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Schools of Engineering

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case study
Inspiring the pursuit of problem solving

Uniting theory and practice, engineering schools prepare future leaders to tackle the world’s most complex challenges. Page brings the same mindset to our designs—delivering high-performance environments that solve today’s academic and research needs while anticipating the demands of tomorrow. Featuring advanced laboratories, makerspaces, flexible classrooms, and start-up hubs to foster experiential learning, these facilities promote cross-pollination between students, faculty, and industry experts. Together, let’s build dynamic spaces where the next generation of problem solvers will thrive.

Our portfolio

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Brochure

We create dynamic facilities that enable hands-on learning, optimize access to resources and equipment, and efficiently accommodate both student projects and sponsored research.

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Select clients

B
  • Brown University

C
  • Central Connecticut State University

  • Cleveland State University

  • Colorado State University

  • Columbia University

G
  • George Mason University

  • Georgia Institute of Technology

J
  • Johns Hopkins University

L
  • Lehigh University

M
  • Massachusetts Institute of Technology

  • Mississippi State University

N
  • New York University

  • North Carolina A&T University

  • Northeastern University

  • Northwestern University

P
  • Penn State University

R
  • Rochester Institute of Technology

S
  • SUNY Polytechnic Institute

  • SUNY University at Buffalo

  • Seattle University

  • Syracuse University

T
  • Texas A&M International University

  • Texas A&M University Galveston

  • Texas A&M University Health Science Center

  • The College of New Jersey

  • Trinity University

U
  • Union College

  • University of Colorado Boulder

  • University of Delaware

  • University of Florida

  • University of Maryland

  • University of Massachusetts Boston

  • University of Massachusetts – Lowell

  • University of North Carolina, Charlotte

  • University of Oklahoma

  • University of Rochester

  • University of Scranton

  • University of South Carolina

  • University of Tennessee Martin

  • University of Texas Austin

  • University of Texas at Arlington

  • University of Texas at Dallas

V
  • Virginia Commonwealth University

  • Virginia Tech

W
  • Wentworth Institute

Y
  • Yale University

By the numbers

  • 40+

    Schools of engineering programs supported

    We help our clients imagine a place that enables hands-on learning, maximizes access to advanced facilities, and seamlessly supports incredible teaching, student projects, and sponsored research—empowering the next generation of innovators and problem-solvers.

  • 16

    Engineering disciplines supported

    Agricultural engineering, bioengineering, biomedical engineering, chemical engineering, civil engineering, computer science, electrical and computer engineering, engineering education, environmental engineering, interdisciplinary engineering, manufacturing and industrial engineering, marine engineering technology, materials science and engineering, mechanical engineering, nanotechnology, and robotics.

  • 3M+

    Square feet of expertly programmed and designed engineering-focused spaces

    We design future-ready engineering spaces—from makerspaces and robotics labs to high-bay areas, student project labs, computational hubs, entrepreneurship zones, and research labs—empowering innovation, hands-on learning, and technological advancement.

  • 24+

    R1 universities served

    Our designs balance technical requirements with the social, pedagogical, and physical needs of students, faculty, and staff. We excel at understanding complex projects with multiple stakeholders. We focus on supporting leading-edge research, optimizing resource access, and providing flexible spaces that adapt to evolving teaching and research needs.

  • 1

    Building for students, faculty, and industry partners to collide and collaborate

    Engineering schools are evolving to prioritize interdisciplinary collaboration, industry partnerships, and hands-on learning. Trends include shared makerspaces, project areas with specialty shops, AI and robotics integration, computational simulation, and changing wet-to-dry research space ratios. Institutions are leveraging unique strengths to create strategically aligned academic environments.

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Talk with us

Complex challenges need fresh perspectives and deep expertise. Connect with our team to explore how we can help you create spaces that make a real difference.