Lp. |
T [s] |
Hg [m] |
Hp [m] |
λp1 [m] |
λp2 [m] |
λg [m] |
Cwp1 [m/s] |
Cwp2 [m/s] |
Cwg [m/s] |
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g |
hp |
hg |
1. |
0,832 |
0,53 |
0,05 |
1,12 |
1,056 |
1,081 |
1,269 |
1,255 |
1,299 |
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9,81 |
0,375 |
1,5 |
2. |
1,04 |
0,47 |
0,06 |
1,56 |
1,540 |
1,689 |
1,481 |
1,412 |
1,624 |
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3. |
1,477 |
0,61 |
0,075 |
1,92 |
2,504 |
3,406 |
1,696 |
1,455 |
2,288 |
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4. |
1,455 |
0,48 |
0,075 |
2,05 |
2,457 |
3,305 |
1,689 |
1,457 |
2,257 |
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5. |
1,315 |
0,66 |
0,09 |
2,52 |
2,154 |
2,700 |
1,638 |
1,464 |
2,049 |
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<- okres bez zmian, amplituda zwiekszona, fala podwyzszona |
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1,5 |
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Hg- wysokosc fali glebokiej z odczytu (woda gł. hg=1,5 m) |
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w |
f(w) |
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Hp- wysokosc fali plytka ze zdjecia (woda płyt, hg=0,375m) |
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2,18009462658986 |
9,62324845777701 |
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vtaki chyba mamy mieć wniosek, że fala się skraca na plytkiej wodzie, więc to jest możliwe |
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λg- długosc fali na wodzie glebokiej |
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1,39526056101751 |
3,54118184947235 |
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λp -dlugosc fali ze zdjecia (woda plyt) |
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0,691768856978998 |
1,70120002772576 |
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0,712846481641236 |
1,73308298381928 |
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Im dlugość fali plytkiej wzrasta to razem z nią rośnie prędkość fali |
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λg- ze wzorow |
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0,872711083171096 |
2,00813693343152 |
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Cwp1= λp/T |
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Cwg analogicznie |
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7,552 |
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6,042 |
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4,254 |
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4,318 |
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4,778 |
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