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Simplify: 36 1 2 8 1 3 16 1 4 .

6 2 2

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Simplify: 100 1 2 27 1 3 81 1 4 .

10 3 3

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Be careful of the placement of the negative signs in the next example. We will need to use the property a n = 1 a n in one case.

Simplify: ( −64 ) 1 3 64 1 3 ( 64 ) 1 3 .

Solution


( −64 ) 1 3 Rewrite as a cube root. −64 3 Rewrite −64 as a perfect cube. ( −4 ) 3 3 Simplify. −4


64 1 3 The exponent applies only to the 64. ( 64 1 3 ) Rewrite as a cube root. 64 3 Rewrite 64 as 4 3 . 4 3 3 Simplify. −4


( 64 ) 1 3 Rewrite as a fraction with a positive exponent, using the property, a n = 1 a n . Write as a cube root. 1 64 3 Rewrite 64 as 4 3 . 1 4 3 3 Simplify. 1 4

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Simplify: ( −125 ) 1 3 125 1 3 ( 125 ) 1 3 .

−5 −5 1 5

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Simplify: ( −32 ) 1 5 32 1 5 ( 32 ) 1 5 .

−2 −2 1 2

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Simplify: ( −16 ) 1 4 16 1 4 ( 16 ) 1 4 .

Solution


( −16 ) 1 4 Rewrite as a fourth root. −16 4 There is no real number whose fourth power is −16 .


16 1 4 The exponent only applies to the 16. Rewrite as a fourth root. 16 4 Rewrite 16 as 2 4 . 2 4 4 Simplify. −2


( 16 ) 1 4 Rewrite using the property a n = 1 a n . 1 ( 16 ) 1 4 Rewrite as a fourth root. 1 16 4 Rewrite 16 as 2 4 . 1 2 4 4 Simplify. 1 2

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Simplify: ( −64 ) 1 2 64 1 2 ( 64 ) 1 2 .

−8 −8 1 8

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Simplify: ( −256 ) 1 4 256 1 4 ( 256 ) 1 4 .

−4 −4 1 4

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Simplify expressions with a m n

Let’s work with the Power Property for Exponents some more.

Suppose we raise a 1 n to the power m.

( a 1 n ) m Multiply the exponents. a 1 n · m Simplify. a m n So a m n = ( a n ) m .

Now suppose we take a m to the 1 n power.

( a m ) 1 n Multiply the exponents. a m · 1 n Simplify. a m n So a m n = a m n also.

Which form do we use to simplify an expression? We usually take the root first—that way we keep the numbers in the radicand smaller.

Rational exponent a m n

For any positive integers m and n ,

a m n = ( a n ) m a m n = a m n

Write with a rational exponent: y 3 x 2 3 z 3 4 .

Solution

We want to use a m n = a m n to write each radical in the form a m n .


  1. This figure says, “The numerator of the exponent is the exponent of y, 3.” It then shows the square root of y cubed. The figure then says, “The denominator of the exponent is the index of the radical, 2.” It then shows y to the 3/2 power.


  2. This figure says, “The numerator of the exponent is the exponent of x, 2.” It then shows the cubed root of x squared. The figure then reads, “The denominator of the exponent is the index of the radical, 3.” It then shows y to the 2/3 power.


  3. This figure reads, “The numerator of the exponent is the exponent of z, 3.” It then shows the fourth root of z cubed. The figure then reads, “The denominator of the exponent is the index of the radical, 4.” It then shows z to the 3/4 power.

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Write with a rational exponent: x 5 z 3 4 y 2 5 .

x 5 2 z 3 4 y 2 5

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Write with a rational exponent: a 2 5 b 7 3 m 5 4 .

a 2 5 b 7 3 m 5 4

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Simplify: 9 3 2 125 2 3 81 3 4 .

Solution

We will rewrite each expression as a radical first using the property, a m n = ( a n ) m . This form lets us take the root first and so we keep the numbers in the radicand smaller than if we used the other form.


  1. 9 3 2 The power of the radical is the numerator of the exponent, 3. Since the denominator of the exponent is 2, this is a square root. ( 9 ) 3 Simplify. ( 3 ) 3 27


  2. 125 2 3 The power of the radical is the numerator of the exponent, 2. The index of the radical is the denominator of the exponent, 3. ( 125 3 ) 2 Simplify. ( 5 ) 2 25


  3. 81 3 4 The power of the radical is the numerator of the exponent, 3. The index of the radical is the denominator of the exponent, 4. ( 81 4 ) 3 Simplify. ( 3 ) 3 27
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Simplify: 4 3 2 27 2 3 625 3 4 .

8 9 125

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Simplify: 8 5 3 81 3 2 16 3 4 .

32 729 8

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Remember that b p = 1 b p . The negative sign in the exponent does not change the sign of the expression.

Simplify: 16 3 2 32 2 5 4 5 2 .

Solution

We will rewrite each expression first using b p = 1 b p and then change to radical form.


16 3 2 Rewrite using b p = 1 b p . 1 16 3 2 Change to radical form. The power of the radical is the numerator of the exponent, 3. The index is the denominator of the exponent, 2. 1 ( 16 ) 3 Simplify. 1 4 3 1 64


32 2 5 Rewrite using b p = 1 b p . 1 32 2 5 Change to radical form. 1 ( 32 5 ) 2 Rewrite the radicand as a power. 1 ( 2 5 5 ) 2 Simplify. 1 2 2 1 4


4 5 2 Rewrite using b p = 1 b p . 1 4 5 2 Change to radical form. 1 ( 4 ) 5 Simplify. 1 2 5 1 32

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Questions & Answers

how does Neisseria cause meningitis
Nyibol Reply
what is microbiologist
Muhammad Reply
what is errata
Muhammad
is the branch of biology that deals with the study of microorganisms.
Ntefuni Reply
What is microbiology
Mercy Reply
studies of microbes
Louisiaste
when we takee the specimen which lumbar,spin,
Ziyad Reply
How bacteria create energy to survive?
Muhamad Reply
Bacteria doesn't produce energy they are dependent upon their substrate in case of lack of nutrients they are able to make spores which helps them to sustain in harsh environments
_Adnan
But not all bacteria make spores, l mean Eukaryotic cells have Mitochondria which acts as powerhouse for them, since bacteria don't have it, what is the substitution for it?
Muhamad
they make spores
Louisiaste
what is sporadic nd endemic, epidemic
Aminu Reply
the significance of food webs for disease transmission
Abreham
food webs brings about an infection as an individual depends on number of diseased foods or carriers dully.
Mark
explain assimilatory nitrate reduction
Esinniobiwa Reply
Assimilatory nitrate reduction is a process that occurs in some microorganisms, such as bacteria and archaea, in which nitrate (NO3-) is reduced to nitrite (NO2-), and then further reduced to ammonia (NH3).
Elkana
This process is called assimilatory nitrate reduction because the nitrogen that is produced is incorporated in the cells of microorganisms where it can be used in the synthesis of amino acids and other nitrogen products
Elkana
Examples of thermophilic organisms
Shu Reply
Give Examples of thermophilic organisms
Shu
advantages of normal Flora to the host
Micheal Reply
Prevent foreign microbes to the host
Abubakar
they provide healthier benefits to their hosts
ayesha
They are friends to host only when Host immune system is strong and become enemies when the host immune system is weakened . very bad relationship!
Mark
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faisal Reply
cell is the smallest unit of life
Fauziya
cell is the smallest unit of life
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Innocent
cell is the structural and functional unit of life
Hasan
is the fundamental units of Life
Musa
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Micheal Reply
There are nothing like emergency disease but there are some common medical emergency which can occur simultaneously like Bleeding,heart attack,Breathing difficulties,severe pain heart stock.Hope you will get my point .Have a nice day ❣️
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I think infection prevention and control is the avoidance of all things we do that gives out break of infections and promotion of health practices that promote life
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ESTHER Reply
Many sites of the body have it Skin Nasal cavity Oral cavity Gastro intestinal tract
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skin
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skin,Oral,Nasal,GIt
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part of a tissue or an organ being wounded or bruised.
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Binomial nomenclature
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Source:  OpenStax, Elementary algebra. OpenStax CNX. Jan 18, 2017 Download for free at http://cnx.org/content/col12116/1.2
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