The amount of electrical resisitance (R) in a medium depends on the temperature, and for certain materials can be modeled by the equation R(t)+0.01t^2+0.1t+k, where R(t) is the resistance in ohms at temperature t(t>or equal to 0degrees) in degrees Celsius, and k is the resistance at t=0degreesC Suppose k=30 for a certain medium. Write the resistances equation and use it to answer the following. a. For what temperature is the resistance less than 42 ohms b. For what temperature is the resistance greater than 42 ohms c. If it becomes uneconomical to run electricity through the medium for resistance greater than 60 ohms for what temperatures should the electricity generator be shut down?
Minimization
In mathematics, traditional optimization problems are typically expressed in terms of minimization. When we talk about minimizing or maximizing a function, we refer to the maximum and minimum possible values of that function. This can be expressed in terms of global or local range. The definition of minimization in the thesaurus is the process of reducing something to a small amount, value, or position. Minimization (noun) is an instance of belittling or disparagement.
Maxima and Minima
The extreme points of a function are the maximum and the minimum points of the function. A maximum is attained when the function takes the maximum value and a minimum is attained when the function takes the minimum value.
Derivatives
A derivative means a change. Geometrically it can be represented as a line with some steepness. Imagine climbing a mountain which is very steep and 500 meters high. Is it easier to climb? Definitely not! Suppose walking on the road for 500 meters. Which one would be easier? Walking on the road would be much easier than climbing a mountain.
Concavity
In calculus, concavity is a descriptor of mathematics that tells about the shape of the graph. It is the parameter that helps to estimate the maximum and minimum value of any of the functions and the concave nature using the graphical method. We use the first derivative test and second derivative test to understand the concave behavior of the function.
The amount of electrical resisitance (R) in a medium depends on the temperature, and for certain materials can be modeled by the equation R(t)+0.01t^2+0.1t+k, where R(t) is the resistance in ohms at temperature t(t>or equal to 0degrees) in degrees Celsius, and k is the resistance at t=0degreesC
Suppose k=30 for a certain medium. Write the resistances equation and use it to answer the following.
a. For what temperature is the resistance less than 42 ohms
b. For what temperature is the resistance greater than 42 ohms
c. If it becomes uneconomical to run electricity through the medium for resistance greater than 60 ohms for what temperatures should the electricity generator be shut down?
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