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Fig. 12-CO, p. 315

Fig. 12-CO, p. 315. Fig. 12-1a, p. 317. Post-Glacial Sea Level Rise. 0. 0. 20. 75. 40. 150. Sea level change (m) from present day. 60. Sea level change (ft) from present day. 225. 80. 300. 100. 375. 120. 450. 140. 20. 18. 16. 14. 12. 10. 8. 6. 4. 2. 0.

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Fig. 12-CO, p. 315

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  1. Fig. 12-CO, p. 315

  2. Fig. 12-1a, p. 317

  3. Post-Glacial Sea Level Rise 0 0 20 75 40 150 Sea level change (m) from present day 60 Sea level change (ft) from present day 225 80 300 100 375 120 450 140 20 18 16 14 12 10 8 6 4 2 0 Thousands of years ago Fig. 12-1a, p. 317

  4. Fig. 12-1b, p. 317

  5. Sea Level Projections 80 30 70 25 60 20 50 40 15 Sea level rise (inch) Sea level rise (cm) 30 10 20 5 10 Observations 0 0 −10 −5 1950 1975 2000 2025 2050 2075 2100 Fig. 12-1b, p. 317

  6. Fig. 12-2a, p. 318

  7. Fig. 12-2b, p. 318

  8. Fig. 12-3, p. 319

  9. Fig. 12-4a, p. 319

  10. Blowhole Headland Sea cliffs Sea stack Sea cave Exposed beach Sea arch Wave-cut platform Sediments Fig. 12-4a, p. 319

  11. Fig. 12-4b, p. 319

  12. Fig. 12-4c, p. 319

  13. Original land surface Sea cliff Wave-cut platform Notch eroded by waves Fig. 12-4c, p. 319

  14. Fig. 12-4d, p. 319

  15. Fig. 12-5, p. 320

  16. Wave crests Wave energy converging on headlands Wave energy diverging Sediment movement Quiet beach Quiet beach Fig. 12-5, p. 320

  17. Fig. 12-6, p. 321

  18. Fig. 12-7, p. 321

  19. Fig. 12-8, p. 322

  20. Fig. 12-9, p. 322

  21. Fig. 12-10, p. 322

  22. Fig. 12-11, p. 323

  23. Fig. 12-12, p. 323

  24. Table 12-1, p. 324

  25. Fig. 12-13, p. 324

  26. Shallow-water wave A To shore B Fig. 12-13, p. 324

  27. Fig. 12-14, p. 325

  28. Back-shore Fore-shore Nearshore (through breakers) Dunes Offshore Beach scarp Berms Berm crest Longshore trough High tide Longshore bars Low tide (dotted line) Fig. 12-14, p. 325

  29. Fig. 12-15a, p. 325

  30. Fig. 12-15b, p. 325

  31. Fig. 12-16a, p. 326

  32. Upper limit of wave action Surf zone Longshore current Path followed by sand grains Direction of wave approach Fig. 12-16a, p. 326

  33. Fig. 12-16b, p. 326

  34. Fig. 12-17, p. 327

  35. Fig. 12-18a, p. 328

  36. Coastal cell Cliff erosion River input Major river forming a delta Longshore transport Rocky point River input Submarine canyon Sediment entering longshore transport system Sediment movement down continental shelf and slope Sediment transport to ocean basin within a submarine canyon Fig. 12-18a, p. 328

  37. Fig. 12-18b, p. 328

  38. N Santa Monica Malibu Los Angeles Redondo Long Beach Palos Verdes Huntington Newport Laguna Santa Cruz Island Submarine canyon Oceanside Longshore drift Santa Catalina Island Rocky headlands 50 0 San Clemente Island km Fig. 12-18b, p. 328

  39. Fig. 12-18c (1), p. 328

  40. W– Cliff Surf zone C+ Beach O+ V+ V– O– Fig. 12-18c (1), p. 328

  41. Fig. 12-18c (2), p. 328

  42. Fig. 12-19, p. 329

  43. Longshore current Sand spit Bay mouth bar Barrier island Bay Inlet Sea island Bay Tombolo Lagoon Beach Fig. 12-19, p. 329

  44. Fig. 12-20, p. 329

  45. Fig. 12-21, p. 329

  46. Fig. 12-22, p. 330

  47. Isle of Wight Bay Fenwick Island N Ocean City Ocean City Inlet MARYLAND Upper Sinepuxent Neck Atlantic Ocean Position of shoreline 1980 Assateague Island 1849 Sinepuxent Bay km 0 1 2 0 .62 1.24 mi Fig. 12-22, p. 330

  48. Box 12-1a, p. 331

  49. Box 12-1b, p. 331

  50. Fig. 12-23a, p. 332

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