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Posted: April 20th, 2022
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4/7/22, 3:52 PM OENG1116 Assignment-1-2022: Pt-2 of 2 ka) TOW fild1K Will [le dlLIIFJULeU LC) LF1 erTldll izIUUreSS wour dssigriment. IS bent. IRMT1), proviuirig Mtn Il matches name you select from the list. In case you are using your friend’s computer, please, LOG IN as yourself and make sure that your email is displayed at the beginning of this Form!!!
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TASK-1 (Introduction into first order systems: first order ordinary differential equations, Newton’s Law of cooling/heating, ode45, MATLAB) A small metal bar at a temperature of To=24 degrees dropped into a large container with Ts=97 degrees liquid (temperature is shown in Celsius degrees). Use Newton’s Law of Heating to determine the temperature of the bar after t=120 seconds (i.e. after 2 minutes), if the value of “k”, corresponding to this particular experiment, is equal to k=-0.01. This “k” corresponds to the Newton’s Law of heating dT/dt = k(T-Ts), where time ‘t’ is measured in seconds.
Figure-1:
Sum bersion of Specimen In Liquid (Frame #1)
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Sumbersion of Specimen In Liquid (Frame #4)
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Sumbersion of Specimen In Liquid (Frame #2)
Sumbersion of Specimen in Liquid (Frame #3)
kw =Ts(T —T )x ekt 0 5
Sumbersion of Specimen in Liquid (Frame #5)
Sumbersion of Specimen in Liquid (Frame #6)
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3/22/22, 3:52 p.m. OENG1116 Assignment-1-2022: Pt-2 (2 ka) fild1K TOW Will erTldll izIUUreSS wour dssigriment [le dlLIIFJULeU LC) LF1 erTldll erTldll erTldll erTldll erTldll erTldll erTldll erTldll IS bent. IRMT1), assuming Mtn Il matches the name you choose from the list. If you are using a friend’s computer, please LOG IN as yourself and ensure that your email address is displayed at the top of this Form!!!
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TASK-1 (Introduction into first order systems: first order ordinary differential equations, Newton’s Law of cooling/heating, ode45, MATLAB) A small metal bar at a temperature of To=24 degrees dropped into a large container with Ts=97 degrees liquid (temperature is shown in Celsius degrees). Use Newton’s Law of Heating to determine the temperature of
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