Spatial and foveal biases, not perceived mass or heaviness, explain the effect of target size on representational momentum and representational gravity.

N De Sá Teixeira, AM Oliveira - Journal of Experimental …, 2014 - psycnet.apa.org
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

[PDF][PDF] Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size on Representational Momentum and Representational Gravity

NDS Teixeira, AM Oliveira - 2014 - researchgate.net
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

[PDF][PDF] Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size on Representational Momentum and Representational Gravity

NDS Teixeira, AM Oliveira - 2014 - academia.edu
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

Spatial and foveal biases, not perceived mass or heaviness, explain the effect of target size on representational momentum and representational gravity.

N De Sá Teixeira, AM Oliveira - Journal of Experimental …, 2014 - psycnet.apa.org
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

Spatial and foveal biases, not perceived mass or heaviness, explain the effect of target size on representational momentum and representational gravity

NDS Teixeira, AM Oliveira - Journal of experimental …, 2014 - pubmed.ncbi.nlm.nih.gov
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

[引用][C] Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size on Representational Momentum and Representational Gravity

N DE SA TEIXEIRA… - Journal of experimental …, 2014 - pascal-francis.inist.fr
Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size
on Representational Momentum and Representational Gravity CNRS Inist Pascal-Francis CNRS …

Spatial and foveal biases, not perceived mass or heaviness, explain the effect of target size on representational momentum and representational gravity.

N De Sá Teixeira, AM Oliveira - Journal of Experimental psychology …, 2014 - europepmc.org
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size on Representational Momentum and Representational Gravity.

SÃ De, N Teixeira, AMÃ Oliveira - Journal of Experimental Psychology …, 2014 - ERIC
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

Spatial and Foveal Biases, Not Perceived Mass or Heaviness, Explain the Effect of Target Size on Representational Momentum and Representational Gravity

NDS Teixeira, AM Oliveira - 2014 - search.proquest.com
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …

Spatial and foveal biases, not perceived mass or heaviness, explain the effect of target size on representational momentum and representational gravity.

N De Sá Teixeira, AM Oliveira - Journal of …, 2014 - search.pdh.ebscohost.com
The spatial memory for the last position occupied by a moving target is usually displaced
forward in the direction of motion. Interpreted as a mental analogue of physical momentum …