Canteens, Cafés and Snack Points

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Iced Americano

August 1, 2026
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ANN ARBOR WEATHER

University of Michigan Net Position 2024: $22.335 billion

Michigan Central | Michigan West | Michigan Upper Peninsula | Michigan South East

Bert Askwith worked his way through college shuttling students to and from Detroit Metropolitan Airport until his graduation in 1931; when two semester tuition cost $300.  With no student debt he founded and grew Campus Coach Lines that still provides the same services at many other US campuses.  He donated part of his fortune to establish a cafe in the Undergraduate Library; which now serves an expanding and bewildering catalog of caffeine-based drinks found in educational settlements worldwide.


When new foreign national students arrive at U.S. colleges and universities, they often enter environments where a left-leaning worldview is prominent and pervasive. Many campuses today emphasize themes of social justice, equity, and systemic critique that align with a preference for larger, more interventionist government. Faculty and administrative messaging can reinforce these ideas, portraying government as the primary instrument for addressing inequality, redistributing resources, and regulating social behavior.

For many international students, this can be both eye-opening and disorienting. They may come from countries with different political traditions, including skepticism of state power due to experiences with corruption or authoritarianism. Yet, in the university setting, they encounter curricula and campus cultures that valorize activist government solutions while often criticizing markets, traditional institutions, or individual responsibility. Programs in the humanities and social sciences in particular tend to frame policy questions through a progressive lens that sees expansive government action as not just beneficial but morally necessary.

This immersion—some might call it a “marination”—shapes perspectives over time. Students adopt the language of social justice, climate policy, and identity politics, often without exposure to robust counterarguments. While this experience can broaden horizons and foster empathy for marginalized groups, it also risks narrowing intellectual diversity and suppressing debate about the limits and costs of government power. For international students, it can mean graduating with a worldview significantly more aligned with the American academic left than with the diverse political traditions of their home countries.

Kitchenettes

Earliest Coffee

August 1, 2026
mike@standardsmichigan.com

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ANN ARBOR WEATHER

Michigan Central | Active Construction Projects

The former Ulrich’s Bookstore* operates interstitially on Central Campus in the South University commercial district.

Opens 6 AM most days for the University Grounds Crews and construction contractors starting before the heat arrives.

Coffee


South University Commercial District

Construction Site Safety


* It happened slowly, then all at once…

The quiet eclipse of Washtenaw’s Swabian roots by the University’s borderless ambition

University of Coffee

August 1, 2026
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TRIESTE WEATHER

“You invent a story, and then the story invents you.”
— Umberto Eco’s Foucault’s Pendulum

 

 

 

 

 

 

 

 

 

 

 

 

 

Trieste LIVE Panoramic Webcam: Io Sono Fruili Venezia Giulia

Healthcare Facility Restoration in San Giovanni Park 

Università degli Studi di Trieste

june

Un mondo fatto bene


Brewbike

August 1, 2026
mike@standardsmichigan.com

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MIAMI WEATHER

Net Position 2025: $5.345B   | Campus Master Plan | Events Today  |  Philanthropy

Total Enrollment 19,582 (2024) | 55% Female 45% Male | 17% International Graduate Students

 

University Researchers Help Level the Playing Field of Online Dating.  Two business technology professors have generated new research that eases congestion in the busy lanes of online dating by improving matching efficiency, and a psychology professor specializing in improving romantic relationships reflects on dating tendencies and the “demographic cliff” challenging Western Democracies . (Relata: Homophily Michigan)

 

Coffee

 

 

Student-run Brewbike opens second coffee cart location at UM’s Lakeside Village

Stadscafé Van der Werff

August 1, 2026
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Summer Sabbatica

August 1, 2026
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Even rest has its measure. While topic presentation will continue according to our CALENDAR our daily colloquia will not resume until August 20.

“Harvest at Rest” George Cole 1865

August Sabbatical

Duluth Paddleboard Lesson / Lake Superior Paddleboard / SUP Rental | Jared Munch - SUPerior Paddle Academy

Superior Paddle Academy

What is an educational institution? Is it defined by its buildings, its curriculum, its credentials—or by the relationships through which knowledge, skills, and traditions are handed from one generation to the next?

 

Observatories & Planetariums

August 1, 2026
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“I know that I am mortal by nature, and ephemeral;

but when I trace at my pleasure the windings to and fro of the heavenly bodies,

I no longer touch Earth with my feet:

I stand in the presence of Zeus himself and take my fill of ambrosia.”

— Ptolemy, “Mathematike Syntaxis” 150 A.D

 

Galileo Demonstrating His Telescope In 1609

Planetariums in schools and colleges play a central in enhancing astronomy and astrophysics education. They provide immersive experiences that can ignite students’ interest and curiosity about the universe, making complex astronomical concepts more comprehensible and engaging.  Observatories do much that but with direct access to telescopes and other observational tools — frequently away from campus — thus allowing them to engage in hands-on learning and real-time data collection.

Establishing research and teaching programs present special occupancy challenges. The cost of high-quality telescopes and equipment, along with the need for a suitable location with minimal light pollution, can be substantial. Additionally, schools require trained staff to guide students in using the equipment and interpreting data. Weather conditions and geographical location also impact the effectiveness of observatories. Despite these hurdles, the educational value of observatories is immense, providing students with unique opportunities to explore the universe and cultivate a passion for scientific inquiry.

Today we examine both occupancies using our SAFER-SIMPLER-LOWER COST-LONGER LASTING discipline.  Use the login credentials at the upper right of our home page at the usual hour.

Purdue University: Grand Universe planning liftoff in Hamilton County

The International Building Code includes various sections that address safety requirements relevant to observatories and planetariums. Key parts of the IBC that cover these requirements include:

  1. Chapter 3: Use and Occupancy Classification
    • Section 303: Assembly Group A. Planetariums and observatories often fall under Assembly Group A due to their function as places where people gather for educational and entertainment purposes. Specific occupancy types and associated requirements will be detailed here.
  2. Chapter 4: Special Detailed Requirements Based on Use and Occupancy
    • Section 410: Stages, Platforms, and Technical Production Areas. While not specific to planetariums, this section provides guidance on assembly spaces, which may be applicable to the design and safety considerations for the auditorium areas in planetariums.
  3. Chapter 11: Accessibility
    • Section 1103: Scoping Requirements. This section ensures that buildings are accessible to individuals with disabilities, which is crucial for public facilities like planetariums and observatories.
    • Section 1104: Accessible Routes. Requirements for accessible paths to ensure ease of access to and within the facility.
  4. Chapter 12: Interior Environment
    • Section 1203: Ventilation. Adequate ventilation is essential in enclosed spaces like planetariums to ensure air quality and comfort.
    • Section 1205: Lighting. Ensuring appropriate lighting levels and types, which is crucial in areas like control rooms and observational spaces.
  5. Chapter 15: Roof Assemblies and Rooftop Structures
    • Section 1509: Rooftop Structures. Covers the installation and safety of rooftop observatories, which can include structural requirements and access considerations.
  6. Chapter 16: Structural Design
    • Section 1604: General Design Requirements. Ensures that the structure can support both the static and dynamic loads associated with heavy equipment like telescopes.
    • Section 1607: Live Loads. Specific load requirements for observatory equipment and public assembly areas.

These chapters collectively ensure that planetariums and observatories are designed and constructed with safety, accessibility, and functionality in mind. For detailed information, it is recommended to refer to the latest edition of the IBC and consult with a professional knowledgeable in building codes and standards.

Denison receives major gift to transform planetarium


Designing and building a telescope for teaching and light research at a college or university requires a detailed consideration of both the telescope itself and the supporting infrastructure. Here are the central architectural features:

Telescope Structure:

  1. Optical System:
    • Aperture Size: A medium to large aperture (typically 0.5 to 1.5 meters) to gather sufficient light for educational and light research purposes.
    • Type of Telescope: Reflecting (Newtonian, Cassegrain, or Ritchey-Chrétien) or refracting telescope, chosen based on specific educational and research needs.
    • Mount: A sturdy, precise mount (equatorial or alt-azimuth) to support the telescope and ensure smooth tracking of celestial objects.
  2. Enclosure:
    • Dome or Roll-Off Roof: A protective structure to house the telescope, with a retractable roof or dome to allow for unobstructed viewing.
    • Material: Weather-resistant materials such as aluminum or fiberglass, designed to protect the telescope from the elements.
  3. Control Systems:
    • Computerized Controls: For automatic tracking and alignment of celestial objects, often including software for scheduling and managing observations.
    • Remote Operation Capabilities: Allowing students and researchers to control the telescope remotely for data collection and analysis.

Support Infrastructure:

  1. Observation Deck:
    • Viewing Platforms: Elevated platforms around the telescope for students to observe through the telescope and participate in hands-on learning.
    • Safety Features: Railings and non-slip surfaces to ensure safety during nighttime observations.
  2. Control Room:
    • Location: Adjacent to the telescope enclosure, with visibility to the telescope for direct supervision.
    • Equipment: Computers, monitors, data storage, and communication equipment to control the telescope and process observational data.
  3. Classroom and Lab Spaces:
    • Multipurpose Rooms: For lectures, demonstrations, and data analysis related to astronomy and telescope use.
    • Laboratory Equipment: Spectrometers, cameras, photometers, and other instruments for conducting light research and analyzing data collected from the telescope.
  4. Data Processing and Storage:
    • Computing Facilities: High-performance computers and software for analyzing astronomical data.
    • Data Storage Solutions: Secure and scalable storage for large volumes of observational data.
  5. Accessibility Features:
    • Elevators and Ramps: To provide access to all areas of the facility, including the observation deck and control room.
    • Adapted Equipment: Adjustable eyepieces and controls to accommodate users with disabilities.
  6. Lighting:
    • Red Lighting: Low-intensity red lights for night-time use to preserve night vision while allowing safe movement.
    • Exterior Lighting: Shielded lighting around the facility to minimize light pollution and ensure optimal observing conditions.

By integrating these architectural features, a college or university can create a functional and effective observatory that supports both teaching and light research in astronomy.

University of Michigan | Detroit Observatory

Designing and building a planetarium for public use involves careful consideration of various architectural features to ensure functionality, aesthetics, and a positive visitor experience. Here are the central architectural features required:

  1. Dome Structure:
    • Shape and Size: The dome must be a perfect hemisphere to provide an unobstructed view of the projected sky. The size should be large enough to accommodate the intended audience while ensuring good visibility from all seating positions.
    • Material: Typically constructed from aluminum or fiberglass, with an inner surface coated to enhance the projection quality.
  2. Projection System:
    • Projectors: High-resolution digital projectors or traditional optical-mechanical projectors are essential for displaying realistic night skies, astronomical phenomena, and educational shows.
    • Sound System: High-quality surround sound systems to complement visual projections, enhancing the immersive experience.
  3. Seating Arrangement:
    • Tilted Seats: Reclined and tiered seating ensures all viewers have an unobstructed view of the dome.
    • Accessibility: Include spaces for wheelchairs and accessible seating to accommodate all visitors.
  4. Control Room:
    • Location: Typically located at the rear or side of the planetarium for ease of access and control.
    • Equipment: Houses computers, projection equipment, sound systems, and control panels for show operations.
  5. Entrance and Exit Points:
    • Flow Management: Design multiple entrances and exits to manage the flow of visitors efficiently and safely, avoiding congestion.
    • Accessibility: Ensure entrances and exits are accessible for all, including ramps and elevators as needed.
  6. Lobby and Reception Area:
    • Ticketing and Information Desks: Central area for purchasing tickets, obtaining information, and gathering before shows.
    • Displays and Exhibits: Interactive exhibits and displays related to astronomy and science to engage visitors while they wait.
  7. Lighting:
    • Adjustable Lighting: Capability to control lighting levels to facilitate different show requirements, including complete darkness for optimal viewing.
    • Safety Lighting: Emergency lighting and pathway lights for safe movement in low-light conditions.
  8. Climate Control:
    • HVAC Systems: Efficient heating, ventilation, and air conditioning to maintain a comfortable environment for visitors and protect sensitive equipment.
  9. Acoustic Design:
    • Soundproofing: Proper insulation and soundproofing to ensure external noise does not disrupt shows and internal sound is clear.
    • Acoustic Treatment: Materials and design features to enhance sound quality and reduce echoes within the dome.
  10. Educational and Interactive Spaces:
    • Classrooms and Labs: Spaces for educational programs, workshops, and hands-on activities related to astronomy.
    • Interactive Kiosks: Digital kiosks with interactive content to engage visitors in learning about astronomy and space science.
  11. Accessibility Features:
    • Elevators and Ramps: For easy access to different levels of the planetarium.
    • Signage and Information: Clear signage in multiple languages and formats (e.g., braille) to assist all visitors.
  12. Exterior Design:
    • Aesthetic Appeal: The exterior should be inviting and reflect the scientific and educational purpose of the planetarium.
    • Landscaping: Incorporate outdoor spaces, such as gardens or open-air exhibits, that complement the planetarium experience.
  13. Parking and Transportation:
    • Ample Parking: Provide sufficient parking spaces, including spots for buses and accessible parking.
    • Public Transit Access: Ensure the planetarium is accessible via public transportation for the convenience of all visitors.

These architectural features are essential to create a functional, welcoming, and educational environment in a planetarium for public use.

Michigan Technological University | Houghton County

Molėtai Astronomical Observatory

 

Nitro Cold Brew

August 1, 2026
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BOSTON WEATHER

Consolidated Financial Statement 2024: $3.541B

2026 Summer Construction Project Maps

Nitro cold brew is bubbling up in coffee shops almost everywhere. The nitrogen-infused beverage became one of the hottest new offerings for coffee lovers looking for something different.   The cold brew — made by steeping coffee grinds in cold water for multiple hours — is dispensed from a stout tap, similar to what you’d find at your local bar.

Image: Chemical & Engineering News

WBUR City Space | Campus Planning & Operations

Warren Towers Modernization — $550 million


Howard Zinn taught at Boston University from 1964 to 1988.  His intellectual legacy has not held up well among serious historians.  Zinn presented American history as a simplistic morality play of evil elites versus virtuous “the people.” Scholars across the political spectrum, including left-leaning historians like Michael Kazin and Sam Wineburg, have criticized it as a “polemic disguised as history” and a Manichean fable rather than rigorous scholarship.

The book is filled with selective quoting, decontextualized facts, major omissions, and heavy reliance on secondary sources that support his Marxist-tinged narrative. Detailed critiques, such as Mary Grabar’s Debunking Howard Zinn, document numerous factual distortions regarding Columbus, the American Revolution, slavery, WWII, and more. 

Zinn openly rejected “disinterested scholarship” in favor of activism, producing advocacy rather than balanced analysis. While influential in activist and popular circles, its methodological flaws and lack of nuance have kept it outside mainstream academic respect. 

 

City Journal (February 6): “The Downfall of Ibram X. Kendi”

Discusses the collapse of Kendi’s Center for Antiracist Research at Boston University, alleging mismanagement of $55 million with minimal research output. Describes Kendi as a “symbol of the BLM era’s destructive passions” and notes his move to Howard University. 

— Christopher F. Rufo

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