Fred's parents are reinforcing his negative behaviors on a "partial reinforcement schedule".
<h3>What is a partial reinforcement schedule?</h3>
The majority of reinforcement schedules are partial, and they can be either fixed or variable in terms of the number of replies they reward, or they can be interval or ratio-based in terms of the amount of time between responses. The number of answers or the interval between reinforcements is fixed and unchanging under a fixed schedule.
The reaction is only reinforced sometimes in partial or intermittent reinforcement. With fractional support, learned behaviors are acquired more gradually, but the reaction is more resistant to eradication.
Although you initially used a regular calendar, it may not always be practicable to reinforce each and every instance of the behavior. In the end, you can decide to go to a fractional calendar where you only provide help when a lot of reactions occur or when a lot of time has passed.
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The federal court has the power to intervene if they deem that the state circuit is incorrect.
<span>Immortalized as the "good mother dinosaur," Maiasaura was a typical hadrosaur, or duck-billed dinosaur, of late Cretaceous North America. On the following slides, you'll discover 10 fascinating Maiasaura facts. how this helps</span>
Options:
An electron has the same amount of energy in all orbitals.
An orbital can contain a maximum of two electrons.
An electron cloud represents all the orbitals in an atom.
An atom’s lowest energy level has only one orbital.
Answer: An electron has the same amount of energy in all orbitals
Explanation: An electron has the same amount of energy in all orbitals is the statement that is not true and all other statements are true.
In an atom, we have three subatomic particles which are protons, neutrons, and electrons. Electrons cannot have the same amount of energy in all orbitals because they revolve in orbits around the nucleus. That means that level of energy in electrons is always different in all orbitals.
The situation in which dying millionaires are more likely to leave their fortunes to close genetic relatives than distant relatives or strangers best explains the concept of kin selection. According the kin selection a<span> gene causes an individual to behave altruistically towards its relatives. </span>