Wizard of oz slot machines

  1. Betnero Casino 100 Free Spins Bonus 2025: Overall, we think Bingorella is an excellent site that deserves 4 stars out of 5.
  2. Australian Pokie Machine - With BetWinner, players can really expect to diversify their gaming portfolio, and they can do that on both desktop computers and mobile phones, thanks to Android and iOS apps.
  3. Casino Room For Rent: Where the more adventurous players might not get everything out of it that theyre looking for, the average player will be satisfied.

Crypto Casino Sydney certificat cadeau

Neteller Casinos Online
I asked him how to use the next 50 free spins parts but all he was telling me is that i cannot play them because i do not have money on my balance.
Hot Fruits 100 Demo
He was signed by the Carolina Hurricanes and had a breakout season in 2024-19.
However, there are other places you can find such deals that might be worth exploring if you want to get the best from your membership of the casino.

Mega bucks bingo

Casino Games List With Pictures
There were no limits stated, so this is probably at the discretion of the site.
Bonus Hunter Cc
Play The Wild Hatter for free here or try it for real money at one of our favorite online casinos now.
Vegas Kings Casino Login App Sign Up

  Unlocking higher energy batteries with quasi-solid materials

About the Project

Supervisory Team: Nuria Garcia-Araez and Andrew Hector

Reliable batteries, surpassing the energy storage capacity of the state of the art, are needed for critical applications such as communications systems for national security. This project aims to make them a reality by combining solid and liquid/gel materials to form quasi-solid materials with versatile chemistry and mechanical robustness. 

State-of-the-art batteries employed in laptops and electric vehicles do not deliver all the energy that they can potentially store, since they are operated under a restricted voltage window to prevent their degradation. However, clever engineering of quasi-solid materials allows staggering different materials to enable a greater compatibility with the battery’s cathode and anode, thus bypassing degradation. Furthermore, the incorporation of quasi-solid materials also allows replacing the graphite anode, used in nearly all batteries, by a much more energy dense lithium metal anode, and it overcomes the safety issues involved in using instead a liquid counterpart.

This project will employ the most energy dense battery cathodes currently available in the market, and they will be combined with protective layers of quasi-solid materials and a thin lithium metal anode to produce a battery with unprecedented high energy. These discoveries will have applications in, among others, strategic communication and internet of things systems. The selection of materials will be guided by the expertise in Garcia-Araez’s group on designing seamless interfaces with negligible resistance [ACS Appl. Mater. Interfaces 2022, 14, 1, 633–646], and by the critical knowledge of battery experts from HMGCC [https://www.hmgcc.gov.uk/] on the best-in-class battery options and application requirements. The project will culminate with a practical demonstration of the new battery by building a commercial prototype at the HMGCC manufacturing facilities. 

The project will benefit from the long-standing tradition of the Southampton Electrochemistry Group in teaching electrochemistry and battery development, which materializes in a variety of taught and practical courses that span from the fundamentals to applications. In addition, the School of Chemistry and Chemical Engineering offers a variety of training courses on the fundamentals and applications of the state-of-the-art facilities available within the school (NMR, XRD, mass spectrometry, etc.). Through the collaboration with the Faraday Institution, the project will also benefit from excellent bespoke training on battery development, and the University of Southampton also offers a wide variety of professional development opportunities and resources for career development.

Entry Requirements

A very good undergraduate degree (at least a UK 2:1 honours degree, or its international equivalent) in chemistry or allied subjects/relevant disciplines.

Closing date: 20 June 2025. Applications will be considered in the order that they are received, the position will be considered filled when a suitable candidate has been identified.

Funding: We offer a range of funding opportunities for both UK and international students, including Bursaries and Scholarships. For more information please visit PhD Scholarships Doctoral College University of Southampton Funding will be awarded on a rolling basis, so apply early for the best opportunity to be considered.

How To Apply

Apply online: Search for a Postgraduate Programme of Study (soton.ac.uk) Select programme type (Research), 2025/26, Faculty of Engineering and Physical Sciences, next page select “PhD Chemistry. (Full time)”. In Section 2 of the application form you should insert the name of the supervisor Prof. Nuria Garcia-Araez

Applications should include:

Curriculum Vitae

Two reference letters

Degree Transcripts/Certificates to date

For further information please contact:

To help us track our recruitment effort, please indicate in your email – cover/motivation letter where (theacademicjob.com) you saw this job posting.

Source: https://www.findaphd.com/phds/project/unlocking-higher-energy-batteries-with-quasi-solid-materials/?p180771

Application ends on January 1, 1970
Job ID: 507111 Application ends on January 1, 1970

Overview

  • Location United Kingdom
  • Job category Academic, Studentship (M.A.- PhD)/Fellowship, University/College
  • Salary $
  • Job type Contract, Training/Education

University of Southampton

  • United Kingdom