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jerry hill

jerry h.

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f.) the line x = 6 Disk Method r= Washer Method R = r=

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The term "stimulus" refers to A change in energy that can be detected by the nervous system Something that is added to the environment Something that is removed from the environment Anything added to or removed from the environment

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I WILL GIVE DISLIKES !!! IF ANYTHING WRONG HAPPENS IN MY QUESTION, BETTER SKIP IT!!! FF12 Don't Give the solution and explaination.this question paper has e pasur Section A: Single Choice Questions (30 , and 6 each)Don't solve else I will Punish You.1I told you not to solve any part Consider the outcomes when a coin is tossed until a tail or three heads appearAppologies for not answering the question Let H be the head and T be the tailPlease don't give solution The sample space is () (A) S = {H,HT,HHT,HHH) (B) S = {T, HT, HHT,HHH) (C) S = {T,TH,HHT, HHH (D) S = {T, HT, HHT,HTT} 2I told you not to solve any part If two events A and B are mutually exclusive, which one is not correct of the following statementsJust don't give any explanation () (A) P(AB) = 0 (B) P(AUB) = P(A) + P(B) (C) P(AB) = P(A)P(B) (D) P(B - A) = P(B) 3You waste my time by giving explanation, don't give explanation Which one is a density function in the following four functionsDon't Solve O (A) f(x) = x²/2, for -1

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Suppose the government implements a $3 price ceiling for oranges, what effect will this have on the market? a. A shortage of 7 b. A surplus of 7 c. No effect d. Unable to determine the effect

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12. Given the functions $f(x) = \cos(x)$ and $g(x) = \frac{1}{2}$, determine the range of the combined function $y = \frac{f(x)}{g(x)}$. 13. Given the functions $f(x) = \sin x$ and $g(x) = -2$, determine the range of the combined function $y = f(x) + g(x)$. 14. If $f(x) = \frac{x + 3}{2}$ and $g(x) = x^2 + 5$, what is $g(f(-3))$?

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According to Steger (2017), the United States constitutes 6% of the world's population but consumes ___________ of our planet's natural resources. a. 75% - 85% b. 30% - 40% c. 20% - 35% d. 5% - 10%

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5. Given the matrices below: \begin{equation*} C = \begin{bmatrix} 2 & 0 & 3 \\ 1 & 6 & -1 \\ 5 & 0 & -5 \end{bmatrix} \text{ and } D = \begin{bmatrix} 2 & 0 & 1 \\ 7 & 6 & 5 \\ 1 & -7 & 2 \end{bmatrix} \end{equation*} Show all work and find (if possible): a) C \times D b) D \times C c) Is C \times D = D \times C for above matrices?

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Suppose w(x,y) = xy + e, where y = v*sin(u*v) and x = ln(4). Find the value of ∂w/∂u and ∂w/∂v by using the multivariable chain rule method. (8 marks)

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Problem 7: The hardness of a still specimen is to be determined using Brinell Hardness method and a 10mm-diameter tungsten-carbide ball. If the load applied is 1500-kg, and the resulting dent in steel specimen has die diameter of 3.2 mm (a) What is the Brinell Hardness of this steel specimen (b) For metals, there is close correlation between the metal's hardness and its Ul- timate Tensile Strength. This correlation can be shown to be: UTS = $K_h$(HB) Where $K_h$ is constant of proportionality, and HB is the Brinell Hardness. For this equation (i) Find the the unit of $K_h$ in SI unit system (Simplify the unit to include only kg-m-s) (ii) What is the ultimate tensile strength of the still specimen tested in (a), if $K_h$ for steel is 3.45x10$^6$

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I am doing a tubular heat exchanger experiment and I calculated the overall heat transfer coefficient using the empirical correlation as well as the data obtained from my experiment. However, the two overall heat transfer coefficient was very different. When using empirical correlation, my overall heat transfer coefficient was 500, whereas by using the data obtained from the experiment, I get 950. Why is this so?

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