Fat & Proteins & Carbs
100 g = 92 Calories
Milk Evaporated Reduced Fat (2%) belongs to the Dairy and Egg Products food group.
You have 92 calories from 100 grams.The serving weight is 252g – 1 cup which is equivalent to 232 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
92 Calories = 5% of Daily Value
DVs are based on a 2,000-calorie diet for healthy adults women.
92 Calories = 4% 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 92 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 92 calories for a 125-pound person :
Stretching. Hatha Yoga: 19 mn
Frisbee : 26 mn
Rollerblading/skating (Fast) : 7 mn
Operate Snow Blower: walking : 17 mn
Reading: sitting : 69 mn
How Long Does It Take to Burn 92 calories for a 155-pound person :
Aerobics: high impact : 11 mn
Kayaking : 15 mn
Snow Shoeing : 10 mn
Rock Climbing: ascending : 10 mn
Reading: sitting : 69 mn
How Long Does It Take to Burn 92 calories for a 185-pound person :
Rowing. Stationary: vigorous : 6 mn
Kayaking : 17 mn
Snow Shoeing : 7 mn
Rock Climbing: ascending : 7 mn
Reading: sitting : 106 mn
Comparison with ordinary productsThis 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 Milk Evaporated Reduced Fat (2%). 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
Low calorie density foods
With 92 calories per 100 grams, Milk Evaporated Reduced Fat (2%) be considered a Low calorie density food. Low calorie density generally indicates that you can consume a larger amount of food with fewer calories and are generally good choices when dieting.
High Calcium density
Milk Evaporated Reduced Fat (2%) is high in Calcium, an average adults needs 1300 mg of Calcium per day. 100 grams have 285 mg of Calcium, 22% of your total daily needs.
Milk Evaporated Reduced Fat (2%) is high in Fat, an average adults needs 78 g of Fat per day. 100 grams have 1.96 g of Fat, 3% of your total daily needs.
High Riboflavin density
Milk Evaporated Reduced Fat (2%) is high in Riboflavin B2, an average adults needs 1.3 g of Riboflavin B2 per day. 100 grams have 0.304 mg of Riboflavin B2, 23% of your total daily needs.
High Sugars density
Milk Evaporated Reduced Fat (2%) is high in Sugars, an average adults needs 50 g of Sugars per day. 100 grams have 11.15 g of Sugars, 22% of your total daily needs.
These quick stats highlight the main nutritional characteristics of Pillsbury Golden Layer Buttermilk Biscuits Artificial Flavor Refrigerated Dough
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 Elements by %DV
Macronutrients by Daily Value (%DV)
Minerals by Daily Value (%DV)
Vitamins by Daily Value (%DV)
Nutrition Elements Summary
Carbs and Sugars
Source: Nutrient data for this listing was provided by USDA
Where do the calories come from ?
Macronutrients are made up of carbohydrates, fats and proteins. Their goal 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 in the context of weight loss or muscle gain.
To calculate its macronutrients we must calculate in grams, calories or percentage, the amounts of protein, fat and carbohydrates that our body needs to be at the top of its form. The official distribution recommendations for a healthy and balanced diet are as follows:
Calcium is by far the most abundant metallic element in the body (1 to 2% by mass). It is mainly stored in the bones, of which it is an integral part. It contributes to the formation of the latter, as well as that of the teeth, and to the maintenance of their health. The mechanisms for maintaining a normal plasma ionized calcium concentration are, if necessary, at the expense of the skeleton and too great a decrease in calcium intake as well as an increase in excretion poses a risk to the skeleton and health. (osteoporosis in adults, rickets in children, increased risk of lead poisoning, etc.).
Calcium also plays an essential role in blood clotting, the maintenance of blood pressure and the contraction of muscles, including the heart, through its importance in neuromuscular functions. It is involved in the functioning of many enzymatic processes.
Inorganic phosphorus in the form of the phosphate PO3−4 is required for all known forms of life. Phosphorus plays a major role in the structural framework of DNA and RNA. Living cells use phosphate to transport cellular energy with adenosine triphosphate (ATP), necessary for every cellular process that uses energy. ATP is also important for phosphorylation, a key regulatory event in cells. Phospholipids are the main structural components of all cellular membranes. Calcium phosphate salts assist in stiffening bones. Biochemists commonly use the abbreviation “Pi” to refer to inorganic phosphate.
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.
Consuming sugar provides short-term chemical energy, but it is not a form of energy storage for the body. Some of the sugar consumed can be used immediately for energy if needed within minutes, some will be stored in the liver and muscles (as glycogen) for use within hours, and, if there is an excess, some will be converted to fat (triglycerides) for storage in fat cells.
As soon as we consume glucose, a component of sugar, insulin is secreted: its main role is to promote the use of glucose by all the cells in the body. Insulin also stimulates glycolysis, blocks lipolysis (use of stored fat) and promotes lipogenesis through an enzyme (triglyceride synthase), i.e. the production of fat in adipose tissue. Indeed, the hepatic glycogen stock is limited and the muscular glycogen can only be used by the muscles themselves.
This regulation of glucose, with a system of storage and release, provides a continuous supply of glucose to the brain. Although the brain accounts for only 2% of body weight, it uses 20% to 30% of the available glucose, which is its only source of energy (apart from ketone bodies synthesized during prolonged fasting).
Vitamin A is a fat soluble vitamin.
In the body, it exists as retinol, retinal, retinoic acid (tretinoin) and retinyl phosphate. These molecules are altered by oxygen in the air, alterations accelerated by light and heat.
Foods of animal origin (meat, dairy products and especially liver) contain retinol and retinol esters while plants mainly contain carotenes which are precursors of retinol. A beta-carotene molecule, by hydrolysis of the 15-15 ′ bond under the influence of a carotenoid mono-oxygenase (ββ-carotene 15,15 ′ mono-oxygenase), gives two molecules of vitamin A. On the other hand, the other two carotenes (alpha and gamma) only give rise to a single vitamin A molecule.