999 resultados para Electronic booklet
Resumo:
This research here described explores the first phase of a research project whose aim is to introduce a new form of collaboration and communication among the Family and School through an Electronic Booklet (EB), in Spain, in the Galician schools. The EB appears to meet the growing needs of collaboration between the school and the family, promoting the teaching learning process and educational success, supported by the Information and Communication Technologies (ICT). Through a questionnaire we sought to obtain the perceptions of teachers and parents regarding the adoption of an EB. Both groups stressed the importance of communication between the school and the family and expressed interest in EB, as bidirectional communication tool.
Resumo:
A investigação aqui descrita explora a primeira fase de um projecto de investigação, cujo objetivo é introduzir uma nova forma de colaboração e comunicação entre a Escola Família, através de uma Caderneta Eletrónica (CE), em Espanha, nas escolas da Galiza. A CE surge para dar resposta às crescentes necessidades de colaboração entre a Escola e a Família, promovendo o processo ensino-aprendizagem e o sucesso educativo, tendo como suporte as Tecnologias da Informação e da Comunicação (TIC). Através de um questionário procurámos obter a perceção dos Professores e Encarregados de Educação (EE) relativamente à adoção de uma CE. Ambos os grupos salientaram a importância da comunicação entre a Escola e a Família e manifestaram interesse na CE, enquanto instrumento de comunicação bidirecional.
Resumo:
This is a user manual for your electronic assistive technology environmental control system trial pack or in simple words – a few bits of technology that can let you control some household appliances. This information is intended for you, your family and carers.
Resumo:
Visible, near-infrared, IR and Raman spectra of magnesian gaspeite are presented. Nickel ion is the main source of the electronic bands as it is the principal component in the mineral where as the bands in IR and Raman spectra are due to the vibrational processes in the carbonate ion as an entity. The combination of electronic absorption and vibrational spectra (including near-infrared, FTIR and Raman) of magnesian gaspeite are explained in terms of the cation co-ordination and the behaviour of CO32– anion in the Ni–Mg carbonate. The electronic absorption spectrum consists of three broad and intense bands at 8130, 13160 and 22730 cm–1 due to spin-allowed transitions and two weak bands at 20410 and 30300 cm–1 are assigned to spin-forbidden transitions of Ni2+ in an octahedral symmetry. The crystal field parameters evaluated from the observed bands are Dq = 810; B = 800 and C = 3200 cm–1. The two bands in the near-infrared spectrum at 4330 and 5130 cm–1 are overtone and combination of CO32– vibrational modes. For the carbonate group, infrared bands are observed at 1020 cm–1(1 ), 870 cm–1 (2), 1418 cm–1 (3) and 750 cm–1 (4), of which3, the asymmetric stretching mode is most intense. Three well resolved Raman bands at 1571, 1088 and 331 cm–1 are assigned to 3, 1 and MO stretching vibrations.