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The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 14590  
Location: Balboa Park, San Diego, California, USA
 
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 14591  
Location: Balboa Park, San Diego, California, USA
 
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 14592  
Location: Balboa Park, San Diego, California, USA
 
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 14593  
Location: Balboa Park, San Diego, California, USA
 
The Bea Evenson Foundation is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 14594  
Location: Balboa Park, San Diego, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15581  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15592  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15593  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15594  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15595  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15611  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15612  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park Badwater, California.  Badwater, at 282 feet below sea level, is the lowest point in North America.  9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats, Death Valley National Park
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15622  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15623  
Location: Badwater, Death Valley National Park, California, USA
 
Badwater, California. Badwater, at 282 feet below sea level, is the lowest point in North America. 9000 square miles of watershed drain into the Badwater basin, to dry and form huge white salt flats.
Image ID: 15624  
Location: Badwater, Death Valley National Park, California, USA
 
The Bea Evenson Fountain is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background The Bea Evenson Fountain is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego.  The San Diego Natural History Museum is seen in the background The San Diego Museum of Natural History, Balboa Park, San Diego.  The San Diego Natural History Museum is the place to find dinosaur bones and get a close up look at insects, birds and organic matter that make our outside world so interesting. Renovated in 2001, a new wing has doubled the museums original 65,000 square feet of floor space to about 150,000 square feet
The Bea Evenson Fountain is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 22176  
Location: Balboa Park, San Diego, California, USA
 
The Bea Evenson Fountain is the centerpiece of the Plaza de Balboa in Balboa Park, San Diego. The San Diego Natural History Museum is seen in the background.
Image ID: 22177  
Location: Balboa Park, San Diego, California, USA
 
The San Diego Museum of Natural History, Balboa Park, San Diego. The San Diego Natural History Museum is the place to find dinosaur bones and get a close up look at insects, birds and organic matter that make our outside world so interesting. Renovated in 2001, a new wing has doubled the museums original 65,000 square feet of floor space to about 150,000 square feet.
Image ID: 22178  
Location: Balboa Park, San Diego, California, USA
 
The San Diego Museum of Natural History, Balboa Park, San Diego.  The San Diego Natural History Museum is the place to find dinosaur bones and get a close up look at insects, birds and organic matter that make our outside world so interesting. Renovated in 2001, a new wing has doubled the museums original 65,000 square feet of floor space to about 150,000 square feet The Mandelbrot Fractal.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set The Mandelbrot Fractal.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set
The San Diego Museum of Natural History, Balboa Park, San Diego. The San Diego Natural History Museum is the place to find dinosaur bones and get a close up look at insects, birds and organic matter that make our outside world so interesting. Renovated in 2001, a new wing has doubled the museums original 65,000 square feet of floor space to about 150,000 square feet.
Image ID: 22186  
Location: Balboa Park, San Diego, California, USA
 
The Mandelbrot Fractal. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10370  
Species: Mandelbrot Fractal, Mandelbrot set
 
The Mandelbrot Fractal. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10371  
Species: Mandelbrot Fractal, Mandelbrot set
 
The Mandelbrot Fractal.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set The Mandelbrot Fractal.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set The Mandelbrot Fractal.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set
The Mandelbrot Fractal. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10372  
Species: Mandelbrot Fractal, Mandelbrot set
 
The Mandelbrot Fractal. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10373  
Species: Mandelbrot Fractal, Mandelbrot set
 
The Mandelbrot Fractal. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10374  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10376  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10377  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10379  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set Detail within the Mandelbrot set fractal.  This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features.  Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself.  Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves.  Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns.  The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set, Mandelbrot set
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10380  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10381  
Species: Mandelbrot Fractal, Mandelbrot set
 
Detail within the Mandelbrot set fractal. This detail is found by zooming in on the overall Mandelbrot set image, finding edges and buds with interesting features. Fractals are complex geometric shapes that exhibit repeating patterns typified by self-similarity, or the tendency for the details of a shape to appear similar to the shape itself. Often these shapes resemble patterns occurring naturally in the physical world, such as spiraling leaves, seemingly random coastlines, erosion and liquid waves. Fractals are generated through surprisingly simple underlying mathematical expressions, producing subtle and surprising patterns. The basic iterative expression for the Mandelbrot set is z = z-squared + c, operating in the complex (real, imaginary) number set.
Image ID: 10382  
Species: Mandelbrot Fractal, Mandelbrot set
 


Natural History Photography Blog posts (17) related to Square



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Categories Appearing Among These Images:
Animal  >  Fish  >  Fish Anatomy  >  Color and Pattern  >  Color Morph
Animal  >  Fish  >  Fish Anatomy  >  Color and Pattern  >  Spot
Animal  >  Fish  >  Fish Anatomy  >  Male - Female Difference
Animal  >  Fish  >  Marine Fish  >  Anthias (Serranidae)
Animal  >  Fish  >  Marine Fish  >  Color and Pattern  >  Spot
Animal  >  Fish  >  Marine Fish  >  Grouper (Serranidae)
Animal  >  Fish  >  Marine Fish  >  Indo-Pacific
Gallery  >  Fractal
Gallery  >  Paris
Gallery  >  San Diego
Gallery  >  San Diego Aerial
Location  >  Protected Threatened and Significant Places  >  National Parks  >  Death Valley National Park (California)  >  Badwater
Location  >  USA  >  Arizona  >  Phoenix
Location  >  USA  >  California  >  Desert  >  Death Valley National Park
Location  >  USA  >  California  >  San Diego
Location  >  USA  >  California  >  San Diego  >  Balboa Park
Location  >  USA  >  New York City  >  Times Square
Location  >  World  >  France  >  Paris  >  Place De La Bastille
Subject  >  Abstracts and Patterns  >  Fractal
Subject  >  Architecture / Building  >  Metropolis
Subject  >  Technique  >  Aerial Photo
Subject  >  Technique  >  Captivity  >  Aquarium
Subject  >  Technique  >  Underwater

Species Appearing Among These Images:
Mandelbrot set
Plectropomus areolatus
Plectropomus laevis
Plectropomus maculatus
Pseudanthias pleurotaenia

Natural History Photography Blog posts (17) related to Square
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Sea Lions of Santa Barbara Island
Rose Atoll, A World Treasure in Peril
Metadata, Photography and Workflow for the Web
San Diego Convention Center
Rose Atoll Marine National Monument
Photo of Badwater, Death Valley National Park
GuadalupeFund.Org
Last Fractal
Fractal of the Day
Mandelbrot Fractal Picture
Julia Set Fractal
Fractal Picture
Kayaking in Thailand
Photo of Badwater, Death Valley National Park
Riding Shotgun in NYC with David Starsky
Fractals

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Updated: November 22, 2019