| Hint | Answer | % Correct |
|---|---|---|
| % of oceans | 1 | 0%
|
| Number of species under CITES +appendix | 2000, II | 0%
|
| Most discovered after | 2010 | 0%
|
| % of marine species | 25 | 0%
|
| Optimum temperaure | 25-29 | 0%
|
| Artificial reefs in the Gulf of Mexico | 400 oil rigs | 0%
|
| % food from algae | 95 | 0%
|
| Types of pollution | Acid | 0%
|
| Importance | Biodiversity | 0%
|
| Species exploited | Blue Whiting | 0%
|
| Excess CO2 is incorporated into | Calcite exoskeletons | 0%
|
| Importance of constant salinity | Cannot regulate water concentration in cells | 0%
|
| MPA example +location | Chagos Islands, Indian Ocean | 0%
|
| Biodiversity requires... | Chemical defence mechanisms | 0%
|
| Nutrition system | Cilia trap plankton | 0%
|
| Threats | Climate change | 0%
|
| Importance | Climate control | 0%
|
| Phylum | Cnidaria | 0%
|
| Threats | Coastal development | 0%
|
| Distribution | Coastlines | 0%
|
| Biodiversity increases... | Competition | 0%
|
| Artificial reef materials | Concrete structures | 0%
|
| Ecological features | Constant salinity | 0%
|
| Conservation efforts | Control of damaging activities | 0%
|
| Species exploited (3) | Crustaceans, fish, molluscs | 0%
|
| SAC example +country | Darwin Mounds, Scotland | 0%
|
| H4 | Deep water coral reefs | 0%
|
| Conservation efforts | Designated Protected Areas | 0%
|
| Conservation efforts | Designated Protected Areas | 0%
|
| Importance | Ecotourism | 0%
|
| Conservation efforts | Education | 0%
|
| Distribution | Equatorial | 0%
|
| Importance | Erosion protection | 0%
|
| Damaging activities | Exploitation | 0%
|
| Importance | Fisheries | 0%
|
| Damaging activities | Fishing | 0%
|
| Overfishing can effect | Food webs | 0%
|
| Overfishing of ____ _____ increased ____ __ ____ ______ populations to increase, the biggest destroyer of the ____ ______ ____ | Giant Triton, Crown of Thorns starfish, Great Barrier Reef | 0%
|
| Distribution | Globally | 0%
|
| MPA example | Great Barrier Reef | 0%
|
| Ecological features | High light levels | 0%
|
| Ecological features | Immersion | 0%
|
| Types of pollution | Inorganic | 0%
|
| Overfishing can effect | Interspecies relationships | 0%
|
| Threats | Introduced species | 0%
|
| Ecological features | Low light levels | 0%
|
| Ecological features | Low nutrients | 0%
|
| Easy to over-exploit due to... | Low reproductive rates | 0%
|
| Ecological features | Low temperatures | 0%
|
| Ecological features | Low turbidity | 0%
|
| Importance | Medicinal discoveries | 0%
|
| Nutrition system | Nematocysts harpoon plankton | 0%
|
| NTZs | No Take Zones | 0%
|
| Ecological features | No zooxanthellae | 0%
|
| Threats | Ocean acidification | 0%
|
| Types of pollution | Oil | 0%
|
| Threats | Oil and gas exploration | 0%
|
| Artificial reef materials | Old ships | 0%
|
| Species exploited | Orange Roughy | 0%
|
| Threats | Overfishing | 0%
|
| Optimum light zone | Photic | 0%
|
| Threats | Physical damage | 0%
|
| Threats | Pollution | 0%
|
| Biodiversity increases... | Predator-prey relationships | 0%
|
| Changes from the _____ __ ________ causes ____ which _____ __________, causing ________ and _____ | Range of tolerance, stress, expells zooxanthellae, bleaching, death | 0%
|
| The ___ _______ was introduced to the _______ in the ____ and became a _______ to many _________ species | Red Lionfish, Caribbean, 1990s, predator, indigenous | 0%
|
| Effects of turbidity | Reduced light penetration | 0%
|
| Conservation efforts | Reef creation | 0%
|
| Useful enzyme used to control asthma | Secosteroids | 0%
|
| Threats | Sedimentation | 0%
|
| Ecological features | Slow growth | 0%
|
| Effects of turbidity | Smothering | 0%
|
| Threats | Souvenirs | 0%
|
| Immersion importance | Submersion prevents drying | 0%
|
| Nutrition system | Symbiotic photosynthetic algae | 0%
|
| Threats | Tourism | 0%
|
| Damaging activities | Tourism | 0%
|
| Threats | Trawling | 0%
|
| H3 | Tropical coral reefs | 0%
|
| Ecological features | Warm, stable temperatures | 0%
|
| Name of algae | Zooxanthellae | 0%
|