Movie:Winter Waves: Difference between revisions

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{{Attribute movie1
{{Attribute movie1
|Movie domain = coastal
|Movie domain=coastal
}}
}}
{{Attribute movie2
{{Attribute movie2
|Movie keywords = waves
|Movie keywords=waves
}}
}}
{{Attribute movie2
{{Attribute movie2
|Movie keywords = beach
|Movie keywords=beach
}}
}}
{{Attribute movie3
{{Attribute movie3
|First name contributor=unknown
|First name contributor=unknown
|Last name contributor =unknown
|Last name contributor=unknown
|Location movie=beach
|Location movie=beach
|Timespan movie=seasonal
|Timespan movie=seasonal
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{{Movie description
{{Movie description
|Grade level=Middle (6-8), High (9-12)
|Grade level=Middle (6-8), High (9-12)
|One-line movie description = beach profile under winter conditions
|One-line movie description=beach profile under winter conditions
|Extended movie description=Animation of waves affecting a beach profile during winter. This animation is typical for example for California.
|Extended movie description=Animation of waves affecting a beach profile during winter. This animation is typical for example for California.
}}
}}

Latest revision as of 16:40, 21 June 2017

Information Page: Winter Waves

Play Animation


Beach Profile under winter conditions



Key Attributes

Domain: coastal
Keywords: waves
Keywords: beach
Model name: Animation model name
Name: unknown, unknown
Where: beach
When: seasonal


Short Description

Grade level: Middle (6-8), High (9-12)

Statement: beach profile under winter conditions

Abstract: Animation of waves affecting a beach profile during winter. This animation is typical for example for California.

Theory

An equilibrium winter beach profile results from more intense wave forcing during the winter. High winter wave conditions move sand away from the beach, cutting a wave platform. Unusually large storms may move all sands into deep water and leave skinny beaches for the early summer season.

Summer waves move sand back onshore (see associated animation) both summer and winter beach profiles are expressions of the seasonal cycle of wave energy.

Links

References



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