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  • Sir Arthur C. Clarke, composite. Colombo, Sri Lanka. Sir Arthur C. Clarke gazes at the moon. "I can never look now at the Milky Way without wondering from which of those banked clouds of stars the emissaries are coming," one of Arthur C. Clarke's characters says in the short story "The Sentinel" (1948), which was the basis for his book 2001 - A Space Odyssey. MODEL RELEASED
    SRI_ACC_74_xs.jpg
  • A couple at an outdoor café in Segovia, Spain.
    SPA_181_xs.jpg
  • Solar energy: Solar Plant 1. Warner Springs, California. Solar Plant 1 was the largest privately funded solar powered electrical generator in the world when it was built in 1984. Built by LaJet Energy Company of Abilene, Texas , SolarPlant 1 is a five megawatt distributed receiver facility. There is no central tower to soak up sunlight reflected from a broad field of glass mirrors. Instead, each of the 700 concentrators--consisting of 24 plastic mirrors kept in shape by a vacuum pump- reflects sunlight into its own receiver. Water is pumped through the receiver, which turns to steam to drive a turbine to produce electricity. (1985) .
    USA_SCI_ENGY_29_xs.jpg
  • Sir Arthur C. Clarke in Colombo, Sri Lanka. Sir Arthur is best known for the book 2001: A Space Odyssey. MODEL RELEASED
    SRI_ACC_77_120_xs.jpg
  • Faith D'Aluisio on lower staircase of Menzel & D'Aluisio cave. Napa Valley, California, USA. ((PRIV)).
    USA_020831_11_xs.jpg
  • USA_SCI_BIOSPH_66_xs <br />
Biosphere 2 Project undertaken by Space Biosphere Ventures, a private ecological research firm funded by Edward P. Bass of Texas.  Young visitor looks at tissue culture test tubes inside the Biosphere test greenhouses.  Biosphere 2 was a privately funded experiment, designed to investigate the way in which humans interact with a small self-sufficient ecological environment, and to look at possibilities for future planetary colonization. The $30 million Biosphere covers 2.5 acres near Tucson, Arizona, and was entirely self- contained. The eight ‘Biospherian’s’ shared their air- and water-tight world with 3,800 species of plant and animal life. The project had problems with oxygen levels and food supply, and has been criticized over its scientific validity. 1988
    USA_SCI_BIOSPH_66_xs.jpg
  • At the MIT Media Lab in Cambridge, MA, Joshua Bers models virtual reality gloves and tracking devices while calibrating them. Bers is working on his master's thesis under Richard Bolt. He is seen wearing the equipment detailed above for calibration purposes. Once programmed and calibrated, he can move virtual objects around in a virtual room. Bolt is working on multi-modal interaction using speech, gesture, and gaze. He is attempting to program computers to interact with their users by non-standard (keyboard, mouse) methods.
    Usa_rs_105_xs.jpg
  • Like a dissected mechanical insect, the hand-sized walking robot Unibug 3.2 (left) reveals its fifty-component construction to the camera's gaze. Designed by Los Alamos , New Mexico, researcher Mark Tilden, Unibug uses simple analog circuits, not the digital electronics that are in most robots, to poke its way around an amazing variety of obstacles. Digital machines must be programmed to account for every variation in their environment, Tilden argues, whereas analog machines can minimally compensate for new and different conditions. From the book Robo sapiens: Evolution of a New Species, page 116.
    USA_rs_487_120_qxxs.jpg
  • Adult and baby black-faced sheep gaze before grazing near Ballynahinch, West Ireland (Connemara). The mama sheep is marked with paint for identification of owner.
    IRE_02_xs.jpg
  • Communicating with computers.  Richard Bolt.  Bolt is working on multi-modal interaction using speech, gesture, and gaze.  He is attempting to program computers to interact with their users by non-standard (keyboard, mouse) methods.  Using off the shelf hardware (cyber gloves, head-mounted eye-tracking gear, and magnetic space sensing cubes that are sewn into clothing), he and his students are creating systems whereby a user would not have to be skilled to interact with a computer.  He wants, "normal interaction with the machine--like you would with a human.  This will open the information highway to the world that cannot use computers."  His view of the future includes large screens, flat wall, or holographic screens which "spread-out information in space, like the real world." MODEL RELEASED.(1994)
    USA_SCI_MIT_05_120_xs.jpg
  • DB gazes intently at the camera by means of two pairs of lenses in each "eye." In a configuration increasingly common in humanoid robots, one lens in each pair sharply focuses on the center of the visual field while the other gives a broader perspective. These two points of view, surprisingly, mimic the human eye, which seamlessly blends together information from the fovea centralis, a small area of precise focus in the center of the retina, and the parafovea, a larger, but much less acute area surrounding the fovea. Similarly, DB has a vestibular system in its ears, vestibular systems being the inner-ear mechanisms that people use to balance themselves.  The DB project is funded by the Exploratory Research for Advanced Technology (ERATO) Humanoid Project and led by independent researcher Mitsuo Kawato. Based at a research facility 30 miles outside of Kyoto, Japan.
    Japan_JAP_rs_235_qxxs.jpg
  • (MODEL RELEASED IMAGE). 5-year old Sinead Brown gazes into her family's nearly-empty freezer in the kitchen of their rented home in Riverview, Australia (near Brisbane). Every two weeks a new check appears and the family goes to the supermarket. Sinead's mother Vanessa is cooking at the stove. (Supporting image from the project Hungry Planet: What the World Eats.)
    AUS104_1820_xf1b.jpg

Peter Menzel Photography

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