94
W. Chu et al.
Acknowledgements This study is supported by China Scholarship Council and Machine Design
Division at Linköping University. We gratefully acknowledge the time and contributions of all the
study participants and reviewers. And the IAPRI/PepsiCo Scholarship for funding the research stay
in Australia.
References
Aguayo C, Eames C (2017) Promoting community socio-ecological sustainability through
technology: a case study from Chile. Int Rev Educ 63(6):871–895
Bengtsson M, Ruiz J, Wever R (2018) This is how we roll; A play on creative thought and the
generation of novelty. In: Conference on meaningful play 2018
Berlin C, Blig ´ lrd LO, Simonsen E (2017) Using the ACD3-ladder to manage multi-phase
requirements on end-user products. In: ICED
Blackler F, Crump N, McDonald S (1999) Managing experts and competing through innovation:
an activity theoretical analysis. Organization 6(1):5–31
Bødker S, Klokmose CN (2011) The human-artifact model: an activity theoretical approach to
artifact ecologies. Human Comput Interact 26(4):315–371
Chu W, Steenstra P, Glad W, Wever R (2018) Understanding context change: An activity theoretical
analysis of exchange students’ food consumption. In: NordDesign 2018
Chu W, Wever R, Verghese K, Williams H (2019) Thinking on the box: design on-pack information
attributes to influence consumers’ food waste behavior. In: 29th IAPRI symposium
Clemmensen T, Kaptelinin V, Nardi B (2016) Making HCI theory work: an analysis of the use of
activity theory in HCI research. Behav Inf Technol 35(8):608–627
Colusso L, Do T, Hsieh G (2018) Behavior change design sprints. In: proceedings of DIS 2018
Desai G (2007) Activity theory: a framework for ethnographic research for industrial design. In:
E&PDE 2007
DiSalvo C, Sengers P, Brynjarsdóttir H (2010) Mapping the landscape of sustainable HCI. In:
Conference on human factors in computing systems
Döweling S, Schmidt B, Göb A (2012) A model for the design of interactive systems based on
activity theory. In: ACM conference on CSCW
Duignan M, Noble J, Biddle R (2006) Activity theory for design: from checklist to interview. IFIP
Int Fed Inf Process
Engeström Y (2014) Learning by expanding: an activity-theoretical approach to developmental
research, 2nd edn
Fjeld M, Lauche K, Bichsel M, Voorhorst F, Krueger H, Rauterberg M (2002) Physical and virtual
tools: activity theory applied to the design of groupware. CSCW 11(1–2):153–180
Gay G, Hembrooke H (2004) Activity-centered design: an ecological approach to designing smart
tools and usable systems. MIT press
Glad W (2015) The design of energy efficient everyday practices. Eceee 2015:1611–1619
Hasan H, Smith S, Finnegan P (2017) An activity theoretic analysis of the mediating role of
information systems in tackling climate change adaptation. Inf Syst J 27(3):271–308
Hilty L, Lohmann W, Huang E (2011) Sustainability and ICT—an overview of the field. Politeia
27(104):13–28
Hoffmann D, Müller T, Ahlemann F (2017) Balancing alignment, adaptivity, and effectiveness:
design principles for sustainable IT project portfolio management
Irestig M, Eriksson H, Timpka T (2004) The impact of participation in information system design:
a comparison of contextual placements. In: PDC 2004
Kaptelinin V, Nardi B (2006) Acting with technology: activity theory and interaction design
Kaptelinin V, Nardi B (2012) Activity theory in HCI: fundamentals and reflections. Synth Lect
Human-Centered Inf 5(1):1–105
W. Chu et al.
Acknowledgements This study is supported by China Scholarship Council and Machine Design
Division at Linköping University. We gratefully acknowledge the time and contributions of all the
study participants and reviewers. And the IAPRI/PepsiCo Scholarship for funding the research stay
in Australia.
References
Aguayo C, Eames C (2017) Promoting community socio-ecological sustainability through
technology: a case study from Chile. Int Rev Educ 63(6):871–895
Bengtsson M, Ruiz J, Wever R (2018) This is how we roll; A play on creative thought and the
generation of novelty. In: Conference on meaningful play 2018
Berlin C, Blig ´ lrd LO, Simonsen E (2017) Using the ACD3-ladder to manage multi-phase
requirements on end-user products. In: ICED
Blackler F, Crump N, McDonald S (1999) Managing experts and competing through innovation:
an activity theoretical analysis. Organization 6(1):5–31
Bødker S, Klokmose CN (2011) The human-artifact model: an activity theoretical approach to
artifact ecologies. Human Comput Interact 26(4):315–371
Chu W, Steenstra P, Glad W, Wever R (2018) Understanding context change: An activity theoretical
analysis of exchange students’ food consumption. In: NordDesign 2018
Chu W, Wever R, Verghese K, Williams H (2019) Thinking on the box: design on-pack information
attributes to influence consumers’ food waste behavior. In: 29th IAPRI symposium
Clemmensen T, Kaptelinin V, Nardi B (2016) Making HCI theory work: an analysis of the use of
activity theory in HCI research. Behav Inf Technol 35(8):608–627
Colusso L, Do T, Hsieh G (2018) Behavior change design sprints. In: proceedings of DIS 2018
Desai G (2007) Activity theory: a framework for ethnographic research for industrial design. In:
E&PDE 2007
DiSalvo C, Sengers P, Brynjarsdóttir H (2010) Mapping the landscape of sustainable HCI. In:
Conference on human factors in computing systems
Döweling S, Schmidt B, Göb A (2012) A model for the design of interactive systems based on
activity theory. In: ACM conference on CSCW
Duignan M, Noble J, Biddle R (2006) Activity theory for design: from checklist to interview. IFIP
Int Fed Inf Process
Engeström Y (2014) Learning by expanding: an activity-theoretical approach to developmental
research, 2nd edn
Fjeld M, Lauche K, Bichsel M, Voorhorst F, Krueger H, Rauterberg M (2002) Physical and virtual
tools: activity theory applied to the design of groupware. CSCW 11(1–2):153–180
Gay G, Hembrooke H (2004) Activity-centered design: an ecological approach to designing smart
tools and usable systems. MIT press
Glad W (2015) The design of energy efficient everyday practices. Eceee 2015:1611–1619
Hasan H, Smith S, Finnegan P (2017) An activity theoretic analysis of the mediating role of
information systems in tackling climate change adaptation. Inf Syst J 27(3):271–308
Hilty L, Lohmann W, Huang E (2011) Sustainability and ICT—an overview of the field. Politeia
27(104):13–28
Hoffmann D, Müller T, Ahlemann F (2017) Balancing alignment, adaptivity, and effectiveness:
design principles for sustainable IT project portfolio management
Irestig M, Eriksson H, Timpka T (2004) The impact of participation in information system design:
a comparison of contextual placements. In: PDC 2004
Kaptelinin V, Nardi B (2006) Acting with technology: activity theory and interaction design
Kaptelinin V, Nardi B (2012) Activity theory in HCI: fundamentals and reflections. Synth Lect
Human-Centered Inf 5(1):1–105
