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Digital Platforms, Democracy, and Marginalization: A Culture-Centered Approach

Mohan Dutta

7.30 pm Tuesday, 18 November, Palmerston North Central Library, George Street, Palmerston North 

As digital platforms increasingly shape public discourse, they simultaneously serve as engines of disinformation and exclusion—particularly for marginalized communities. Algorithmic echo chambers and targeted hate speech reinforce structural inequities and incite real-world violence. I advocate for transformative communication strategies that dismantle disinformation networks, democratize platform ownership, and reclaim democracy as a space of cultural resistance against neoliberal and authoritarian regimes.

Mohan J. Dutta is Dean’s Chair Professor of Communication and Director of the Centre for Culture-Centered Approach to Research and Evaluation (CARE) at Massey University, New Zealand. Through collaborations with indigenous, migrant, working class and hyper-precarious communities, Dutta co-creates participatory communication strategies that resist colonial extractivism and algorithmic repression.

The talk will be proceeded by the Royal Society Te Apārangi Manawatū Branch 2025 AGM, starting at 7.00pm. 

All warmly welcome!

Gene Editing: the science, the technology and the social and ethical issues it raises

7.30 pm, Tuesday, 21 October, Palmerston North Central Library, George Street, Palmerston North

Gene editing is a method for making precise and targeted cuts in DNA allowing for highly  specific changes to be ‘engineered’ in the genome of an organism. It has made it easier to make targeted changes in the genomes of animals, plants and microorganisms, with huge potential benefits in many sectors including healthcare, agriculture and conservation. However, the  technology to carry out gene editing and the ideas about how it might be applied have moved well ahead of public understanding and consideration of the proposed changes, and of any consensus on how this technology might be used.

In response the Royal Society Te Apārangi convened a multidisciplinary panel of experts, supported by a Māori reference group, to consider the social, ethical, cultural, legal and economic implications of gene-editing technologies for New Zealand. Their reports identified significant deficiencies in the current framework that need to be addressed in the recently introduced Gene Technology Bill. This talk will provide an overview of the science and technology of gene editing, the social, ethical and other issues it raises, the implications for New Zealand and some of the future challenges that lie ahead.

Emeritus Professor Barry Scott FRSNZ was Professor of Molecular Genetics at Massey University from 1985 to 2019. His lifetime research was focused on understanding symbiotic interactions between plants and microbes. He was awarded the New Zealand Association of Scientists Marsden Medal in 2013 and has served as Vice President of the Royal Society Te Apārangi and Head of the Institute of Molecular BioSciences, Massey University.

All warmly welcome!

2025 Hochstetter Lecture

Past, present, and future earthquakes on the Alpine Fault:
what lies beneath and what lies ahead?

John Townend

7.30 pm Thursday, 23 September, Palmerston North Central Library, George Street, Palmerston North

Held jointly with Geoscience Society of New Zealand

Several decades of painstaking paleoseismological research — using geological measurements to determine the timing and magnitudes of past Alpine Fault earthquakes — have yielded one of the most spatially and temporally extensive paleoearthquake records of any fault worldwide. This record indicates that the Alpine Fault produces large earthquakes on timescales of less than 300 years and that, although the times between one earthquake and the next are remarkably consistent, their inferred sizes vary from depending on which of three sections of the fault rupture at once. More than 300 years have passed since the last major earthquake, in 1717 CE, and the Alpine Fault is thus late in the typical period between successive earthquakes: the likelihood of a magnitude 7 earthquake occurring in the coming 50 years is estimated to be 75%; the odds of that earthquake being larger than magnitude 8 are ~80%.

Despite substantial advances in understanding the Alpine Fault’s past and present-day seismicity, how and where the fault will slip in a future earthquake and what groundshaking will result are difficult to anticipate without knowing which of many geologically- and geophysically-plausible scenarios eventuates.

This year’s Hochstetter Lecture will review how understanding of the Alpine Fault’s earthquake-generating behaviour has developed in recent years, catalysed by novel paleoseismological, geological, and seismological studies including the Deep Fault Drilling Project and the 450 km-long Southern Alps Long Skinny Array, and how technological advances such as optical fibre sensing, “virtual earthquakes”, and artificial intelligence are providing new insight into fault zone structure and earthquake generation.

All warmly welcome!