Answer:
see explanation
Step-by-step explanation:
B represents the lower quartile, that is 4
D represents the upper quartile, that is 15
To find the mass of the entire stack of dimes, multiply the mass of one dime by the number of dimes in the stack.
To find the mass of the entire stack of dimes, we need to know how many dimes are in the stack. Let's say there are n dimes in the stack. Each dime weighs 2.268 grams, so the mass of one dime is 2.268 grams.
To find the mass of the entire stack, we can multiply the mass of one dime by the number of dimes in the stack.
So, the mass of the entire stack of dimes is 2.268 grams multiplied by n.
#SPJ2
B- −4x4−2x2+8x+x5−2x3
C- −4x4−2x3−2x2+8x+x5
D- x5−4x4−2x3−2x2+8x
E- 8x+x5−2x2−2x3−4x4
For this case we have the following polynomial:
By definition, a polynomial in its standard form is given by:
Where:
a, b, c, d, e, f: They are the coefficients of each term of the polynomial.
x: It is the variable
n, i, 3,2,1,0: They are the exponents of each term of the polynomial, where n is the exponent of greater degree.
In this case they ask us to order the given polynomial, in a descending way, that is, from greater to lesser degree.
So, we have:
Thus, the polynomial in its descending form is given by:
Answer:
Option D
Answer:
option D
Step-by-step explanation:
b. What does the value of the MAD represent? Explain
x x
x x
x x x x
x x x x x
x x x x x
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