952 resultados para Colby student interaction with Waterville Jews


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Some of the themes discussed are: • Civic engagement (2) • The Levine family (2) • High school—private (3) • Colby (4) • Colbystudent interaction with Waterville Jews (5) • Dating (6, 7, 18-20) • Life in Waterville (8, 10) • Life in Waterville—movies (12-13) • Colby—Greek life (9) • Colby—administration (9-10) • Occupation—real estate development (10-12, 13, 17) • Camp—Arcadia (13-14) • Military service (16) • Civic engagement (22) • Jewish education (23) • Holidays (23-24)

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Some of the themes discussed are: • Civic engagement (2) • The Levine family (2) • High school—private (3) • Colby (4) • Colbystudent interaction with Waterville Jews (5) • Dating (6, 7, 18-20) • Life in Waterville (8, 10) • Life in Waterville—movies (12-13) • Colby—Greek life (9) • Colby—administration (9-10) • Occupation—real estate development (10-12, 13, 17) • Camp—Arcadia (13-14) • Military service (16) • Civic engagement (22) • Jewish education (23) • Holidays (23-24)

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Some themes discussed are: • Colby—enrollment (1) • Colby—dating (2, 5) • Colby—Greek Life (2) • Colby—campus life (2-3, 5,8) • Holidays—Christmas (4) • Colbystudent interaction with Waterville Jews (4) • Occupation—economics, psychology (6) • Colby—Winter Carnival (8-9)

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Some themes discussed are: • Colby—enrollment (1) • Colby—dating (2, 5) • Colby—Greek Life (2) • Colby—campus life (2-3, 5,8) • Holidays—Christmas (4) • Colbystudent interaction with Waterville Jews (4) • Occupation—economics, psychology (6) • Colby—Winter Carnival (8-9)

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Some of the themes discussed are: • Civic engagement (2) • The Levine family (2) • High school—private (3) • Colby (4) • Colbystudent interaction with Waterville Jews (5) • Dating (6, 7, 18-20) • Life in Waterville (8, 10) • Life in Waterville—movies (12-13) • Colby—Greek life (9) • Colby—administration (9-10) • Occupation—real estate development (10-12, 13, 17) • Camp—Arcadia (13-14) • Military service (16) • Civic engagement (22) • Jewish education (23) • Holidays (23-24)

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Some themes discussed are: • Colby—enrollment (1) • Colby—dating (2, 5) • Colby—Greek Life (2) • Colby—campus life (2-3, 5,8) • Holidays—Christmas (4) • Colbystudent interaction with Waterville Jews (4) • Occupation—economics, psychology (6) • Colby—Winter Carnival (8-9)

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This paper examines the student use of resources placed on the CMC system for them by the academics in a foundation Management unit of a Bachelor of Commerce degree at one of Australia's largest providers of off campus university education. The findings of this pilot study highlight that the students may not necessarily have the same appreciation of the value of the material that the academics perceive it to have. Also, it would appear that students are choosing to interact with the material at a sub-optimal rate, that in itself may be hampering their own learning experiences.

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Some of the themes discussed are: • Colbystudent life (page 2) • Colby—Greek life (3, 8) • Colbystudent interaction with Waterville Jews (5, 12) • Holidays (6, 9, 12) • Marriage (6) • Colby—Jewish students from away (8) • Levine’s Store (9) • Food (10) • Occupation—woolen mills (11) • Occupation— real estate development (11) • Jewish education (12, 15) • Yiddish (13)

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Some of the themes discussed are: • Colbystudent life (page 2) • Colby—Greek life (3, 8) • Colbystudent interaction with Waterville Jews (5, 12) • Holidays (6, 9, 12) • Marriage (6) • Colby—Jewish students from away (8) • Levine’s Store (9) • Food (10) • Occupation—woolen mills (11) • Occupation— real estate development (11) • Jewish education (12, 15) • Yiddish (13)

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Science centres are one of the best opportunities for informal study of natural science. There are many advantages to learn in the science centres compared with the traditional methods: it is possible to motivate and supply visitors with the social experience, to improve people’s understandings and attitudes, thereby bringing on and attaching wider interest towards natural science. In the science centres, pupils show interest, enthusiasm, motivation, self-confidence, sensitiveness and also they are more open and eager to learn. Traditional school-classes however mostly do not favour these capabilities. This research presents the qualitative study in the science centre. Data was gathered from observations and interviews at Science North science centre in Canada. Pupils’ learning behaviours were studied at different exhibits in the science centre. Learning behaviours are classified as follows: labels reading, experimenting with the exhibits, observing others or exhibit, using guide, repeating the activity, positive emotional response, acknowledged relevance, seeking and sharing information. In this research, it became clear that in general pupils do not read labels; in most cases pupils do not use the guides help; pupils prefer exhibits that enable high level of interactivity; pupils display more learning behaviours at exhibits that enable a high level of interactivity.

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The purpose of this study was to investigate pupils’ knowledge about science and what role science center is playing as a medium of communication to increase knowledge among students. This study also tried to find out pupils’ interaction: how they use science center as a source of scientific information, what they learn from their visit to a science center, their pattern of communication with it. This project also measured attraction, holding and learning power of exhibits of the science center at Dalarna University in Borlänge and learning power of planetarium program and slide show of Stella Nova Planetarium at Dalarna University.The subjects of this study consisted of students of class seven and eight and teachers of an urban school in Borlänge, Sweden. To find out students’ learning in a science center a pre and post visit test were conducted through questionnaires. Interview method by questionnaires was also used to explore pupils’ interaction with science center.The results of this study show that students learn by their visit to a science center but learning was not statistically significant (0.05).Girls learnt better than boys. School classes that have better pre-knowledge about science before a visit to a science center learnt worse than other classes having less pre-knowledge. Girls and boys interact with a science center in different ways. Science center is playing important role as a science communicator.

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This paper examines the role of intuition in the way that people operate unfamiliar devices. Intuition is a type of cognitive processing that is often non-conscious and utilises stored experiential knowledge. Intuitive interaction involves the use of knowledge gained from other products and/or experiences. Two initial experimental studies revealed that prior exposure to products employing similar features helped participants to complete set tasks more quickly and intuitively, and that familiar features were intuitively used more often than unfamiliar ones. A third experiment confirmed that performance is affected by a person's level of familiarity with similar technologies, and also revealed that appearance (shape, size and labelling of features) seems to be the variable that most affects time spent on a task and intuitive uses during that time. Age also seems to have an effect. These results and their implications are discussed.

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The effective atomic number is widely employed in radiation studies, particularly for the characterisation of interaction processes in dosimeters, biological tissues and substitute materials. Gel dosimeters are unique in that they comprise both the phantom and dosimeter material. In this work, effective atomic numbers for total and partial electron interaction processes have been calculated for the first time for a Fricke gel dosimeter, five hypoxic and nine normoxic polymer gel dosimeters. A range of biological materials are also presented for comparison. The spectrum of energies studied spans 10 keV to 100 MeV, over which the effective atomic number varies by 30 %. The effective atomic numbers of gels match those of soft tissue closely over the full energy range studied; greater disparities exist at higher energies but are typically within 4 %.