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annotated bibliography of fisheries economics literature - Office of ...

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economy. The basic model has provided a starting point for a variety <strong>of</strong><br />

extensions and applications exploring a number <strong>of</strong> policy issues. To date,<br />

work has largely focused on issues <strong>of</strong> agricultural trade policy and the effect<br />

<strong>of</strong> alternative domestic policies.<br />

Robinson, William L. (1985). "Effort Management in Australian<br />

Fisheries." A Presentation to the Gulf <strong>of</strong> Mexico Fishery<br />

Management Council, July 10, 34 pp.<br />

A presentation <strong>of</strong> the effort limitation programs in eight <strong>fisheries</strong> in<br />

Australia.<br />

Robson, Arthur J. (1986). "The Existence <strong>of</strong> Nash Equilibria in Reaction<br />

Functions for Dynamic Models <strong>of</strong> Oligopoly." International<br />

Economic Review, 27(3):539-544.<br />

It is not in general possible to satisfy the conditions proposed by<br />

Friedman (1968, 1973, 1976, and 1977) for a Nash equilibrium in reaction<br />

functions.<br />

Roche, Ellie F. and Frederick C. Sutter (1996). Marine Fisheries Initiative<br />

Program (MARFIN). Ninth Annual MARFIN Conference, National Marine<br />

Fisheries Service, Cooperative Programs Division, 9721 Executive Center<br />

Drive North, Southeast Regional <strong>Office</strong>, St. Petersburg, Florida,<br />

November 6-7.<br />

Abstracts <strong>of</strong> cooperative agreement reports presented at the ninth annual<br />

MARFIN conference covering shrimp bycatch, highly migratory pelagic species,<br />

reef fish, and coastal herrings.<br />

Rockett, Andrew M. and John C. Stevenson (1987). "Karmarkar's<br />

Algorithm." Byte, September: 146-160.<br />

A description <strong>of</strong> Karmarkar's algorithm for solving linear programming<br />

problems and an explanation <strong>of</strong> how it differs from the simplex method.<br />

Rockland, David Ben (1983). "An Economic Analysis <strong>of</strong> Delaware's<br />

Recreational/Commercial Fisheries Conflict." Dissertation,<br />

Department <strong>of</strong> Marine Studies, University <strong>of</strong> Delaware, Newark,<br />

Delaware.<br />

This dissertation analyses the economic impact <strong>of</strong> recreational and<br />

commercial gray seatrout fishermen on the state <strong>of</strong> Delaware. Consumer surplus<br />

from recreational fishing is estimated to be between $13 and $25 million while<br />

producer and consumer surplus from the commercial gillnet fishery is over<br />

$875,000. The economic impact <strong>of</strong> the recreational fishery is almost $13<br />

million and $3.3 million for the commercial fishery. Since the biological and<br />

technical relationships between the catches <strong>of</strong> the two sectors cannot be<br />

determined, it is not possible to derive an optimal allocation <strong>of</strong> fish between<br />

them.<br />

Rodgers, Philip (1995). The Bio-Economic Simulation Model <strong>of</strong> the<br />

Catching Sector <strong>of</strong> the Irish Sea Fishery. In, Bio-Economic<br />

Modelling in the EU, Concerted Action Coordination <strong>of</strong> Research in<br />

Fishery Economics, Working Document Nr: 7,(AIR CT94 1489),<br />

Workshop, Edinburgh, October: 44-51.<br />

This model describes the conceptual structure <strong>of</strong> a thorough going<br />

bioeconomic model <strong>of</strong> the Irish Sea multispecies multi-method fishery that<br />

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