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}
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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}.
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.
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
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
--- number of squares
Because S is dominant over s;we can write Ss as S.
So, we have:
The percentage of each offspring calculated as follows is:
Hence, 50% of the offsprings would have long stems, while the other 50% would have short stems.
Read more about the punnet square at:
Answer:
Hope this helps
Answer:
its no because
Step-by-step explanation:
27/3=9
35/4=8.75