Press release: British Embassy Seoul hosts UK Track Day

On 4 September 2018 at Inje Speedium in Gangwon, the British Embassy Seoul’s Department for International Trade (DIT) team organised a UK Track Day to demonstrate the creativity, innovation and manufacturing capability of the British automotive industry. Iconic UK car brands including: Aston Martin, Jaguar Land Rover, Lotus, and McLaren joined the event to show off some of their most impressive models.

Speaking at the track day British Ambassador to South Korea, Simon Smith, said:

“The UK automotive industry has grown at an unprecedented rate in recent years thanks to its rich heritage, the strength of UK design and commitment to continued innovation. The UK and South Korea already have a strong trading relationship in the automotive industry – Korea is the UK’s third largest Asian automotive export market – but there is so much more potential for growth. Far from a country that does not manufacture cars, we are one of the largest car manufacturers in Europe (1.6m cars produced in 2017) and a leader in autonomous and low-carbon vehicles. The iconic British car brands on show today emphasise everything that is great about British cars – style, performance and cutting edge technology.”

The track day is part of the British Embassy’s ambitious ‘Automotive is GREAT’ campaign launched in Seoul in October 2017. The campaign aims to promote everything that makes the UK’s automotive industry such a powerhouse, while strengthening the partnership between the UK – Korea in the sector.

100 senior representatives from leading UK automotive OEMs and the Korean Automobile Importers and Distributors Association attended the track day.

The British Embassy’s DIT team provides support to Korean partners and investors who are interested in UK trade.  If you have any enquiries about possible automotive or other opportunities, you can contact the British Embassy Seoul’s DIT team here: trade.korea@fco.gov.uk

Additional Information

The UK is one of the largest automotive manufacturing countries in Europe producing 1.67m cars in 2017 and 8 of 10 UK built cars are exported to 160 countries worldwide.

The UK government and industry are already leading innovation around the world through significant investments in future vehicles such as low-carbon vehicles, autonomous vehicles and connected cars.

Some facts about UK Automotive Industry:

  • 1.67m cars built in the UK in 2017.
  • 1.33m cars manufactured for export in 2017- 8 out of 10 cars made in the UK are exported.
  • The UK exports to over 160 markets worldwide.
  • In 2017 the UK automotive manufacturing industry…
    • Turned over £82 billion
    • Invested £4 billion net capital
    • Invested £3.65 billion in R&D
    • Added £20.2 billion in value to the UK economy
    • Exported products worth £44 billion, accounting for 12.8% of the UK’s total export goods
  • 856,000 people employed across UK Automotive
  • The automotive industry is a vital part of the UK economy accounting for more than £82 billion turnover and £20.2 billion value added.
  • With some 186,000 people employed directly in manufacturing and in excess of 856,000 across the wider automotive industry, it accounts for 12.0% of total UK export of goods and invests £3.65 billion each year in automotive R&D.
  • More than 30 manufacturers build in excess of 70 models of vehicle in the UK supported by 2,500 component providers and some of the world’s most skilled engineers.
  • 6 of 10 Formula 1 teams have their HQ in the UK
  • The UK government invests heavily in automotive research to further expertise in low-carbon propulsion, lightweight materials, and CAVs. In 2017 £1.2 billion were given by the UK government to automotive research funds (UK Government, 2017).
  • UK now largest EU new car market for Korean car brands, with some 190,215 vehicles registered in 2017.
  • Korea is UK Auto’s third biggest Asian export market, behind only China and Japan, as demand for British-built cars quadruples since 2010.

Automotive is GREAT:

A long term, ambitious campaign started in 2017 to draw a thread from the UK’s current strengths in automotive production, design and strong UK brand presence in South Korea, to the UK as a country ahead of the curve in new automotive manufacturing and technology. We aim to show South Korea the UK’s strengths as a leader in the automobile industry to ultimately encourage stronger UK-Korea automotive links and trade.

Department for International Trade role:

The UK’s Department for International Trade (DIT) has overall responsibility for promoting UK trade across the world and attracting foreign investment to our economy. DIT is a specialised government body with responsibility for negotiating international trade policy, supporting business, as well as delivering an outward-looking trade diplomacy strategy.

UK Industrial Strategy- Sector Deal:

As part of the Industrial Strategy, the Automotive Sector Deal was developed in 2017 and published in January 2018. The sector’s deal was among the first to be finalised, highlighting the collaborative approach industry and government are taking to ensure the UK remains a globally competitive place to design, engineer and manufacture vehicles. Key highlights from the deal are:
* £246 million Faraday Battery Challenge – development, design and manufacture of batteries for electric vehicles; this is particularly relevant to the supply chain
* £250 million Connected and Autonomous Vehicle (CAV) funding to be matched by industry
– Testing and Development of CAVs
– Deployment of infrastructure for testing
* £16 million Supplier Competitiveness Improvement programme – designed to improve the productivity and competitiveness of manufacturing supply chain companies

Link: Press release: British Embassy Seoul hosts UK Track Day
Source: Gov Press Releases

Press release: Worms in space: The Molecular Muscle Experiment

Hundreds of worms are being flown to the International Space Station later this year for scientists to understand more about spaceflight-induced muscle loss.

The team of scientists from Exeter, Nottingham and Lancaster Universities involved in this project hope to discover more about muscle loss in space, which in turn could lead to developing effective therapies and new treatments for muscular dystrophies. The research could also help boost our understanding of ageing muscle loss and even help improve treatments for diabetes.

Sam Gyimah, Science Minister, said:

It’s not every day that you hear of the potential health benefits of sending worms into space, but this crucial project which is also the first of its kind, could lead to better treatment for muscular conditions for people on Earth as well as improving the wellbeing of our astronauts.

Along with our commitment through the modern Industrial Strategy to support our space sector to go from strength to strength, our world-leading research sector is consistently pushing the boundaries of existing knowledge for the benefit of all.

Spaceflight is an extreme environment that causes many negative health changes to the body and astronauts can lose up to 40 per cent of their muscle after 6 months in space. These changes are regarded as an excellent model for the ageing process in the body, and scientists are able to use the knowledge gained from studying changes in astronauts to better understand the ageing human body.

Libby Jackson, Human Spaceflight and Microgravity Programme Manager at the UK Space Agency, said:

This is the first of many exciting experiments heading to the International Space Station from the UK, thanks to our contributions to the European Space Agency. The Molecular Muscle Experiment will provide knowledge that will benefit our understanding of muscle ageing and help to improve life on Earth.

The microscopic worms being used in the experiment, known as C. elegans, share many of the essential biological characteristics as humans and are affected by biological changes in space, including alterations to muscle and the ability to use energy.

Nate Szewczyk, Professor of Space Biology at the University of Nottingham, said:

The Molecular Muscle Experiment aims to understand the causes of neuromuscular decline in space. This research will help us establish the precise molecules that cause muscle problems during spaceflight and enable us to test the effectiveness of novel therapies for preventing the muscle decline associated with spaceflight.

Tim Etheridge, Senior Lecturer at the University of Exeter, said:

Worms are, perhaps surprisingly, a very good model for human muscle maintenance. At the molecular level, both structurally and metabolically they are highly similar to that of humans and from a space flight specific perspective – they provide a lot of practical advantages. They are very small, quick to grow, cheap and easy to maintain. It makes them good to work with.

The Molecular Muscle Experiment is the first UK-led experiment to take place on the International Space Station. UK scientists are able to carry out this research thanks to the UK Space Agency’s subscriptions to the European Space Agency’s exploration programme, which contributes to the costs of the International Space Station, which the UK joined in 2012.

Tim Etheridge continued:

Spaceflight represents the accelerated human model of the ageing condition and so, hopefully, by understanding the molecular changes it may provide the opportunity to understand human ageing on earth.

The project is supported by the UK Space Agency, European Space Agency, BBSRC, MRC, and Arthritis Research UK and the launch is currently scheduled to take place between November 2018 and February 2019.

Link: Press release: Worms in space: The Molecular Muscle Experiment
Source: Gov Press Releases

Press release: Current and future state of nation’s health revealed

The Health Profile for England report covers life expectancy; major causes of death; mortality trends; child health; inequality in health; wider determinants of health; and current health protection issues. Data and evidence contained in Health Profile for England will be used to help shape the forthcoming NHS long term plan.

As a society, people are living longer – life expectancy in England has reached 79.6 years for men and 83.2 for women and we’re healthier at every age group than ever before. However, stubborn inequalities persist – in the richest areas people enjoy 19 more years in good health than those in the poorest areas.

A major theme of the Health Profile for England report is future trends in health, which will aid policymakers to prioritise efforts to prevent ill health not just deal with the consequences.

Some of the most notable findings include:

  • the number of people aged 85 years has more than tripled since the 1970s and will include more than 2 million people by 2031
  • the death rate for dementia and Alzheimer’s disease – already the leading cause of death in women – may overtake heart disease in men as early as 2020 and is likely to become the leading cause of death in men too
  • the number of people with diabetes is expected to increase by a million – from just under 4 million people in 2017 to almost 5 million in 2035
  • in the last 7 years, smoking prevalence has dropped by a quarter to 15% and as little as 10% of the population could still be smoking by 2023

The report also provides details on the nation’s current health position:

  1. UK women’s health is faring worse than their European counterparts, ranked 18th lowest out of 28 EU member states for premature death. UK men are doing better by comparison and are ranked 10th.

  2. Low back and neck pain and skin disease (dermatitis, acne and psoriasis) are the 2 leading causes of morbidity for men and women, with hearing and sight loss also ranking highly for both sexes

  3. While most causes of morbidity become more prevalent with age, mental health problems and substance use affect younger adults the most, accounting for more than a third of the disease burden in those aged 15 to 29 years.

Duncan Selbie, chief executive at Public Health England, said:

Inequalities in health undermine not only the health of the people but also our economy.

As we work to develop the NHS long term plan, we must set the ambition high. If done right, with prevention as its centrepiece, the payoff of a healthier society and more sustainable NHS will be huge.

Professor John Newton, director of health improvement at Public Health England, said:

Now in its 70th year, demands on the NHS have changed significantly.

More of us are living longer with painful or disabling conditions, including musculoskeletal problems, skin conditions and sensory loss. While these illnesses often attract less attention than causes of early death such as heart disease and cancer, they have a profound effect on the day to day lives of many people and together they place significant pressure on the NHS.

The challenge now is for the NHS to respond to this changing landscape and to focus on preventing as well as treating the conditions which are causing the greatest disease burden across our nation.

The new report also shows that good public health is not defined by health policy alone – a high-quality education, a well-designed and warm home, a good job and a community to belong to are just as important.

Health Profile for England has been created with policymakers, both national and local, in mind.
PHE wants them to use the report as a shared reference point and to think about the broader impact of their policies on health. The report also links to further PHE tools to allow local policymakers to see how their area compares with the national picture.

Background

The Health Profile for England report’s 7 chapters are:

  1. Population change and life expectancy

  2. Trends in mortality

  3. Trends in morbidity and risk factors

  4. Health of children in the early years

  5. Inequality in health

  6. Wider determinants of health

  7. Current and emerging health protection issues

PHE is leading the prevention, personal responsibility and health inequalities work stream as part of the development of the NHS 10 year plan.

Public Health England Press Office

Wellington House

5th Floor, Wellington House

133-155 Waterloo Road

London
SE1 8UG

Link: Press release: Current and future state of nation’s health revealed
Source: Gov Press Releases

BS ISO 20768:2018 Vapour products. Routine analytical vaping machine. Definitions and standard conditions

Test equipment
Performance testing
Flow measurement
Volume measurement
Cigarettes
Testing conditions
Performance
Differential pressure
Test atmospheres
Cigarette smoking machines
Tobacco testing
Smoke
Conformity
Air
Test pressure
Gas flow

Link: BS ISO 20768:2018 Vapour products. Routine analytical vaping machine. Definitions and standard conditions
Source: BSI Standards

BS EN 2880:2018 Aerospace series. Nuts, anchor, self-locking, fuel resistant, sealing, floating, two lug, with counterbore, in alloy steel, cadmium plated, MoS2 lubricated. Classification: 900 MPa (at ambient temperature) / 120 $0DC

Locking nuts
Self-locking nuts
Alloy steels
Cadmium
Ambient temperature
Anchor nuts
Nuts

Link: BS EN 2880:2018 Aerospace series. Nuts, anchor, self-locking, fuel resistant, sealing, floating, two lug, with counterbore, in alloy steel, cadmium plated, MoS2 lubricated. Classification: 900 MPa (at ambient temperature) / 120 {$permalink}DC
Source: BSI Standards

PD ISO/TS 13399-306:2018 Cutting tool data representation and exchange Creation and exchange of 3D models. Drills and countersinking tools for indexable inserts

Information technology
Information systems
Inserts (cutting tools)
Cutting tools
Machine tool components

Link: PD ISO/TS 13399-306:2018 Cutting tool data representation and exchange Creation and exchange of 3D models. Drills and countersinking tools for indexable inserts
Source: BSI Standards

BS EN 2878:2018 Aerospace series. Nuts, anchor, self-locking, air resistant, sealing, floating, two lug, with counterbore, in alloy steel, cadmium plated, MoS2 lubricated. Classification: 900 MPa (at ambient temperature)/235 $0DC

Steel frames
Alloy steels
Chemical-resistant coatings
Nuts
Mechanical components

Link: BS EN 2878:2018 Aerospace series. Nuts, anchor, self-locking, air resistant, sealing, floating, two lug, with counterbore, in alloy steel, cadmium plated, MoS2 lubricated. Classification: 900 MPa (at ambient temperature)/235 {$permalink}DC
Source: BSI Standards