Showing posts with label Measurements. Show all posts
Showing posts with label Measurements. Show all posts

Tuesday, October 4, 2011

Cooking Measurements

Just consider the situation. You go to your relative's home and accidentally happen to peep into the kitchen. You see a weighing balance, a measuring cylinder and all such sort of things near the cooking place. You are muddled, and out of curiosity you enquire about it. To your astonishment you learn that these are the instruments they use for measuring their cooking ingredients. It sounds wacky, doesn't it?

Though accuracy demands the use of all these sort of things, it is sometimes as in cooking that convenience and portability surpass precision in importance. This is exactly why the sure cooking measurements have prevailed in the kitchen. These obviously are less spoton than if we use some scientific measuring systems. But the puny deviation is not only manageable but sometimes even desirable as the puny change caused may enhance taste.

12 OUNCES EQUALS HOW MANY CUPS

Now, let's talk a puny more about these cooking measurements? The cooking measurements are commonly done in mass, volume or counts. Liquid ingredients are commonly measured in volume. Even solid ingredients such as salt, sugar, flour and spices are measured in volume in most kitchens. The unevenness in the size of vegetables commonly disables their spoton measurements in weight. Any way chopped meats are commonly measured by weight. Meats are also sometimes measured in counts like "two chicken", "four large pieces of beef", etc.

Acquaintance with cooking measurements, though not mandatory, is often very helpful in flat doing at the cooking table. Appetizing concoctions can be horrible dishes if the cooking measurements are deviated beyond a narrow range. Other thing you should learn this for is the sake of knowledge; after all these are all the time there around you. You should also learn how to substitute a cooking determination with Other when you don't find it. For example if you don't find a tablespoon and need one tablespoon of sugar, just know that you can add three teaspoons.
Here are some of the most widely used cooking measurements(of Volume measurement) :

Cooking Measurements (for Volume)

Cooking Measurements Abbreviation Teaspoons Equivalents
Teaspoon Tsp 1
Tablespoon Tbsp 3
Ounces Oz 6
Cup C 48
Pint Pt 96
Quart Qt 192
Gallon Gal 768

Now through the data given above, you can theorize the relation in the middle of any two of the above cooking measurements units. If you didn't catch it yet, let me tell you how.
Just take the two quantities that you need to compare and their teaspoon equivalents. Now divide the teaspoons equivalents of both and get the required ratio.

For Example :
If you need to compare Ounces(6 tsp) and Pint(96 tsp), then just divide 96 by 6 to get how many ounces make 1 Pt.
So, 1 Pt = 96/6 = 16 Ozs.

Go on. And next time when your mum asks you to add one ounce of oil, don't get flustered. Any way all the cooking measurements don't find use in all places. It depends on the size of the meal that is to be prepared. If a meal is meant for two people, the salt and sugar will be added in teaspoons. On the other hand, if the meal ready is for 20-30 population cups will be used instead. Cooking measurements are all pretty uncomplicated if you are a puny keen to heed them.

Cooking Measurements

12 OUNCES EQUALS HOW MANY CUPS

Wednesday, August 17, 2011

Basics of Cake development - Formulas and Measurements

Formulas And Measurement
Bakers commonly talk about formulas rather than recipes. If this sounds to you more like a chemistry lab than a food production facility, it is with good reason. The bakeshop is very much like a chemistry laboratory, both in the scientific accuracy of the procedures and in the complicated reactions that take place while mixing and baking.

Measurement
Ingredients are almost all the time weighed in the bakeshop, rather than measured by volume, because measurement by weight is more accurate. Accuracy of measurement, as we have said, is primary in the bakeshop. Unlike home baking recipes, a professional baker's formula will not call for 6 cups flour, for example.

12 OUNCES EQUALS HOW MANY CUPS

To demonstrate to yourself the point of weighing rather than measuring by volume, portion a cup of flour in two ways:
(a) Sift some flour and lightly spoon it into a dry measure. Level the top and weigh the flour.
(b) Scoop some unsifted flour into the same portion and pack it lightly. Level the
top and weigh the flour. Note the difference.No wonder home recipes can be so inconsistent!

The baker's term for weighing ingredients is scaling.
The following ingredients, and only these ingredients, may sometimes be measured by volume, at the ratio of 1 pint per pound or 1 liter per kilogram:
o Water o Milk o Eggs
Volume portion is often used when scaling water for small or mediumsized batches of bread. Results are commonly good. However, whenever accuracy is critical, it is best to weigh.This is because a pint of water surely weighs slightly more than a pound, or almost 16.7 oz. (This shape varies with the temperature of the water.)
For convenience, volume measures of liquids are often used when products other than baked flour goods-such as sauces, syrups, puddings, and custards-are being made.

Units of Measure
The theory of measurement used in the United States is very complicated. Even those who have used the theory all their lives sometimes have problem remembering things like how many fluid ounces are in a quart and how many feet are in a mile.

The Metric System
The United States is the only major country that uses the complicated theory of measurement we have just described. Other countries use a much simpler theory called the metric system.

Abbreviations of U.S. Units of portion Used
pound(lb)
ounce (oz)
gallon (gal)
quart (qt)
pint (pt)
fluid ounce( fl oz)
tablespoon (tbsp)
teaspoon (tsp)
inch (in)
foot(ft)

In the metric system, there is one basic unit for each type of measurement:
The gram is the basic unit of weight.
The liter is the basic unit of volume.
The meter is the basic unit of length.
The degree Celsius is the basic unit of temperature.
Larger or smaller units are plainly made by multiplying or dividing by 10, 100,
1000, and so on.These divisions are expressed by prefixes. The ones you need
to know are:
kilo- = 1000
deci- = 1D10 or 0.1
centi- = 1D100 or 0.01
milli- = 1D1000 or 0.001

Formulas and Measurement
Metric Units
Basic units
Quantity Unit Abbreviation
weight gram g
volume liter L
length meter m
temperature degree Celsius °C
Divisions and multiples
Prefix/Example Meaning Abbreviation
kilo- 1000 k
kilogram 1000 grams kg
deci- 1D10 d
deciliter 0.1 liter dL
centi- 1D100 c
centimeter 0.01 meter cm
milli- 1D1000 m
millimeter 0.001 meter mm

Converting to Metric
Most people think the metric theory is much harder to learn than it surely is. This is because they think about metric units in terms of U.S. Units. They read that there are 28.35 grams in an ounce and are immediately convinced that they will never be able to learn metrics. Do not worry about being able to convert U.S. Units into metric units and vice versa. This is a very important point to remember, especially if you think that the metric theory might be hard to learn. The reckon for this is simple.You will normally be working in whether one theory or the other.You will rarely, if ever, have to convert from one to the other. (An exception might be if you have equipment based on one theory and you want to use a formula written in the other.) Many people today own imported cars and heal them with metric tools without ever worrying about how many millimeters are in an inch. Similarly, if and when American bakeshops and kitchens convert to the metric system, American cooks and bakers will use scales that portion in grams and kilograms, volume measures that portion in liters and deciliters, and thermometers that portion in degrees Celsius, and they will use formulas that indicate these units.They will not have to worry about how many grams are in an ounce. To become accustomed to working in metric units, it is helpful to have a feel for how large the units are.The following rough equivalents may be used to help you visualize metric units. They are not exact conversion factors.

A kilogram is slightly more than 2 lb.
A gram is about 1D30 oz. A half teaspoon of flour weighs a little less than a
gram.
A liter is slightly more than a quart.
A deciliter is slightly less than a half cup.
A centiliter is about 2 tsp.
A meter is slightly more than 3 ft.
A centimeter is about 3D8 in.
0°C is the frosty point of water (32°F).
100°C is the boiling point of water (212°F).
An increase or decrease of 1 degree Celsius is equivalent to about 2
degrees Fahrenheit.

Metric Formulas and Recipes

American manufactures will probably adopt the metric theory someday.Many formula writers are already eager to get a head start and are printing metric equivalents. As a result, you will see recipes calling for 454 g flour, 28.35 g butter, or a baking temperature of 191°C.No wonder people are afraid of the metric system! Kitchens in metric countries do not work with such impractical numbers, any more than we normally use figures like 1 lb 11D4 oz flour, 2.19 oz butter, or a baking temperature of 348°F.That would defeat the whole purpose of the metric system,which is to be simple and practical. If you have a occasion to look at a French cookbook, you will see nice, round numbers such as 1 kg, 200 g, and 4 dL.
The metric measures in the formulas in this book are Not equivalent to the U.S. Measures given alongside them.You should think of the metric portion of the formulas as detach formulas with yields that are close to but not the same as the yields of the U.S. Formulas. To give exact equivalents would require using awkward, impractical numbers. If you have metric equipment,use the metric units, and if you have U.S.equipment,use the U.S. Units.You should rarely have to worry about converting in the middle of the two. For the most part, the total yield of the metric formulas in this book is close to the yield of the U.S. Formulas while retention the ingredient proportions the same. Unfortunately, it is not all the time possible to keep the proportions exactly the same because the U.S. theory is not decimal-based like the metric system. In some cases, the metric quantities furnish slightly dissimilar results due to the varying proportions, but these differences are normally highly small.

The principle of using a baker's scale is simple: The scale must equilibrium before setting the weights, and it must equilibrium again after scaling. The following course applies to the most commonly used type of baker's scale.
1. Set the scale scoop or other box on the left side of the scale.
2. equilibrium the scale by placing counterweights on the right side
and/or by adjusting the ounce weight on the horizontal bar.
3. Set the scale for the desired weight by placing weights on the right side
and/or by enchanting the ounce weight.
For example, to set the scale for 1 lb 8 oz, place a 1-lb weight on the right side and
move the ounce weight to the right 8 oz. If the ounce weight is already over 8 oz, so
that you cannot move it another 8, add 2 lb to the right side of the scale and subtract 8
ounces by enchanting the ounce weight 8 places to the left. The ensue is still 1 lb 8 oz.
4. Add the ingredient being scaled to the left side until the scale balances.

Measuring By Weight
A good equilibrium scale should be exact to 1D4 oz (0.25 oz) or, if metric, to 5 g. Dry ingredients weighing less than 1D4 oz can be scaled by physically dividing larger quantities into equal portions. For example, to scale 1D16 oz
(0.06 oz),first weigh out 1D4 oz,then divide this into four equal piles using a small knife.

For fine pastry work, a small battery-operated digital scale is often more beneficial than a large equilibrium scale. A good digital scale is relatively inexpensive. It can promptly portion quantities to the nearest 1D8 oz or the nearest 2 g. Most digital scales have a zero or tare button that sets the indicated weight to zero. For example, you may set a box on the scale, set the weight to zero, add the desired quantity of the first ingredient, again set the weight to zero, add the second ingredient, and so on. This speeds the weighing of dry ingredients that are to be sifted together, for example.However, remember that just weighing on a good scale is more accurate.

British bakers have a convenient formula for measuring baking powder when small quantities are needed.They use a combination called scone flour. To make a pound of scone flour, merge 15 oz flour and 1 oz baking powder; sift together three times.One ounce (1D16 lb) scone flour thus contains 1D16 (0.06 oz) baking powder. For each 1D16 oz baking powder you need in a formula, substitute 1 oz scone flour for 1 oz of the flour called for in the formula. In order to make formula conversions and calculations easier, fractions of ounces that appear in the ingredient tables of the formulas in this book are written as decimals.Thus,11D 2 oz is written as 1.5 oz and 1D4 oz is written as 0.25 oz.

Baker'S Percentages
Bakers use a simple but versatile theory of percentages for expressing their formulas. Baker's percentages express the estimate of each ingredient used as a division of the estimate of flour used. To put it differently, the division of each ingredient is its total weight divided by the weight of the flour,multiplied by 100%, or:
100% = % of ingredient

Thus, flour is all the time 100%. If two kinds of flour are used, their total is 100%. Any ingredient that weighs the same as the estimate of flour used is also given as 100%.The cake formula ingredients listed on page 11 illustrate how these percentages are used.Check the figures with the above equation to make sure you understand them. Please remember that these numbers do not refer to the division of the total yield.They are plainly a way of expressing ingredient proportions. The total yield of these division numbers will all the time be greater than 100%. The advantages of using baker's percentages is that the formula is surely adapted for any yield, and particular ingredients may be various and other ingredients added without changing the whole formulation. For example, you can add raisins to a muffin mix formula while retention the percentages of all the other ingredients the same. Clearly, a division theory based on the weight of flour can be used only when flour is a major ingredient, as in breads,cakes,and cookies.However, this principle can be used in other formulas as well by choosing a major ingredient and establishing it as 100%. In this book, whenever an ingredient other than flour is used as the base of 100%.

Basics of Cake development - Formulas and Measurements

12 OUNCES EQUALS HOW MANY CUPS

Thursday, August 11, 2011

establishment the Best Cup of Coffee - The inexpressive is in Coffee and Water Measurements

This is one of the most often asked questions and one that deserves extra attention. After all, if you have purchased your beloved epicurean coffee and are ready to prepare it at home, it makes sense to do it right for best results and most satisfaction.

You can optimize the potential of every cup of coffee you prepare

12 OUNCES EQUALS HOW MANY CUPS

First of all, make sure that your tool is fully cleaned after each use. Rinse it with clear, hot water and dry it with an absorbent towel. Check that no coffee grounds have been left to fetch on any part of the equipment. Built-up coffee oil should not be left either because it will relate a bitter, rancid flavor to hereafter cups of coffee.

The water you use is also very foremost to the potential of coffee you will drink

If your tap water is not good or if it has a strong odor or taste such as chlorine, by all means use filtered or bottled water instead. Cold water should be used to prepare coffee since it will be heated close to boiling in the process. Do not use distilled or softened water.

The proper guideline we suggest to use for the coffee to water ratio is

One (1) rounded Tablespoon (Tbsp) of ground coffee per six (6) ounces of water (the proper coffee "cup" amount). Use more ground coffee for a stronger brew, less for weaker coffee. Measuring too miniature coffee will make a weak brew and will allow the water to excerpt the more bitter components of ground coffee. Lighter bodied, milder flavored coffees should be brewed a miniature stronger. From experience, for a full 10 or 12 "cup" sized pot of brewed coffee, we suggest one (1) rounded tablespoon per six (6) ounces of measured cold water, then add one (1) more tablespoon of ground coffee just to be sure it will be strong enough. If you prefer a coffee part scoop (about 1/8 cup in size), use five (5) or six (6) rounded scoops. Each scoop is equal to about 2 Table spoons. If you do not want your cup of coffee to be strong, add a Tablespoon or two of hot water to "thin" the coffee to your taste preference. This guideline can be adjusted to suit your private taste preferences. Of course, check the "cup" lines on your own brewer to see how they truly part as there are many variations available.

The best way to ensure making ready a great specialty coffee beverage is to apply as exact standards of water quality, brewing temperature, and coffee to water ratio as much as possible. This is true either the coffee is prepared as an espresso, as drip coffee or in a steeping formula such as a French press. So, are you now ready to enjoy a cup of specialty coffee?

establishment the Best Cup of Coffee - The inexpressive is in Coffee and Water Measurements

12 OUNCES EQUALS HOW MANY CUPS