Convection Current

B2 8+

Pronunciation: /kənˈvɛkʃən ˈkʌrənt/

Definitions of convection current

noun a current in a fluid that results from convection, especially one in the atmosphere or ocean that transfers heat from one part of the fluid to another

Example Sentences

A1 A convection current is a type of heat transfer.

A2 Convection currents in the atmosphere help distribute heat around the Earth.

B1 Scientists study convection currents in the ocean to understand how heat is transported.

B2 The movement of magma in the Earth's mantle is driven by convection currents.

C1 Convection currents play a crucial role in the Earth's climate system.

C2 Understanding convection currents is essential for predicting weather patterns accurately.

Examples of convection current in a Sentence

formal Convection currents are responsible for the movement of magma beneath the Earth's crust.

informal You can see convection currents in action when you boil water in a pot.

slang The convection currents in the atmosphere are like nature's air conditioning.

figurative Just like convection currents distribute heat, ideas can spread and influence people in a similar way.

Grammatical Forms of convection current

plural

convection currents

comparative

more convection current

superlative

most convection current

present tense

convection current

future tense

will be convection current

perfect tense

has been convection current

continuous tense

is being convection current

singular

convection current

positive degree

convection current

infinitive

to convection current

gerund

convection currenting

participle

convection currented

Origin and Evolution of convection current

First Known Use: 1678 year
Language of Origin: Latin
Story behind the word: The term 'convection current' originated from the field of fluid dynamics, specifically in the study of heat transfer and fluid flow.
Evolution of the word: Originally used to describe the movement of fluids in the context of heat transfer, the term 'convection current' has evolved to encompass a broader range of fluid flow phenomena, including atmospheric and oceanic circulation patterns.