Answer:
1) 1050 ft squared
2) 200 yards
Step-by-step explanation:
Hope this helps! Pls give brainliest!
Answer:
517 lb
Step-by-step explanation:
Hello,thanks for asking here in brainly I think I can help you with this
you can easily solve this by using a rule of three
Step one
if
45 gal⇒ 375 lb
62 gal ⇒ x lb?
do the relation
the weight of water holded in a 62 gal tank is 517 lb
I hope it helps, Have a great day.
Answer:
4.448834e+29
Step-by-step explanation:
e because i aint never seen two pretty bestfriends one always gotta be ugly:)
Answer:
Step-by-step explanation:
Given that height of cliff H = 5000 ft
You drop rock from cliff and the distance of rock below the cliff at time,t is given by:
Q1. How far below the cliff is the rock 7 seconds after it dropped ?
Ans. Here, t=7 seconds
By using formula provide, g=32.18 ft{tex]
y=- \frac{1}{2} × 32.17 × (7)^{2}[/tex] = 788.165 ft
Note: Negative sign shows the direction and 240.345 is magnitude
Therefore, Rock is 788.165 ft from Cliff
Q2. How far is the rock from the bottom 7 seconds after it dropped ?
By using formula provide,
Ans. After 7 seconds, Rock is 788.165 ft from Cliff
Therefore, Rock is 5000-788.165 = 4,211.835 ft from bottom
Q3. When will rock hit the bottom?
Ans. Height of cliff H= 5000 ft
Using formula provided, g=32.18 ft
Q4. The Velocity of the rock at impact?
Ans. Velocity is given as V= g×t
By using formula, We get
V= 32.14 × Total time to reach ground
V= 32.14 × 17.6 = 565.66 ft/s
Answer:
(E)Nothing can be concluded.
Step-by-step explanation:
Given the function
If the derivative is set equal to zero, the function is undefined.
Nothing can be concluded since and no such c in (-1,1) exists such that
THEOREM
Rolle's theorem states that any real-valued differentiable function that attains equal values at two distinct points must have at least one stationary point somewhere between them—that is, a point where the first derivative is zero.
The function f(x) = 1 - x^2/3 has f(-1) = f(1) = 2/3. The derivative f'(x) = -2x/3 equals zero at x=0, which is in the interval (-1, 1). Therefore, this does not contradict Rolle's Theorem.
The function given is f ( x ) = 1 - x ^ 2 /3. To find the values f(-1) and f(1), we simply substitute these values into the function. Therefore, f(-1) = 1 - (-1) ^ 2 /3 = 1 - 1/3 = 2/3 and f(1) = 1 - 1^2/3 = 2/3. As you can see, f(-1) = f(1).
Now, to find the value 'c' such that f'(c) = 0, first we need to determine the derivative of the function, f'(x) = -2x/3. Setting this equal to zero gives the equation 0 = -2x/3, which has the solution x = 0. Therefore, f'(c) = 0 at c = 0, which is within the interval (-1, 1).
Finally, regarding Rolle's Theorem which states that if a function is continuous on the closed interval [a, b], differentiable on the open interval (a, b), and f(a) = f(b), then there exists at least one c in the interval (a, b) such that f'(c) = 0, our results are consistent with Rolle's Theorem, since f is differentiable, f(-1) = f(1), and a 'c' value exists in the interval (-1, 1) such that f'(c) = 0.
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Answer: Option C : delegation of authority
Step-by-step explanation:
the CEO used DELEGATION OF AUTHORITY approach to make restaurant managers accountable for cost-cutting measures in the above case.
The CEO of the Chili restaurant chain used the delegation of authority principle to make restaurant managers responsible for cost-cutting measures without sacrificing customer satisfaction.
In the situation described, the Chili restaurant chain's CEO used delegation of authority to make restaurant managers accountable for cost-cutting measures. Delegation of authority refers to the process of passing down responsibilities and decision-making power from upper to lower levels of management. In this case, the CEO entrusted the restaurant managers with the responsibility of reducing costs, while also maintaining customer satisfaction. Using this strategy, the CEO was able to shift accountability to the managers, who now have the authority to manage their resources and strategize their cost-cutting measures in a manner that would not compromise the level of satisfaction of their customers.
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