Pigeonpeas Immature Seeds Raw

Fat & Proteins & Carbs

Macronutrients are made up of carbohydrates, fats and proteins. Their purpose is to provide energy to our body and to ensure the proper functioning of vital functions. A good distribution of macros, according to its needs, its morphology and its physical activity, allows to optimize its results, whether it is within the framework of a weight loss or a muscle gain.

100 g = 136 Calories

Pigeonpeas Immature Seeds Raw belongs to the Vegetables food group.
You have 136 calories from 100 grams.The serving weight is 154g1 Cup which is equivalent to 209 calories.

Percent Daily Value

The % Daily Value (DV) tells you how much a nutrient in a serving of food contributes to a daily diet.
You can get an estimate of the number of calories you need daily based on criteria such as age, gender, weight, height and activity on our calculator

Women

136 Calories = 7% of Daily Value

DVs are based on a 2,000-calorie diet for healthy adults women.

Men

136 Calories = 5% of Daily Value

DVs are based on a 2,500-calorie diet for healthy adults men.

Estimated amounts of calories needed

.Calories needed to maintain the energy balance of different age groups at three different levels of physical activity.

  • Sedentary means a lifestyle that includes only light physical activity associated with typical daily living.
  • Moderately active means a lifestyle that includes physical activity equivalent to walking approximately 1.5 to 3 miles per day at a speed of 3 to 4 miles per hour, in addition to the light physical activity associated with typical daily living.
  • Active means a lifestyle that includes physical activity equivalent to walking more than 3 miles per day at a speed of 3 to 4 miles per hour, in addition to the light physical activity associated with typical daily living.

How long would it take to burn off 136 calories?

Everyone’s metabolism is responsible for turning food into energy. Being a natural process of our body, metabolism is best activated by exercise to burn calories. Some factors that define this process are body structure, gender and age.

How Long Does It Take to Burn 136 calories for a 125-pound person :

Elliptical Trainer: general: 13 mn
Badminton: general : 29 mn
Bicycling: 12-13.9 mph : 14 mn
Chopping & splitting wood : 19 mn
Heavy Cleaning: wash car. windows : 25 mn

How Long Does It Take to Burn 136 calories for a 155-pound person :

Aerobics. Step: low impact : 16 mn
Walking: 3.5 mph (17 min/mi) : 31 mn
Hockey: field & ice : 14 mn
Water Polo : 11 mn
Playing w/kids: moderate effort : 29 mn

How Long Does It Take to Burn 136 calories for a 185-pound person :

Aerobics. Step: high impact : 10 mn
Walking: 3.5 mph (17 min/mi) : 19 mn
Hockey: field & ice : 12 mn
Water Polo : 8 mn
Playing w/kids: moderate effort : 16 mn

Comparison with ordinary products

This table lists the amount of calories in 100g of different everyday foods. For the same amount you can easily compare the calories of these foods with Pigeonpeas Immature Seeds Raw. For information, 100g of Nutella contains 539 calories, 100g of French Fries contains 312 calories, 100g of Pizza contains 266 calories, 100g of Chicken contains 239 calories, 100g of Pasta contains 131 calories, 100g of Rice contains 130c calories, 100g of Banana contains 89 calories.

Pros and Cons

With 136 calories per 100 grams, Pigeonpeas Immature Seeds Raw would be considered a Medium calorie density food.

Low Fat

Pigeonpeas Immature Seeds Raw is high in Fat, an average adults needs 78 g of Fat per day. 100 grams have 1.64 g of Fat, 2% of your total daily needs.

High Folate density

Pigeonpeas Immature Seeds Raw is high in Folate B9, an average adults needs 400 mcg of Folate B9 per day. 100 grams have 173 mcg of Folate B9, 43% of your total daily needs.

High Manganese density

Pigeonpeas Immature Seeds Raw is high in Manganese, an average adults needs 2,3 mg of Manganese per day. 100 grams have 0.574 mg of Manganese, 25% of your total daily needs.

High Thiamin density

Pigeonpeas Immature Seeds Raw is high in Thiamin B1, an average adults needs 1.2 g of Thiamin B1 per day. 100 grams have 0.4 mg of Thiamin B1, 33% of your total daily needs.

High Vitamin C density

Pigeonpeas Immature Seeds Raw is high in Vitamin C, an average adults needs 90 mg of Vitamin C per day. 100 grams have 39 mg of Vitamin C, 43% of your total daily needs.

High Vitamin C density

Pigeonpeas Immature Seeds Raw is high in Vitamin C, an average adults needs 90 mg of Vitamin C per day. 100 grams have 39 mg of Vitamin C, 43% of your total daily needs.

Quick stats

These quick stats highlight the main nutritional characteristics of Pillsbury Golden Layer Buttermilk Biscuits Artificial Flavor Refrigerated Dough

Nutrition Facts

The Nutrition Facts label is required by the Food and Drug Administration (FDA) on most packaged foods and beverages. The Nutrition Facts label provides detailed information about the nutrient content of a food, such as the amount of fat, sugar, sodium and fibre it contains.

Nutrition Facts

Serving Size 100g

,

Calories 136Calories from Fat 15
% Daily Value*7
Total Fat 1.64 g2%
Satured Fat 0.354 g2%
Trans Fat 0 g
Cholesterol 0 mg0%
Sodium 5 mg0%
Total Carbohydrate 23.88 g9%
Dietary Fiber 5.1 g18%
Sugars 3 g6%
Protein 7.2 g14%
Vitamin A 0%Vitamin C 43%
Calcium 3%Iron 9%

Nutrition Elements by %DV

Macronutrients by Daily Value (%DV)

Minerals by Daily Value (%DV)

Vitamins by Daily Value (%DV)

Nutrition Elements Summary

Macronutrients

Minerals

Vitamins

Others

Carbs and Sugars

Fats

Amino Acids

Glossary

Source: Nutrient data for this listing was provided by USDA
Copper is a trace element essential for life (humans, plants, animals, and micro-organisms). The human body normally contains copper at a concentration of about 1.4 to 2.1 mg per kg. Copper is found in the liver, muscles and bones. Copper is carried in the bloodstream by means of a protein called ceruleoplasmin71. After copper is absorbed from the intestine, it is transported to the liver, bound to albumin. The metabolism and excretion of copper is controlled by the delivery of ceruleoplasmin to the liver, and the copper is excreted in the bile. At the cellular level, copper is present in a number of enzymes and proteins, including cytochrome c oxidase and certain superoxide dismutases (SOD). Copper is used for the biological transport of electrons, e.g. the “copper blue” proteins, azurine and plastocyanine. The name “copper blue” comes from their intense blue color due to an absorption band (around 600 nm) by ligand / metal charge transfer (LMCT). Many mollusks and some arthropods, such as horseshoe crab, use a copper-based pigment, hemocyanin, for oxygen transport, rather than hemoglobin, which has an iron nucleus, and their blood is therefore blue, and not red, when it is oxygenated72.
https://en.wikipedia.org/wiki/Copper

Fiber: Fiber is a substance of plant origin that is neither digested nor absorbed by our digestive tract. However, our intestinal flora, by breaking them down, allows us to absorb carbohydrates in a variable and partial way, hence their participation in our energy intake. They therefore have an effect on our transit, but also allow us to reduce our energy intake (the satiating effect of Fiber), lower our total cholesterol level and limit the increase in blood sugar levels after a meal.
https://en.wikipedia.org/wiki/Fiber

Vitamin B9, another name for folic acid (folate, folacin or vitamin M, pteroyl-L-glutamic acid, pteroyl-L-glutamate and pteroylmonoglutamic acid), is a water soluble vitamin.
Folic acid is the metabolic precursor of a coenzyme, tetrahydrofolate (FH4 or THF4), involved in particular in the synthesis of nucleic bases, purines and pyrimidines, constituting the nucleic acids (DNA and RNA) of the genetic material. THF is also involved in the synthesis of amino acids such as methionine, histidine and serine.
https://en.wikipedia.org/wiki/Folate

Magnesium is involved in more than 400 biochemical reactions. It is particularly involved in the osmotic transport of glucose, the insulin transport of glucose and in all stages of energy production. A major mechanism of biochemical activation, consisting of adding a phosphate group to a protein, magnesium is a cofactor of phosphorylation. It is also an actor in homeostasis, a mechanism allowing the conservation of an internal balance (cell, heart rate, urination, digestion, body temperature, etc.) and an essential cofactor in the polymerization of nucleic acids.
https://en.wikipedia.org/wiki/Magnesium

Manganese is a trace element (necessary for humans to survive), manganese deficiency (less than 2 to 3 mg / day for an average adult), leads – depending on the animal model – to reproductive disorders for both sexes, bone malformations, depigmentations, ataxia and alteration of the central nervous system.
https://en.wikipedia.org/wiki/Manganese

B vitamins facilitate the conversion of food (carbohydrates) into energy (glucose). Niacin is helpful in the process of regulating stress hormones and improves blood circulation. These vitamins are water soluble and the body does not store them.
https://en.wikipedia.org/wiki/Niacin

A precursor and constituent of coenzyme A, vitamin B5 promotes the growth and resistance of the skin and mucous membranes. It is necessary for the metabolism of carbohydrates, lipids and proteins and participates in the synthesis of certain hormones. Pantothenic acid is destroyed by heat in aqueous solution.
https://en.wikipedia.org/wiki/Pantothenic_acid/a>

Potassium is an essential nutrient in the human diet.
Potassium in the form of the cation K+ is the major intracellular ion in the body. There is a concentration gradient in favor of the exit of the ion from the intracellular compartment to the extracellular compartment. This gradient is maintained by pumps located in the cell membranes, in particular the sodium-potassium pump is responsible for the existence of a negative resting potential present in all living cells.
https://en.wikipedia.org/wiki/Potassium

Vitamin B2, corresponding to riboflavin, or lactoflavin, is a water-soluble vitamin necessary for the synthesis of flavin adenine dinucleotide (FAD) and flavin mononucleotide (FMN), two cofactors essential to flavoproteins.
Vitamin B2 plays an important role in transforming simple foods (carbohydrates, fats and proteins) into energy. It is involved in the repair metabolism of the muscles.
https://en.wikipedia.org/wiki/Riboflavin

Thiamine or vitamin B1 (or aneurine) is a metabolic precursor of thiamine pyrophosphate (TPP), a coenzyme essential to certain decarboxylases. In animals, thiamine is a water-soluble vitamin from the family of B vitamins that they must find in their diet. On the other hand, it is synthesized by bacteria, plants and fungi. It is essential for the transformation of carbohydrates into energy by the Krebs cycle and is necessary for the proper functioning of the nervous system and muscles. It is in fact essential for the transformation of pyruvate produced by glycolysis and toxic for the nervous system.
In humans, a dietary vitamin B1 deficiency causes beriberi and can also cause Gayet-Wernicke encephalopathy.
https://en.wikipedia.org/wiki/Thiamine

Vitamin C is an enzymatic cofactor involved in a number of physiological reactions (hydroxylation). It is required in the synthesis of collagen and red blood cells and contributes to the immune system3. It also plays a role in iron metabolism as a promoter of its absorption, its use is therefore not recommended in patients with iron overload and particularly hemochromatosis. In its oxidized form (dehydroascorbic acid), it crosses the blood-brain barrier to reach the brain4 and several organs with high vitamin C concentrations. Skeletal muscle responds quickly to vitamin C intake, but also loses it quickly if the vitamin is not taken in sufficiently5. It is an antioxidant, a molecule capable of countering the harmful action of oxidants such as radicals. D-ascorbic acid is also used for this purpose, but unlike L-ascorbic acid, it has no vitamin activity.
https://en.wikipedia.org/wiki/Vitamin_C

The K vitamins are a group of fat-soluble vitamins required for the post-translational modifications of certain proteins involved primarily in blood coagulation but also in the metabolism of bones and other tissues. The use of the letter K comes from the German Koagulation.
They are mainly synthesized by bacteria fermenting certain cheeses or plants, intestinal bacteria, or come from food (especially green plant foods, as they are linked to chloroplasts). They are also found in animal fats.
They promote the synthesis of blood clotting factors, the fixation of calcium by the bones, the flexibility of arteries and the good condition of blood vessels in general, tendons, cartilage and other connective tissues. New properties have been discovered more recently, for example in the control of inflammatory states, in cell division, in cell migration, in cell specialization, etc.
https://en.wikipedia.org/wiki/Vitamin_K