Found 4840 Hypotheses across 484 Pages (0.005 seconds)
  1. Area of space used per individual is smaller with greater availability of aquatic resources.Hamilton, Marcus J. - Nonlinear scaling of space use in human hunter-gatherers, 2007 - 2 Variables

    Using a representative sample of 339 hunter-gatherer societies, researchers examine the relationship between hunter-gatherer use of space, size of population and supply of resources to see if they are similar to other organisms. By combining all factors into a single model, the authors claim to explain 86% of the variation in home range. Hunters have greater resource distribution than gatherers but both more so than aquatic foragers. Lastly, terrestrial foragers have more extensive home ranges than aquatic foragers.

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  2. Home range is smaller with increasing actual transpiration.Hamilton, Marcus J. - Nonlinear scaling of space use in human hunter-gatherers, 2007 - 2 Variables

    Using a representative sample of 339 hunter-gatherer societies, researchers examine the relationship between hunter-gatherer use of space, size of population and supply of resources to see if they are similar to other organisms. By combining all factors into a single model, the authors claim to explain 86% of the variation in home range. Hunters have greater resource distribution than gatherers but both more so than aquatic foragers. Lastly, terrestrial foragers have more extensive home ranges than aquatic foragers.

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  3. Terrestrial foragers will have greater activation energy from their diets than aquatic foragers.Hamilton, Marcus J. - Nonlinear scaling of space use in human hunter-gatherers, 2007 - 2 Variables

    Using a representative sample of 339 hunter-gatherer societies, researchers examine the relationship between hunter-gatherer use of space, size of population and supply of resources to see if they are similar to other organisms. By combining all factors into a single model, the authors claim to explain 86% of the variation in home range. Hunters have greater resource distribution than gatherers but both more so than aquatic foragers. Lastly, terrestrial foragers have more extensive home ranges than aquatic foragers.

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  4. Hunters will have greater resource ranges than gatherers.Hamilton, Marcus J. - Nonlinear scaling of space use in human hunter-gatherers, 2007 - 2 Variables

    Using a representative sample of 339 hunter-gatherer societies, researchers examine the relationship between hunter-gatherer use of space, size of population and supply of resources to see if they are similar to other organisms. By combining all factors into a single model, the authors claim to explain 86% of the variation in home range. Hunters have greater resource distribution than gatherers but both more so than aquatic foragers. Lastly, terrestrial foragers have more extensive home ranges than aquatic foragers.

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  5. Aquatic foragers will have less space per person than hunters and gatherers.Hamilton, Marcus J. - Nonlinear scaling of space use in human hunter-gatherers, 2007 - 2 Variables

    Using a representative sample of 339 hunter-gatherer societies, researchers examine the relationship between hunter-gatherer use of space, size of population and supply of resources to see if they are similar to other organisms. By combining all factors into a single model, the authors claim to explain 86% of the variation in home range. Hunters have greater resource distribution than gatherers but both more so than aquatic foragers. Lastly, terrestrial foragers have more extensive home ranges than aquatic foragers.

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  6. "There is wide variation in tightness-looseness that is distinct from other dimensions of culture, such as individualism-collectivism" (7990).Harrington, Jesse R. - Tightness-looseness across the 50 united states, 2014 - 2 Variables

    Authors contend that many of the differences across the 50 states can be attributed to the degree to which social entities are "tight" (have many strongly enforced rules and little tolerance to deviance) or "loose" (have few strongly enforced rules and greater tolerance for deviance). Significant correlations were found between many state characteristics and tightness-looseness.

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  7. Languages with larger speaker populations had higher rates of gain of new words than did their smaller sister languages (2100).Bromham, Lindell - Rate of language evolution is affected by population size, 2012 - 2 Variables

    Population size is generally assumed to play a pivotal role in the evolution of languages and cultures, but the expected patterns and potential mechanisms of change are unsettled. Theoretical models are limited by this uncertainty because they require making prior assumptions about language evolution. Using a sample of 20 Polynesian languages, authors test the effect of population size on the gain, loss, and total change of basic vocabulary words.

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  8. Languages with a smaller number of speakers had higher rates of loss of lexemes from basic vocabulary than did their larger sister languages (2100).Bromham, Lindell - Rate of language evolution is affected by population size, 2012 - 2 Variables

    Population size is generally assumed to play a pivotal role in the evolution of languages and cultures, but the expected patterns and potential mechanisms of change are unsettled. Theoretical models are limited by this uncertainty because they require making prior assumptions about language evolution. Using a sample of 20 Polynesian languages, authors test the effect of population size on the gain, loss, and total change of basic vocabulary words.

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  9. Total rate of change (word gain plus word loss) is related to population size.Bromham, Lindell - Rate of language evolution is affected by population size, 2012 - 2 Variables

    Population size is generally assumed to play a pivotal role in the evolution of languages and cultures, but the expected patterns and potential mechanisms of change are unsettled. Theoretical models are limited by this uncertainty because they require making prior assumptions about language evolution. Using a sample of 20 Polynesian languages, authors test the effect of population size on the gain, loss, and total change of basic vocabulary words.

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  10. Tight states will exhibit greater conscientiousness and lower openness compared to loose states (7993).Harrington, Jesse R. - Tightness-looseness across the 50 united states, 2014 - 3 Variables

    Authors contend that many of the differences across the 50 states can be attributed to the degree to which social entities are "tight" (have many strongly enforced rules and little tolerance to deviance) or "loose" (have few strongly enforced rules and greater tolerance for deviance). Significant correlations were found between many state characteristics and tightness-looseness.

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