QUESTION IMAGE
Question
in their experiment, dr. wang and his team layered individual fibers of fabric with minute nanowires made of zinc oxide. these wires are only 50 nanometers in diameter. that is 1,800 times thinner than a human hair. alternating fibers of fabric were then coated with gold. as the fabric was handled, the zinc oxide nanowires rubbed against the gold - coated fibers. the resulting pressure generated a piezoelectric charge. the charge was captured by the gold. it could then be fed into a circuit. finally, it could be changed into usable electricity.
wang estimates that just one square meter of fabric woven with nanowire could produce around 80 milliwatts of electricity. this power is sufficient enough to recharge a portable music device.
wang used gold in the research. he expects, though, that less expensive metals would work just as well as conductors. he also said that the metals would not add much to the weight of an article of clothing.
the technology is appealing because usable electricity can be generated as the result of simple, everyday movement. just walking across the room while wearing a piezoelectric shirt would produce power. some scientists have even suggested weaving the fibers into curtains or tents. they believe this will generate electricity from even slight breezes.
dr. wang is excited about the prospect of generating power through clothing. still, he recognizes that there is an important problem that has yet to be addressed. the zinc oxide wires are not waterproof. his team now must devise a method for protecting the nanowires from moisture. otherwise, washing the clothing or getting caught in the rain would strip the fabric of its magic.
many scientists are excited about getting energy from the world around us. one group of scientists from france has begun experimenting with ways to capture energy from rain. they will harness the energy produced by the falling raindrops.
meanwhile, a japanese railway is investigating novel ways to harness the power of walking. the company is conducting experiments involving the use of mats positioned
The sixth paragraph mentions that many scientists are excited about getting energy from the world around us, with examples like French scientists capturing energy from rain and a Japanese railway investigating harnessing power from walking. Option B best summarizes the idea that electricity can be generated as a result of simple, everyday movement (like rain falling, people walking which relates to the overall concept of energy from daily - like movements in a broader sense). Option A focuses on gold fibers in tents which is too specific and not the main idea. Option C focuses on gold - fiber shirts which is also too specific. Option D only mentions breezes touching a piezoelectric shirt which is a narrow example.
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
B. Electricity can be generated as the result of simple, everyday movement.