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0.000000000004632 = 4.632 × 10 12

The decimal point is twelve places to the right of its original position, and the power of 10 is 12 .

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0.027 = 2.7 × 10 2

The decimal point is two places to the right of its original position, and the power of 10 is 2 .

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Practice set a

Write the following numbers in scientific notation.

5387.7965

5.3877965 × 10 3

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179,000,000,000,000,000,000

1.79 × 10 20

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0.000098001

9.8001 × 10 5

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0.000000000000000054

5.4 × 10 17

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0.0000001

1.0 × 10 7

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0.00000001

1.0 × 10 8

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Scientific form to standard form

A number written in scientific notation can be converted to standard form by reversing the process shown in Sample Set A.

Converting from scientific notation

To convert a number written in scientific notation to a number in standard form, move the decimal point the number of places prescribed by the exponent on the 10.

Positive exponent negative exponent

Move the decimal point to the right when you have a positive exponent, and move the decimal point to the left when you have a negative exponent.

Sample set b

4.673 × 10 4 .

The exponent of 10 is 4 so we must move the decimal point to the right 4 places (adding 0 ' s if necessary).

Number written in scientific notation as 'four point six seven three zero multiplied by ten to the fourth power' is equal to 'forty six thousand seven hundred thirty' in standard form.

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2.9 × 10 7 .

The exponent of 10 is 7 so we must move the decimal point to the right 7 places (adding 0 ' s if necessary).

2.9 × 10 7 = 29000000

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1 × 10 27 .

The exponent of 10 is 27 so we must move the decimal point to the right 27 places (adding 0 ' s without a doubt).

1 × 10 27 = 1,000,000,000,000,000,000,000,000,000

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4.21 × 10 5 .

The exponent of 10 is 5 so we must move the decimal point to the left 5 places (adding 0 ' s if necessary).

4.21 × 10 5 = 0 .0000421

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1.006 × 10 18 .

The exponent of 10 is 18 so we must move the decimal point to the left 18 places (adding 0 ' s if necessary).

1.006 × 10 18 = 0.000000000000000001006

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Practice set b

Convert the following numbers to standard form.

8.88 × 10 5

0.0000888

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Working with numbers in scientific notation

Multiplying numbers using scientific notation

There are many occasions (particularly in the sciences) when it is necessary to find the product of two numbers written in scientific notation. This is accomplished by using two of the basic rules of algebra.

Suppose we wish to find ( a × 10 n ) ( b × 10 m ) . Since the only operation is multiplication, we can use the commutative property of multiplication to rearrange the numbers.

( a × 10 n ) ( b × 10 m ) = ( a × b ) ( 10 n × 10 m )

Then, by the rules of exponents, 10 n × 10 m = 10 n + m . Thus,

( a × 10 n ) ( b × 10 m ) = ( a × b ) × 10 n + m

The product of ( a × b ) may not be between 1 and 10, so ( a × b ) × 10 n + m may not be in scientific form. The decimal point in ( a × b ) may have to be moved. An example of this situation is in Sample Set C, problem 2.

Sample set c

( 2 × 10 3 ) ( 4 × 10 8 ) = ( 2 × 4 ) ( 10 3 × 10 8 ) = 8 × 10 3 + 8 = 8 × 10 11

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( 5 × 10 17 ) ( 8.1 × 10 22 ) = ( 5 × 8.1 ) ( 10 17 × 10 22 ) = 40.5 × 10 17 22 = 40.5 × 10 5

We need to move the decimal point one place to the left to put this number in scientific notation.

Thus, we must also change the exponent of 10.

40.5 × 10 5 4.05 × 10 1 × 10 5 4.05 × ( 10 1 × 10 5 ) 4.05 × ( 10 1 5 ) 4.05 × 10 4

Thus,

( 5 × 10 17 ) ( 8.1 × 10 22 ) = 4.05 × 10 4

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Questions & Answers

differentiate between demand and supply giving examples
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Quantity demanded refers to the specific amount of a good or service that consumers are willing and able to purchase at a give price and within a specific time period. Demand, on the other hand, is a broader concept that encompasses the entire relationship between price and quantity demanded
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Economic growth as an increase in the production and consumption of goods and services within an economy.but Economic development as a broader concept that encompasses not only economic growth but also social & human well being.
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In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities, where neither p
Cornelius
In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities,
Cornelius
Suppose a consumer consuming two commodities X and Y has The following utility function u=X0.4 Y0.6. If the price of the X and Y are 2 and 3 respectively and income Constraint is birr 50. A,Calculate quantities of x and y which maximize utility. B,Calculate value of Lagrange multiplier. C,Calculate quantities of X and Y consumed with a given price. D,alculate optimum level of output .
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Answer
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c
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the market for lemon has 10 potential consumers, each having an individual demand curve p=101-10Qi, where p is price in dollar's per cup and Qi is the number of cups demanded per week by the i th consumer.Find the market demand curve using algebra. Draw an individual demand curve and the market dema
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suppose the production function is given by ( L, K)=L¼K¾.assuming capital is fixed find APL and MPL. consider the following short run production function:Q=6L²-0.4L³ a) find the value of L that maximizes output b)find the value of L that maximizes marginal product
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types of unemployment
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Source:  OpenStax, Elementary algebra. OpenStax CNX. May 08, 2009 Download for free at http://cnx.org/content/col10614/1.3
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