The Experts below are selected from a list of 321 Experts worldwide ranked by ideXlab platform

Wicaksono, Tejo Sakti - One of the best experts on this subject based on the ideXlab platform.

  • Pengaruh Leader Member Exchange Dan Pengembangan Karir Terhadap Kinerja Agen Pada PT. Tokio Marine Life Insurance Cabang Samarinda
    'Faculty of Economics and Business Mulawarman University', 2019
    Co-Authors: Wicaksono, Tejo Sakti
    Abstract:

    Tejo Sakti Wicaksono, 2017. The Influence of Leader Member Exchange and Career Development Toward Agent Performance (Srudy Of PT. Tokio Marine Life Insurance Samarinda Branch). Under the guidance of Prof. Dr. Sukisno Selamet Riadi and Dr. Dirga Lestari AS, S.E., M.Si. This Study aimed to test whether leader member exchange and career development to agent performance on employees of PT. Tokio Marine Life Insurance Samarinda Branch. Independent variabel in this study is the leader member exchange and career development. The dependent variabel is agent performance. This research was conducte on agent of PT. Tokio Marine Life Insurance Samarinda Branch consisting of 65 respondents.This type research is quantitative research. Method data collection using the questionnaire. Data analysis using multiple linear regression. The results showed that leader member exchange and career development is positive and significant effect towards agent performance.Keywords: Leader Member Exchange, Career Development and Agent Performanc

Ken Hollingshead - One of the best experts on this subject based on the ideXlab platform.

Etienne Rivot - One of the best experts on this subject based on the ideXlab platform.

  • Evidence for spatial coherence in time trends of Marine Life history traits of Atlantic salmon in the North Atlantic
    Fish and Fisheries, 2019
    Co-Authors: Maxime Olmos, Félix Massiot-granier, Etienne Prévost, Gerald Chaput, Ian R Bradbury, Marie Nevoux, Etienne Rivot
    Abstract:

    A hierarchical Bayesian Life cycle model is presented that considers spatial covariation of Marine Life history traits of Atlantic salmon (Salmo salar) populations in the North Atlantic. The model is based on a collective analysis of the dynamics of 13 stock units (SUs) from two continental stock groups (CSGs) in North America and Southern Europe in a single hierarchical model over the period 1971–2014. The model sets up a new assessment framework for Atlantic salmon stocks. It also provides a framework to investigate the drivers of changes in Atlantic salmon population dynamics including disentangling the effects of fisheries from those of environmental factors in a hierarchy of spatial scales. It is used to test the hypothesis of a strong spatial synchrony in Marine Life history dynamics of Atlantic salmon populations. The trends in two key parameters associated with the early Marine phase of the Life cycle are estimated: (i) the Marine survival during the first summer–autumn spent at sea and (ii) the proportion of fish maturing after the first winter at sea. The results provide evidence of a decline in the Marine survival together with an increase in the proportion of fish that mature after the first winter at sea, common to all SUs. Our results show an increased coherence in the covariations of trends in these two Marine Life history traits related to geographic proximity of SUs which support the hypothesis of a coherent response of geographically proximate Atlantic salmon populations that likely share similar migration routes.

Lynnath E. Beckley - One of the best experts on this subject based on the ideXlab platform.

  • Two oceans: A guide to the Marine Life of southern Africa
    2008
    Co-Authors: George M. Branch, Charles L. Griffiths, M.l. Branch, Lynnath E. Beckley
    Abstract:

    Description: This unrivalled field guide covers over 1,400 species of the most common forms of Marine Life that inhabit our coasts'including the invertebrates, fish, reptiles, mammals birds and plants. The book documents a selection of these, concentrating on the most frequently encountered species living in the intertidal zone and in shallow subtidal waters that can readily be explored by scuba divers. There is a particular focus on open-coast beaches and rocky shores, and aquatic estuarine animals and plants are also covered. Fish that are commonly seen in tidal pools or by divers, or those frequently caught by angers are included, as are smaller rock-pool fish. It will meet the needs of scientists, students, fishermen, scuba divers and beachcombers alike, encapsulating current knowledge and enabling the identification of diverse species, from sponges to whales and from seaweeds to mangroves.

  • Two Oceans: A guide to the Marine Life of southern Africa
    1994
    Co-Authors: George M. Branch, Charles L. Griffiths, M.l. Branch, Lynnath E. Beckley
    Abstract:

    The guide intends to facilitate the identification of the most common forms of Marine Life that inhabit southern African coasts. Invertebrates, fish, reptiles, mammals and plants, are included. In particular, focus is on the Life of open coast beaches and rocky shores, and the most frequently encountered species that live in the intertidal zone and in shallow subtidal waters that can be readily explored by scuba-divers are covered. More than 1400 species are included, being presented in taxonomic groups according to the classification system of the animal and plant kingdoms. Most species are illustrated with colour photographs, and descriptive notes are given regarding identification, size, biology, maps, and related species.

James R Clark - One of the best experts on this subject based on the ideXlab platform.

  • Marine microplastic debris a targeted plan for understanding and quantifying interactions with Marine Life
    Frontiers in Ecology and the Environment, 2016
    Co-Authors: James R Clark, Matthew Cole, Penelope K Lindeque, Elaine S Fileman, J C Blackford, Ceri Lewis, Timothy M Lenton, Tamara S Galloway
    Abstract:

    Microscopic plastic (microplastic) debris is a Marine pollutant that threatens aquatic biota and ecosystems. Microplastics have been detected throughout the world's oceans; however, the relative importance of different processes that control the spatial distribution and long-term fate of microplastics in the Marine environment remains largely unknown. Results from laboratory and field studies indicate that interactions between microplastic debris and Marine organisms may play an important role in redistributing plastic in the oceans. We provide an overview of the various mechanisms through which Marine Life and microplastics can interact. By considering coupled physical–biological processes, we also identify regions where these interactions are most likely to occur, and outline a new research agenda that aims to determine their prevalence in the Marine environment. We hypothesize that biological interactions are key to understanding the movement, impact, and fate of microplastics in the oceans.