When a temperature sensor surpasses a threshold, your local nuclear power facility alarms. Core temperature is gauged. Consider the Boolean variables A (alarm sounds), FA (faulty alarm), and FG (faulty gauge) and the multivalued nodes G (gauge reading) and T (real core temperature). Since the gauge is more likely to fail at high core temperatures, draw a Bayesian network for this area. c. Is your network polytree? Why/why not?
When a temperature sensor surpasses a threshold, your local nuclear power facility alarms. Core temperature is gauged. Consider the Boolean variables A (alarm sounds), FA (faulty alarm), and FG (faulty gauge) and the multivalued nodes G (gauge reading) and T (real core temperature). Since the gauge is more likely to fail at high core temperatures, draw a Bayesian network for this area. c. Is your network polytree? Why/why not?
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![When a temperature sensor surpasses a threshold, your local nuclear power facility alarms.
Core temperature is gauged. Consider the Boolean variables A (alarm sounds), FA (faulty
alarm), and FG (faulty gauge) and the multivalued nodes G (gauge reading) and T (real core
temperature).
Since the gauge is more likely to fail at high core temperatures, draw a Bayesian network for
this area.
c. Is your network polytree? Why/why not?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa23b583e-a80f-48ad-95aa-6e15f219152c%2F4465b631-ef1b-4bb4-b674-34668effc7b5%2F0jgwzv5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:When a temperature sensor surpasses a threshold, your local nuclear power facility alarms.
Core temperature is gauged. Consider the Boolean variables A (alarm sounds), FA (faulty
alarm), and FG (faulty gauge) and the multivalued nodes G (gauge reading) and T (real core
temperature).
Since the gauge is more likely to fail at high core temperatures, draw a Bayesian network for
this area.
c. Is your network polytree? Why/why not?
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