Difference between revisions of "Red Shift"
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:[https://www.amazon.co.uk/gp/product/1782945970/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=1782945970&linkCode=as2&tag=nrjc-21&linkId=a120d24dcc7cc7a58192069a3aafc1d2 ''Red-shift, page 322, GCSE Physics; The Complete 9-1 Course for AQA, CGP, AQA ''] | :[https://www.amazon.co.uk/gp/product/1782945970/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=1782945970&linkCode=as2&tag=nrjc-21&linkId=a120d24dcc7cc7a58192069a3aafc1d2 ''Red-shift, page 322, GCSE Physics; The Complete 9-1 Course for AQA, CGP, AQA ''] | ||
:[https://www.amazon.co.uk/gp/product/019835939X/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=019835939X&linkCode=as2&tag=nrjc-21&linkId=57e96876985fc39b1a3d8a3e3dc238b6 ''Red-shift, pages 238-239, GCSE Physics; Third Edition, Oxford University Press, AQA ''] | :[https://www.amazon.co.uk/gp/product/019835939X/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=019835939X&linkCode=as2&tag=nrjc-21&linkId=57e96876985fc39b1a3d8a3e3dc238b6 ''Red-shift, pages 238-239, GCSE Physics; Third Edition, Oxford University Press, AQA ''] | ||
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+ | ====Edexcel==== | ||
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+ | :[https://www.amazon.co.uk/gp/product/1782945733/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=1782945733&linkCode=as2&tag=nrjc-21&linkId=2a2dbec9db6bf5766c0458d908fa0a52 ''Red-shift, page 61, GCSE Physics; The Revision Guide, CGP, Edexcel ''] | ||
+ | :[https://www.amazon.co.uk/gp/product/1292120223/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=1292120223&linkCode=as2&tag=nrjc-21&linkId=068ecf40278c32406a7f1c6e66751417 ''Red-shift, pages 124-125, GCSE Physics, Pearson Edexcel ''] | ||
+ | :[https://www.amazon.co.uk/gp/product/1782948163/ref=as_li_tl?ie=UTF8&camp=1634&creative=6738&creativeASIN=1782948163&linkCode=as2&tag=nrjc-21&linkId=0fdbfd5dd397d6e24a9dfb250f08587f ''Red-shift, pages 191-193, GCSE Physics, CGP, Edexcel ''] |
Revision as of 06:46, 28 November 2019
Key Stage 4
Meaning
Red shift is the apparent change in the visible spectrum from an object towards the red end due to the object moving away from the observer.
About Red Shift
- Red shift can be seen by observing the absorption spectra in light coming from an object. If the object is moving away from the observer the absorption lines will be shifted towards the red end of the spectrum.
The absorption lines from a star have been red shifted showing that the star is moving away from the observer. |
References
AQA
- Red shift, pages 275, 288-9, GCSE Physics; Student Book, Collins, AQA
- Red-shift, page 256, GCSE Physics, Hodder, AQA
- Red-shift, page 322, GCSE Physics; The Complete 9-1 Course for AQA, CGP, AQA
- Red-shift, pages 238-239, GCSE Physics; Third Edition, Oxford University Press, AQA