In ........ process, both system and surroundings are returned to their initial states at the end of the process Irreversible Process O both wrong Reversible Process O
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![In .........
process, both system
and surroundings are returned to their
initial states at the end of the process
Irreversible Process O
both wrong
Reversible Process O](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F204a74d6-d340-4b1f-a731-35e5e56faaa4%2Fd511cb80-395f-4356-982c-66742dddb42a%2Ffleu2qq_processed.jpeg&w=3840&q=75)
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- to simulate a system of particles with two energy levels in contact with a thermal reservoir the temperature of the system is composed of particles that can be found in two states with zero energy and energy greater than zero the objective of this project is to obtain the system using the method Monte Carlo to calculate average energy and specific heatConsider the same Simulated Annealing problem as the previous question. Pick the statement that best describes what happens in the next iteration of the Simulated Annealing algorithm. s3, s4, and s5 are equally likely to be the next state s1 is more likely than s2 to be the next state s1 and s2 are equally likely to be the next state s1 is most likely to be the next stateMATLAB code that matches the value from two variables within certain parameters. It can only use for or while loops, conditional statements, Boolean logic, or logical operators to find a match between the two inputs. For example, one input can be x = 42 and b = 61, and these two inputs would yield a match. The first condition that needs to be met to obtain a match is that x can be equal to 2, 21, 40, and 59. Variable b must also be equal to these values to have a match. The values for x have to increase by one for every loop iteration until the final values for x are: 19, 38, 57, and 76. So the matching has to take place within the same values for x as for b and within those range of values described. If a match is found then set b = d.
- write in matlabConsider the following AND/OR graph to describe a simple automobile diagnostic system using IF-THEN rules. ... the problem is X Rule 3: the problem is the starter motor Rule 1: the problem is spark plugs Rule 2: the problem is battery or cables the engine the engine is will turn the engine does not turn over the lights do not the engine does not the lights do come getting gas over turn over come on on Rule 4: the engine is getting gas gas in fuel tank gas in carburetor Do you recommend data-driven or goal-driven search in this graph if we are diagnosing a problem with the automobile? Breadth-first or depth-first search? In what ways could heuristics assist the search? Justify your answers to these questions.Which of the following processes involves change in states of matter
- Design an IU library management system through nested if-else. Here is a pseudo code. If a student is enrolled in I.U and has enrollment i.d so check library card. If it is green he can lend books from book bank only for two months, if it is blue he can lend books from Reference library only for a week. If it is yellow he can lend books from Circulation library for one day. If a student has green card and return book above two months so ask how many days are above from due date than charge rupees 30/ day. Calculate the total amount in the last. If a student has blue card and return book above a week so ask how many days are above from due date than charge rupees 50/ day. Calculate the total amount in the last. If a student has yellow card and return book above a day so ask how many days are above from due date than charge rupees 100/ day. Calculate the total amount in the last. I WANT CODE IN C++A robot is a programmable machine that can carry out a series of automated tasks. The final lab for the semester is to build a robot of your own design. Your robot should contain at least two sensors, and two output mechanisms that work together to perform a task. Sensors can be something like a temperature or light sensor. Output mechanisms can be things like servo motors or lights. In order to make sure that the task your robot performs is sufficiently complex to meet the objectives of the course you will need to write a proposal that answers the questions below.1. Describe the purpose or goal of your robot. Answer the question, “Why does this robot exist?” What problem does it solve? What are some of the challenges to solving that problem?2. Describe how your robot will solve the problem. What sensors will it use? How will it behave based on the inputs and how will it overcome the challenges presented?3. How will you know if your robot successfully meets its goals? What tests will…Consider a thermostat with only one temperature threshold. In the initial state, if the temperature is less than or equal to 20 degrees Celsius, it turns the heater on and leaves it on for at least 30 seconds. After that, if the temperature is greater than 20 degrees, it turns the heater off and leaves it off for at least 2 minutes. It turns it on again only if the temperature is less than or equal to 20 degrees. Design an FSM that behaves as described, assuming it reacts exactly once every 30 seconds
- * The means if a sample is compressed in one direction it tends to get thicker in the lateral direction Hooke's Law Ductility poission's ratio * Intensive property of a system is one whose value depends on the mass of the system, like volume does not depend on the mass of the system, like temperature, O is dependent on the path followed and not on the state remains constant OR-2000 2 An electrical capacitor with an unknown capacitance is connected to the circuit shown. The switch is first connected to B and the capacitor is charged. Then, the switch is connected to A and the capacitor discharges through the resistor. As the capacitor is discharging, the voltage across the capacitor is measured for 10 s in intervals of 1 s. The recorded measurements are given in the table below. Vo | 3| 4 | 5 | 3.55 2.81 6 7 1.26 | 2 8 10 V(V) | 9.4. 7.31 | 5.15 2.04 0.97 0.74 | 0.58 You recall from PHYS2102 that the voltage of the capacitor, during a discharge, as function of time is given by V = V, e*t/(RC) This exponential equation can be written as a linear equation of In(V) and t in the form : In(V) = t + In(V6) Use Matlah to do the following: "In all graphs add title, sgend and axis labels 1. Estimate the time at which the voltage V = 6.5 V. 2. Estimate, using spline interpolation, the voltage V1 corresponding to 30 times varying from 1 to RC 10s. 3. In the same…Write the code in matlab. Use function file.