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- During a nationwide program to immunize thepopulation against a new strain of the flu, pubic health officials determined that the cost of inoculating x% of the susceptible populatioin would be approximately C(x) = 1.85x/ 100-x million dollars. a. suppose 17 million dollars are available for providing immunication. What percentage of the sesceptible population will not receive immunization? b. If money was not a problem will they be able to provide immunization to the entire susceptible population?During a nationwide program to immunize the population against a new strain of the flu,public health officials determined that the cost of inoculating x% of the susceptible populationwould be approximately C(x) =1.85x/100 − x million dollars. (i) What would it cost to providing immunization to the first 20% of the susceptiblepopulation?(ii) What would it cost to providing immunization to the next 30% of the susceptiblepopulation?(iii) Suppose 17 million dollars are available for providing immunization. What percentageof the susceptible population will not receive immunization?(iv) If money was not a problem will they be able to providing immunization to the entiresusceptible population?(c) Determine the values of x for which the function f(x) = {2x2 − 4 x<2 x+2 2<x>5 7 x>_5 is discontinuousDuring a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible populationwould be approximately C(x) =1.85x 100 − x million dollars. (i) What would it cost to providing immunization to the first 20% of the susceptiblepopulation?(ii) What would it cost to providing immunization to the next 30% of the susceptiblepopulation?(iii) Suppose 17 million dollars are available for providing immunization. What percentage of the susceptible population will not receive immunization?(iv) If money was not a problem will they be able to provide immunization to the entire susceptible population? Can you please solve (ii) and (iv).
- You are selling fidget spinners for $32 each. If it costs you C(x)=9+x^4 dollars to produce x fidget spinners, is it possible to make more than $40 in profit? Is it possible to have a loss of more than $10,000,000,000?During a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible population would be approximately C(x) = 1.85x / 100 - x million dollars. (i) What would it cost to providing immunization to the first 20% of the susceptible population? (ii) What would it cost to providing immunization to the next 30% of the susceptible population? (iii) Suppose 17 million dollars are available for providing immunization. What percentage of the susceptible population will not receive immunization? (iv) If money was not a problem will they be able to providing immunization to the entire susceptible population? Determine the values of x for which the function f(x) = { 2x2 – 4 x < 2 {x + 2 2 < x > 5 {7 x ≥ 5 is discontinuous.P(x) = -0.25x + 550 C(x) = 0.0002x^3 - 0.2x^2 + 15x + 50,000
- During a nationwide program to immunize the population against a new strain of the flu,public health officials determined that the cost of inoculating x% of the susceptible populationwould be approximately C(x) =1.85x100 − xmillion dollars.(i) What would it cost to providing immunization to the first 20% of the susceptiblepopulation?(ii) What would it cost to providing immunization to the next 30% of the susceptiblepopulation?(iii) Suppose 17 million dollars are available for providing immunization. What percentage of the susceptible population will not receive immunization?During a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible population would be approximately C(x)=1.85x /100 − x million dollars. (i) What would it cost to providing immunization to the first 20% of the susceptible population?(ii) What would it cost to providing immunization to the next 30% of the susceptible population?(iii) Suppose 17 million dollars are available for providing immunization. What percentage of the susceptible population will not receive immunization?During a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible population would be approximately C(x) =1.85x /100 − x million dollars. (i) What would it cost to providing immunization to the first 20% of the susceptible population? (ii) What would it cost to providing immunization to the next 30% of the susceptible population? (iii) Suppose 17 million dollars are available for providing immunization. What percentage of the susceptible population will not receive immunization? (iv) If money was not a problem will they be able to providing immunization to the entire susceptible population?
- During a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible populationwould be approximately C(x) = 1.85x100−xmillion dollars.(i) What would it cost to providing immunization to the first 20% of the susceptible population?(ii) What would it cost to providing immunization to the next 30% of the susceptible population?(iii) Suppose 17 million dollars are available for providing immunization.What percentage of the susceptible population will not receive immunization?(iv) If money was not a problem will they be able to providing immunization to the entire susceptible population?(c) Determine the values of x for which the function f(x) ={2x2 −4x<2 x+2 2<x>5 7 x≥5is discontinuous.During a nationwide program to immunize the population against a new strain of the flu, public health officials determined that the cost of inoculating x% of the susceptible population would be approximately C(x) = 1.85x million dollars 100 − x (i) What would it cost to providing immunization to the first 20% of the susceptible population? (ii) What would it cost to providing immunization to the next 30% of the susceptible population?A chemical manufacturer sells sulfuric acid in bulk at a price of $100 per unit.If the daily total production cost in dollars for x units isC(x) = 100, 000 + 50x + 0.0025x2and if the daily production capacity is at most 7000 units.(a) How many units of sulfuric acid must be manufactured and sold daily tomaximize the profit? (b) Would it benefit the manufacturer to expand the daily production capacity?