available calculated from sugar and starch (CHO[g] = SUGAR[g] + STARCH[g])
Fatty acids, saturated, calculated as the sum of individual fatty acids, excluding branched chain isomers (FASAT[g] = F4:0[g] + F5:0[g] + F6:0[g] + F7:0[g] + F8:0[g] + F9:0[g] + F10:0[g] + F11:0[g] + F12:0[g] + F13:0[g] + F14:0[g] + F15:0[g] + F16:0[g] + F17:0[g] + F18:0[g] + F18:0DO[g] + F19:0[g] + F20:0[g] + F21:0[g] + F22:0[g] + F23:0[g] + F24:0[g] + F25:0[g] + F26:0[g])
Fatty acids, monounsaturated, calculated as sum of individual fatty acids, cis isomers only (FAMSCIS[g] =F10:1CIS[g] +F12:1CIS[g] +F14:1CIS[g] + F15:1CN8[g] + F16:1CIS[g] + F17:1CIS[g] + F18:1CIS[g] + F20:1CIS[g] + F22:1CIS[g] + F24:1CIS[g])
Fatty acids, polyunsaturated, calculated as sum of individual fatty acids, all-cis isomers only (FAPUCIS[g] = F16:2CN4[g] + F16:3CN3[g] + F18:2CN6[g] + F18:2CN9[g] + F18:3CN3[g] + F18:3CN6[g] + F18:4CN3[g] + F20:2CN6[g] + F20:3CN3[g] + F20:3CN6[g] + F20:3CN9[g] + F20:4CN3[g] + F20:4CN6[g] + F20:5CN3[g] + F22:2CN3[g] + F22:2CN6[g] + F22:4CN6[g] + F22:5CN3[g] + F22:5CN6[g] + F22:6CN3[g] + F24:2CN6[g])
Vitamin A activity calculated from retinol and beta-carotene (factor 1/6) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 6))
Vitamin A activity calculated from retinol and beta-carotene (factor 1/12) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 12))
Niacin equivalents calculated from niacin and tryptophan (NIAEQ[mg] = NIA[mg] + TRP[mg] / 60)
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Independent laboratory |
| Method type | Analytical, generic |
| Method indicator | Analytical method |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Fatty acids, total cis n-3 polyunsaturated, calculated as sum of cis n-3 polyunsaturated fatty acids |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Carbohydrate, available calculated from sugar and starch (CHO[g] = SUGAR[g] + STARCH[g]) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Below limit of quantification |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Calculations including conversion factors |
| Method indicator | Vitamin A activity calculated from retinol and beta-carotene (factor 1/12) (VITA[µg] = RETOL[µg] + (CARTB[µg] / 12)) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Distillation titrimetry |
| Value type | Type not known |
| Acquisition type | Not known |
| Method type | Method type not known |
| Method indicator | Method not known |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Weighted |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Analytical method |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Imputed/estimated, generic |
| Method indicator | Imputation |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Acid hydrolysis with gravimetric quantification |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Calculations including conversion factors |
| Method indicator | Niacin equivalents calculated from niacin and tryptophan (NIAEQ[mg] = NIA[mg] + TRP[mg] / 60) |
| Value type | Below limit of quantification |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Fatty acids, polyunsaturated, calculated as sum of individual fatty acids, all-cis isomers only (FAPUCIS[g] = F16:2CN4[g] + F16:3CN3[g] + F18:2CN6[g] + F18:2CN9[g] + F18:3CN3[g] + F18:3CN6[g] + F18:4CN3[g] + F20:2CN6[g] + F20:3CN3[g] + F20:3CN6[g] + F20:3CN9[g] + F20:4CN3[g] + F20:4CN6[g] + F20:5CN3[g] + F22:2CN3[g] + F22:2CN6[g] + F22:4CN6[g] + F22:5CN3[g] + F22:5CN6[g] + F22:6CN3[g] + F24:2CN6[g]) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Best estimate |
| Acquisition type | Independent laboratory |
| Method type | Analytical, generic |
| Method indicator | Analytical method |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Salt equivalent calculated from sodium (NACL[g]=2.5*NA[mg]/1000.0) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Water by difference (WATER[g] = 100 - PROT[g] - FAT[g] - CHO[g] - FIBT[g] - ALC[g]) |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Calculated on component profile |
| Method indicator | Imputation of a component from one or more components in the same food |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Logical zero |
| Acquisition type | Value created within host system |
| Method type | Estimated according to logical deduction |
| Method indicator | Imputation |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Inductively Coupled Plasma Mass Spectrometry |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Fatty acids, monounsaturated, calculated as sum of individual fatty acids, cis isomers only (FAMSCIS[g] =F10:1CIS[g] +F12:1CIS[g] +F14:1CIS[g] + F15:1CN8[g] + F16:1CIS[g] + F17:1CIS[g] + F18:1CIS[g] + F20:1CIS[g] + F22:1CIS[g] + F24:1CIS[g]) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | High-performance liquid chromatography |
| Value type | Below limit of detection |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Fatty acids, total cis n-6 polyunsaturated, calculated as the sum cis n-6 polyunsaturated fatty acids |
| Value type | Best estimate |
| Acquisition type | Value created within host system |
| Method type | Summation from constituent components |
| Method indicator | Fatty acids, saturated, calculated as the sum of individual fatty acids, excluding branched chain isomers (FASAT[g] = F4:0[g] + F5:0[g] + F6:0[g] + F7:0[g] + F8:0[g] + F9:0[g] + F10:0[g] + F11:0[g] + F12:0[g] + F13:0[g] + F14:0[g] + F15:0[g] + F16:0[g] + F17:0[g] + F18:0[g] + F18:0DO[g] + F19:0[g] + F20:0[g] + F21:0[g] + F22:0[g] + F23:0[g] + F24:0[g] + F25:0[g] + F26:0[g]) |
| Value type | Mean |
| Acquisition type | Industry laboratory |
| Method type | Analytical results |
| Method indicator | Gas chromatography |