The study found that both fisheries harvest squid at the same stage of life, with two main spawning periods. The data suggest that conservation efforts need to be jointly pursued for both fisheries to maintain the spawning cycle.
The Vetlesen Foundation has awarded a grant to the University of Rhode Island Graduate School of Oceanography for the acquisition of equipment for studying sediment cores in global change research. This funding will enable researchers to further understand climate history and processes that may influence future changes.
Researchers will investigate the cause of substantial increases in Mnemiopsis leidyi population and determine the effects on coastal ecosystems. The study aims to understand the impacts of climate change on zooplankton populations and the local fishing industry.
Chris Kincaid of the University of Rhode Island's Graduate School of Oceanography has received a $143,000 NSF grant to study subduction zones and their impact on volcanic arcs and seismicity. The project aims to develop 3D models of subduction using laboratory apparatus, enhancing our understanding of mantle dynamics.
A recent study found that warmer water temperatures in Narragansett Bay result in 10-16% fewer winter flounder larvae surviving to the metamorphosis stage. The increase in temperature also affects the availability of food for higher-level organisms, leading to increased predation rates.
The TRANSMAP system combines land and marine data to provide real-time information on road conditions and weather forecasts. It allows users to view current and historic data from multiple sensors, as well as overlay maps from the state's Geographic Information System.
The Oceanography Society honors John Knauss, former dean of the University of Rhode Island Graduate School of Oceanography, for his groundbreaking work on fellowship programs and oceanographic education. The journal issue features articles on topics that interest Knauss, including the Law of the Sea and current research in the Pacific.
A meta-analysis of 39 impact studies reveals that bottom fishing gear types significantly affect sediment organism disturbance. Inter-tidal dredging causes the most negative impact, followed by scallop and inter-tidal raking.