1.3
Deductive reasoning is a type of logic that uses general principles to make specific predictions or conclusions.
It is the opposite of inductive reasoning, where general principles are inferred from specific observations.
Both types of reasoning are used to generate and test hypotheses.
For example, a scientist observes that butterflies are attracted to red flowers, but not yellow ones.
Using inductive reasoning, the scientist forms a hypothesis that butterflies choose flowers based on petal color.
Deductive reasoning begins when the scientist asks what should happen if this idea is correct.
If butterflies truly chose flowers based on color, then changing the petal color should change the butterflies' attraction to them.
However, changing other features, like scent or petal shape, should not make a difference if color is the main reason.
The scientist tests these predictions by changing one factor at a time and observing how the butterflies respond.
When the results match the prediction, the idea about color gains support.
In this way, inductive reasoning helps scientists form ideas, and deductive reasoning helps them test those ideas to expand scientific understanding.
El razonamiento deductivo, o deducción, es el tipo de lógica que se utiliza en la ciencia basada en hipótesis. En el razonamiento deductivo, el patrón…
Deductive reasoning is a type of logic that uses general principles to make specific predictions or conclusions.
It is the opposite of inductive reasoning, where general principles are inferred from specific observations.
Both types of reasoning are used to generate and test hypotheses.
For example, a scientist observes that butterflies are attracted to red flowers, but not yellow ones.
Using inductive reasoning, the scientist forms a hypothesis that butterflies choose flowers based on petal color.
Deductive reasoning begins when the scientist asks what should happen if this idea is correct.
If butterflies truly chose flowers based on color, then changing the petal color should change the butterflies' attraction to them.
However, changing other features, like scent or petal shape, should not make a difference if color is the main reason.
The scientist tests these predictions by changing one factor at a time and observing how the butterflies respond.
When the results match the prediction, the idea about color gains support.
In this way, inductive reasoning helps scientists form ideas, and deductive reasoning helps them test those ideas to expand scientific understanding.
View the full transcript and gain access to JoVE Core videos
From Chapter 1:
Now Playing
Scientific Inquiry
61.0K Views
Scientific Inquiry
228.5K Views
Scientific Inquiry
60.6K Views
Scientific Inquiry
37.8K Views