List all subsets of {a,b,c,d,e} containing {a,e} but not containing c

Answers

Answer 1
Answer:

The subsets of {b, d} are {}, {b}, {d}, {b, d}. Thus the subsets of interest to you are

... {a, e}, {a, b, e}, {a, d, e}, {a, b, d, e}

_____

We know your final sets will include {a, e}, so they're not part of the variable portion of the subsets. We know c is not included, so we can leave it out of consideration. That leaves only b and d included (or not) in the variable portion of the sets of interest. We only needed to find all the ways that we could have b or d or neither or both, that is, the subsets of {b, d}. Then we form the union of each of those subsets with {a, e}.


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Ms.Booth has 16 red buttons and 24 blue buttons.She is making finger puppets. Each puppet has the same number of blue buttons and red buttons.How many puppets can she make if she uses all of the buttons

Answers

Answer:

8 finger puppets.

Step-by-step explanation:

If the puppets both have the same number of buttons, you have to find the largest number that will fit into both numbers. In this case that would be 8:

2 red and 3 blue buttons per puppet.

The number of girls at middle school Cyber summer camp was six more than twice the number of boys. The total of 156 middle school at the camp. How to use the 5-d process? To find the number of boys and girls at the camp.

Answers

girls: 81
boys: 75

4x +6 = 156
4x = 150
x = 37.5
2x = 75

girls: 75 + 6
boys: x

Round the number 3,250.0883 to the nearest hundredth

Answers

3,250.0883 to the nearest hundredth

We write the place chart for the given number

Th    H     tens    Ones . tenths   hundredths  thousandths     Ten thousandths

3    2        5           0    .     0             8                       8                   3

To round the number to nearest hundredth, we look at the number in  thousandths place. 8 is greater than 5 so we add 1 with the number in hundredths place

Hence , the number 8 in hundredth place becomes 8

3,250.0883 rounded to the nearest hundredth is 3,250.09


3,250.0883 is rounded to 3,250.09

Draw a Punnett square of an Ss x ss cross. The S allele codes for long stems in pea plants and the s allele codes for short stems. If S is dominant to s, what percentage of the offspring would you expect to have each phenotype?

Answers

The punnet square is used to predict phenotypes.

50% of the offsprings would have long stems, while the other 50% would have short stems.

See attachment for the SS vs ss cross

From the attachment, we have the following observations

n = 4 --- number of squares

Ss  =2

ss = 2

Because S is dominant over s;we can write Ss as S.

So, we have:

n = 4

S = 2

s  =2

The percentage of each offspring calculated as follows is:

S\% = (S)/(n) * 100\%

S\% = (2)/(4) * 100\%

S\% = 0.5 * 100\%

S\% = 50\%

s\% = (s)/(n) * 100\%

s\% = (2)/(4) * 100\%

s\% = 0.5 * 100\%

s\% = 50\%

Hence, 50% of the offsprings would have long stems, while the other 50% would have short stems.

Read more about the punnet square at:

brainly.com/question/3154616

Answer:

Hope this helps

Can someone please help me I need help i will mark brainlist

Answers

Answer:

its no because

Step-by-step explanation:

27/3=9

35/4=8.75

What is the simplified square root of 1/56?

Answers

\sqrt { \frac { 1 }{ 56 } } \n \n =\frac { \sqrt { 1 } }{ \sqrt { 56 } } \n \n =\frac { 1 }{ \sqrt { 7\cdot 8 } } \n \n =\frac { 1 }{ \sqrt { 7\cdot 2\cdot 4 } }

\n \n =\frac { 1 }{ \sqrt { 14\cdot 4 } } \n \n =\frac { 1 }{ \sqrt { 14 } \sqrt { 4 } } \n \n =\frac { 1 }{ 2\cdot \sqrt { 14 } } \n \n =\frac { 1 }{ 2\cdot \sqrt { 14 } } \cdot \frac { \sqrt { 14 } }{ \sqrt { 14 } } \n \n =\frac { \sqrt { 14 } }{ 2\cdot 14 } \n \n =\frac { \sqrt { 14 } }{ 28 }