RSS feed source: US Energy Information Administration

In-brief analysis

September 18, 2026

The price of distillate fuel oil, often sold as diesel, is driven by the price of crude oil, retail margins, distribution costs, taxes, and crack spreads, the indicator we use for refining margins. Tight global supplies of distillate fuel oil and elevated crude oil prices have driven prices higher in recent months.

Crack spreads are indicators of the profitability of refining crude oil into petroleum products such as gasoline and diesel and are used as a proxy for refinery margins. We calculate the diesel crack spread by subtracting the spot market price of a gallon of crude oil from the wholesale price of a gallon of diesel. The high crack spread for diesel on top of the elevated price of a barrel of crude oil has driven retail prices up. High

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RSS feed source: US Energy Information Administration

This job is open to Help Clarification from the agency

Current or former Federal employees with competitive status obtained through a permanent Federal competitive service appointment OR individuals with eligibility for noncompetitive special appointing authority OR ICTAP/CTAP eligibles OR veterans eligible under the Veterans Employment Opportunities Act (VEOA). This position is open to the public under vacancy number OD-26-13072565.

As an Occupational Health Program Manager, you will perform the following duties:

Serve as the principal clinical manager responsible for planning, implementing, coordinating, and evaluating contractor occupational health programs supporting U.S. National Science Foundation (NSF) Arctic and Antarctic operations. Provide expert clinical direction and authoritative guidance concerning medical surveillance programs, fitness-for-duty evaluations, employee health services, and deployment medical readiness activities. Provide advanced clinical expertise in the review and evaluation of complex medical qualification examinations and waiver requests, detailed medical

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RSS feed source: US Energy Information Administration

The U.S. National Science Foundation today announced an initiative to translate low-dimensional semiconductor technologies from laboratory demonstrations into platforms for U.S. manufacturers to develop and deploy advanced microelectronics.

The NSF Ecosystem for Low-dimensional Electronics: Growth, Assembly, Nanoelectronics, and Translation (NSF ELEGANT) program will position the U.S. for success in translating advanced microelectronics technologies into next-generation capabilities for artificial intelligence, high-performance computing, advanced communications, and other key technology areas critical to national security and economic competitiveness.

“NSF ELEGANT aims to de-risk advanced microelectronics manufacturing technology to the point where industry can make a timely, credible, evidence-based commitment to its adoption,” said Erwin Gianchandani, NSF Assistant Director for Technology, Innovation and Partnerships. “Sustained industry participation is central to how this program is designed and measured — every performing team’s progress is validated by industry partners at each stage, so the technologies advancing through ELEGANT are the ones manufacturers are ready to adopt.”

Microelectronics powers industry and drives worldwide innovation. However, current microelectronics manufacturing methods are no longer able to keep pace with the demand for smaller-scale microelectronics technologies at the scale needed. The ELEGANT program advances innovation in low-dimension materials for semiconductor manufacturing and simultaneously bridges the gap between laboratory demonstrations and the development of industry-relevant platforms.

To achieve program objectives, NSF released an Other Transaction Agreement Solutions Offering (OTASO) seeking an Ecosystems Coordinator and Expert Performer Teams

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