August 27 – It’s National Inventors Month

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About the Holiday

While dates for this holiday may vary – some say May while others celebrate in August, National Inventors Month was established in 1998 by the United Inventors Association of the USA, the Academy of Applied Science, and Inventors’ Digest magazine. This month-long holiday recognizes the imagination and talent of individuals who dare to think differently to create new products, services, and ways of doing things that make a positive contribution to the world. Today, I’m sharing a book that highlights those who reach for the sky, dive under the sea, and look for opportunities to better help and connect people through the structures we use and live in. If you harbor dreams of being an inventor—on a large or small scale—look for opportunities to share your ideas!

How Was that Built?

Written by Roma Agrawal | Illustrated by Katie Hickey

 

They seem to have sprung from the ground, they soar into the clouds, they cross vast waterways—over and under the ripples and waves, and they come in all shapes and sizes. What are they? Buildings! For lovers of architecture, engineering, and just the marvels that people can construct, Roma Agrawal’s compendium of some of the world’s most incredible buildings will leave them enthralled—and much more knowledgeable on how these structures came to be.

In fifteen chapters, Agrawal reveals all the nuts and bolts about how buildings are secured on difficult sites (such as on sinking ground, in the sea, underground, and on ice); constructed to be tall, long, or able to move; and made to serve civic purposes. In addition to detailed explanations of the conditions architects and engineers must take into consideration when designing and constructing a building, bridge, or other structure, Agrawal clearly describes the materials used, how they are made, and why each is chosen for a particular job.

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Image copyright Katie Hickey, 2022, text copyright Roma Agrawal, 2022. Courtesy of Bloomsbury Children’s Books.

Rounding out each chapter, Agrawal goes in depth on one world building that demonstrates her topic. For example, In the first chapter she introduces readers to the Metropolitan Cathedral in Mexico City, which was built on top of an old Aztec pyramid in the middle of a filled-in lake. When it began sinking and tilting, engineers in the 1990s devised an intriguing way to save it. If you’re a fan of skyscrapers and wonder just how they’re built, a chapter on The Shard in London, which “is over 1,000 feet tall…and has 11,000 glass panels” (and for which Roma Agrawal worked as an engineer) reveals the secrets of a strong core and the incredible machinery that allows workers to keep going up and up.

Readers who love bridges will find two chapters on these beautiful and intricate structures. One reveals the fascinating story of how the construction of the Brooklyn Bridge overcame many challenges under the direction of Emily Warren, a woman who broke barrios for women in the engineering field. Another describes six different types of bridges as well as where they are used and why.

Readers also learn about concrete and how arches and domes work. They then explore the Pantheon and discover how it has stood for nearly 2,000 years. Other concrete structures from around the world are also discussed. You may not think too much about sewers, but imagine living without them! You’ll get a good (and stinky) idea about the conditions in London hundreds of years ago before Joseph Bazalgette designed and built the first sewer system. How did he do it? Agrawal breaks it down and then talks about today’s modern sewers.

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Image copyright Katie Hickey, 2022, text copyright Roma Agrawal, 2022. Courtesy of Bloomsbury Children’s Books.

You’ll also find chapters on dams, tunnels, and buildings with moveable parts—or buildings like the Halley VI research station in Antarctica that can be moved easily in their entirety to avoid snow or ice that may crack beneath them. Then there are the challenges of building under the sea and in outer space. While astronauts now rely on the International Space Station, “some engineers and scientists are studying how to build structures on the Moon! Then researchers could live there for a long time to carry out their experiments and learn more about outer space.” What considerations must engineers take into account and what materials will they use? Agrawal fills readers in. She then closes her book with a look toward the future and talks about new materials and methods of building that may transform our world.

Sprinkled throughout the book are “Try It At Home” prompts for experiments that readers can easily do at home to visually interact with the concepts Agrawal lays out, such as using malted milk balls and raisins to understand “how carbon atoms make steel stronger” and making a pneumatic caisson with just a few household items.

Back matter includes a glossary of terms found in the book and brief biographies of ten influential engineers from the past and present.

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Image copyright Katie Hickey, 2022, text copyright Roma Agrawal, 2022. Courtesy of Bloomsbury Children’s Books.

Readers of all ages will be engrossed by Roma Agrawal’s guide through the architecture and engineering that go into housing, moving, connecting, and supporting the world’s population. Every page contains fascinating details and interesting tidbits culled from Agrawal’s extensive experience as an engineer. These go far beyond an introduction to landmark buildings to show readers exactly how each type of building works. Relayed in a simple-to-understand, conversational style, her text is also broken up into short paragraphs that are easily digestible and invite further research, making this a superb resource for schools, homeschooling, and enthusiasts of all things engineering and architectural. Agrawal’s inclusion of structures from the past reveal the ingenuity of our ancestors and how they still influence today’s engineers and architects. Kids who love geography, archaeology, astronomy, and learning about all the intricate workings of the world will be enthralled with this book.

Katie Hickey gives readers an insider’s view of these phenomenal buildings with her stylish and incredibly detailed illustrations. Cityscapes allow children to understand the scale of skyscrapers from around the world and the beauty and breadth of New York City’s Brooklyn Bridge. Hickey whisks readers off to London to see The Shard; to New Zealand to view Te matau ā pohe, a bascule bridge whose shape was inspired by a fish hook; to Japan, where the Sapporo Dome accommodates soccer and baseball games with a moveable field of natural turf; and to Africa to stand on the edge of the Katse Dam and look 600 feet down into its reservoir. Along with this world tour, Hickey helps readers visualize the intricate working parts of certain buildings and bridges with interior views and small insets that demonstrate the physics of each design. Images of various types of cranes, pulleys, and other machinery also reveal the science behind building each structure.

A rich and comprehensive resource on the intricate engineering that goes into designing and building complex structures while also sharing the stories behind them, How Was that Built? will captivate readers of all ages. The book is a must for any STEM, science, art, or archaeology lover and belongs in all school and public library collections. 

Ages 6 and up

Bloomsbury Children’s Books, 2022 | ISBN 978-1547609291

Roma Agrawal is a structural engineer who builds big. From footbridges and sculptures, to train stations and skyscrapers – including The Shard – she has left an indelible mark on London’s landscape. She is a tireless promoter of engineering and technical careers to young people, particularly under-represented groups such as women. She has advised policymakers and governments on science education, and has given talks to thousands around the world at universities, schools and organizations, including two for TEDx. Roma has been awarded international awards for her technical prowess and success in promoting the profession, including the prestigious Royal Academy of Engineering’s Rooke Award. 

Discover more about Roma Agrawal and her work on her website, and connect with her on Instagram | Twitter. You can read an interview with Roma Agrawal in Publishers Weekly here.

To view a portfolio of work by Katie Hickey, visit Pickled Ink. You can connect with Katie Hickey on Instagram | Twitter 

National Inventors Month Activity

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Build a Remarkable Recycled Bridge

 

You don’t need fancy blocks and construction materials to build a bridge! Little ones will be fascinated to put together a bridge made out of items you already have at home or that may even be slated for the recycle bin. Spaghetti boxes make great roadways, and cut-up egg cartons can be used as supports.

Build a Whole Town

Want to give your bridge a town with a river to span – or maybe two towns to connect? Cereal boxes and pasta boxes make great skyscrapers, apartment buildings, fire stations, and more. Need a farm silo? Grab a peanut butter jar, oatmeal container, or aluminum can. Cut a meandering river for your bridge to span from paper or cardboard. You can use them as is or—if your kids are sticklers for a little more detail—add some paint and details! So look around at the raw materials around you, use your imagination, and get creative!

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You can find How Was that Built? at these booksellers

Amazon | Barnes & Noble | Books-a-Million

To support your local independent bookstore, order from

Bookshop | IndieBound

Picture Book Review

December 13 – Celebrating Read a New Book Month with STEM

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About the Holiday

Today I’m featuring two books that bring the world of big machines down to size for little readers. Being introduced to the various parts of favorite machines and what they do can spark a life-long interest in engineering and its many applications!

The Book of Flying Machines

By Neil Clark

Readers join Clever Cogz and his sidekicks, Nutty and Bolt, as they get up-close to airplanes, hot air balloons, helicopters, supersonic jets, and the latest technological advances to fill the skies. Little ones who love air travel or just watching planes soar through the clouds learn all about the “clever parts” that allow these machines to ascend, fly, descend, and land.

After defining the engine, cockpit, fuselage, tail, rudder, wheels, and fins, Clark presents a closer look at the wings, with all of their moving parts “that work together to control the speed and direction of the plane.” But how does a plane stay in the air? Kids discover that a wing’s special shape allows air to travel “faster over the top than it does underneath,” and that “the slow-moving air under the wing creates a force called lift.”  Clever Cogz reveals that “lift is the force that keeps an aircraft in the air.”

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Copyright Neil Clark, 2019, courtesy of QEB Publishing.

Now that the plane is in the air, how does it move forward? Working together, the engine and the propeller use air to create thrust, and budding engineers get to see just how this works. Next, children get to join Nutty and Bolt in a hot air balloon ride and discover how pilots use the science of hot air to make the balloon rise. They also learn the names of the various parts of these beautiful machines that make them work—and allow them to come back down.

No one can resist watching a helicopter hover overhead, and its ability to “take off and land without a run-up” makes it very useful in emergency situations. Readers get to learn about the engine, the landing skids, the rescue hoist, and the two rotors that provide the power for this unique machine while Bolt comes to Nutty’s aid on his sinking boat. Kids fascinated by speed will love learning about the various types of jets that “travel at supersonic speeds—faster than the speed of sound” and the definition of Mach 1, against which they can compare the speed of jets that fly at Mach 3.3, 6.7, and even 9.6.

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Copyright Neil Clark, 2019, courtesy of QEB Publishing.

Of course, kids are familiar with drones, so they’ll be eager to discover how three different types—one that can even predict storms. Finally, flying here and there powered by a jet pack may seem like science fiction, but “real ones have been built for the army, for astronauts, and for spectacular stunt shows,” including the Bell Rocket Belt, which can fly up to 60 mph (95 kmph) and the Jetman, invented by Yves Rossy, that can fly at 100 mph (160 kmph). Along the way, bits of trivia about the history and facts of air flight give kids even more information. A short quiz on the last page lets readers show off what they’ve learned.

Ages 5 – 7

QEB Publishing, 2019 | ISBN 978-0711243446

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The Book of Diggers & Dozers

By Neil Clark

 

Clever Cogz, Nutty, and Bolt are back in this book all about working machines. From backhoe loaders to excavators to bulldozers to the giants and the latest tech wonders, Neil Clark takes readers above and below ground to see how these machines work. Take a moment to get to know the intricate parts of a backhoe, which can lift the weight of three cars with its front loader and dig deep holes with its hydraulic-powered bucket in the back. The spinning seat in the cab makes it easy for the operator to do both jobs! What are hydraulics? Dog Clever Cogz, Nutty, and Bolt demonstrate the concepts on a backhoe and with a water gun.

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Copyright Neil Clark, 2019, courtesy of QEB Publishing.

Little ones know tractors belong on farms, but they’ll be surprised at how many jobs they can do using different attachments. There’s even a hole digger that makes planting trees much easier. The excavator may be best known for the tracks that wrap around sprockets and allow it to move over bumpy ground, but its bucket deserves some attention too. It has “an extra part called a thumb” that “turns the bucket into a giant claw, perfect for grabbing things.” Did you know that there are “new, electric powered excavators that will help keep our planet clean?”

The tallest machines are cranes—and “the biggest mobile crane is over 800 feet (245 m) high.” Nutty tells kids “that’s as tall as 50 giraffes standing on top of each other!” A crane’s height and power help it move objects too heavy to move any other way. When roads need fixing and repaving, it’s time to break out the road roller. These useful machines have been around since 1800, when horses pulled them. The steamroller was invented in 1865, and the diesel-powered version came along in 1950. The new road rollers are electric and better for the environment.

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Copyright Neil Clark, 2019, courtesy of QEB Publishing.

Fans of the bulldozer will see what a powerhouse this machine really is. With high tracks to allow it to travel through muddy ground, a ripper that claws at the ground and breaks up big lumps of earth, and a blade that can push piles of rock or sand or even knock down a building, the bulldozer is multi-functional. Whoa! Have you seen the Bagger 293? “It’s the biggest digger in the world” and its bucket wheel can dig “240,000 tons of coal a day.” It’s so big that it requires as much electricity as a whole town and needs 5 people to control it. Today, robot diggers controlled remotely, such as sensors, demolition bots, and the XE15R, are also taking on tasks in dangerous, tight, or other situations. A final quiz lets children review what they’ve learned.

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Copyright Neil Clark, 2019, courtesy of QEB Publishing.

Neil Clark’s fascinating looks at aircraft and the biggest machines will delight vehicle lovers of all types. His straightforward text is accessible for all ages while introducing children to vocabulary and concepts that empower them to understand the workings of not only these big machines but smaller, everyday machines as well. Loaded with information and hosted by charming characters who lend a bit of humor to the pages, Clark’s books are wonderful for dipping into again and again.

Clark’s vivid illustrations clearly mark and define the parts of each machine and demonstrate how these work together to power the machine and allow it to perform its job. Nutty and Bolt are there to translate some of the concepts into ideas kids are already familiar with (for example, Nutty wears big shoes to demonstrate the function of a backhoe’s stabilizers). Similarly, Clark incorporates easy-to-understand graphics to explain scientific concepts like air flow and the clustering of hot and cold air molecules. Boxed information and speech bubbles add interest to the pages. One even invites kids to a “where’s Waldo” type of hunt for Nutty and Bolt near a jumbo jet.

Terrific books for introducing all children to machines, how they work, and the science behind them, The Book of Flying Machines and The Book of Diggers & Dozers would be valuable additions to home, classroom, and public library collections. Check out the other books in the series: The Book of Cars and Trucks and The Book of Space Rockets.

Ages 5 – 7

QEB Publishing, 2019 | ISBN 978-071124341

Read a New Book Month with STEM Activity

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Big Machines Coloring Pages

 

Children can have fun coloring and adding their own touches to these printable pages.

Airplane | Hot Air Balloon | Digger | Crane

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You can find The Book of Flying Machines at these booksellers

Amazon | Barnes & Noble | Books-a-Million | IndieBound

celebrate-picture-books-picture-book-the-book-of-diggers-and-dozers-cover

You can find The Book of Diggers & Dozers at these booksellers

Amazon | Barnes & Noble | Books-a-Million | IndieBound

Picture Book Review