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BT Music Arc Plasma Loudspeaker Wireless Transmission Experiment Desktop Toy Model
Features: Fun Educational Device: The BT speaker is an excellent tool for educators and students alike, providing a hands-on approach to learning about complex scientific principles such as wireless lighting and wireless transmission. Unique Decor: Beyond its educational value, this artificial lightning generator serves as a unique piece of home decor. Its ability to emit artificial lightning and play music adds a touch of intrigue and novelty to any living space. Innovative Music Player: The wireless speaker stands out with its BT feature that allows it to play square wave music. This feature not only provides a unique listening experience but also creates a captivating visual display as the spark gap arcs dance to the rhythm of the music. Thoughtful Gift: For those passionate about science and music, the artificial lightning toy is a perfect gift. It offers an engaging and fun learning experience, making it a gift that is both enjoyable and memorable. What You Will Get: This Tesla coil comes with a set of detailed instructions and necessary accessories. Plus, the inclusion of a square wave music library adds an element of entertainment.
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D1 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
D1 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
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D2 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
D2 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
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D3 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
D3 Low Temperature Stirling Engine Assembled Electricity Generator Heat Experiment Physical Generator Model with Flywheel Design
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Laplace experiment or non-Laplace experiment?
A Laplace experiment is a random experiment in which all outcomes are equally likely. A non-Laplace experiment is a random experiment in which all outcomes are not equally likely. An example of a Laplace experiment is rolling a fair six-sided die, where each outcome has an equal probability of 1/6. An example of a non-Laplace experiment is drawing a card from a standard deck, where the probability of each outcome depends on the number of cards remaining in the deck.
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What is a pre-experiment for a physics experiment?
A pre-experiment in physics is a preliminary investigation or trial run conducted before the actual experiment. It helps researchers identify potential issues, refine the experimental setup, and determine the feasibility of the experiment. This allows researchers to make necessary adjustments and improvements before conducting the main experiment, ensuring its success and accuracy.
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Why is the Rutherford experiment called the scattering experiment?
The Rutherford experiment is called the scattering experiment because it involved firing alpha particles at a thin gold foil and observing how they scattered after hitting the foil. This scattering of alpha particles provided crucial evidence for the existence of a small, dense nucleus within the atom, as most of the alpha particles passed through the foil with little deflection, but a small fraction were scattered at large angles. This unexpected scattering pattern led to the development of the nuclear model of the atom and revolutionized our understanding of atomic structure.
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Why is Rutherford's scattering experiment called a scattering experiment at all?
Rutherford's experiment is called a scattering experiment because it involved firing alpha particles at a thin gold foil and observing how they scattered after hitting the foil. The term "scattering" refers to the process of particles being deflected from their original path as a result of collisions with the atoms in the foil. By analyzing the pattern of scattering, Rutherford was able to deduce the structure of the atom and propose the existence of a dense, positively charged nucleus at its center. This experiment was crucial in advancing our understanding of atomic structure and the behavior of subatomic particles.
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Portable Professional 1000X Magnification Optical Microscope 4.0-inch TFT Color Screen Versatile Science Experiment Kit for Elementary and Middle School Students
features a 4.0 inch TFT color display screen, allowing you to view microscopic details clearly and intuitively. Built-in 1 million chip ensures accurate imaging and a real, delicate picture. With up to 1000X magnification, the microscope allows for clear-definition observation, making detailed observation more realistic. It comes with a built-in photo and video recording system that makes it easy for you to document your observations and findings. Whether you're a student, researcher, or hobbyist, this intelligent microscope is perfect for various applications, including parent-child interaction, scientific research, education, hobbyist exploration, teaching demonstration, observation of specimens, insects and birds, vegetables and fruits, and so on. Features: 【4.0 Inch TFT Display with Touching Buttons】:The intelligent microscope features a 4.0 inch TFT color display screen, allowing you to view microscopic details clearly and intuitively. User-friendly design, with dual touching buttons on the base and screen, the microscope is designed for easy and fast operation, making it suitable for both beginners and professionals. 【Powerful Magnification Multi-segment Zooming】:Built-in 1 million chip ensures accurate imaging and a real, delicate picture. With up to 1000X magnification, the microscope allows for clear-definition observation, making detailed observation more realistic. Adjustable observation magnification design allows you to see more details and meet different observation needs, providing a versatile tool for various research and study needs. 【Intelligent Photo Taking Video Recording】:It comes with a built-in photo and video recording system that makes it easy for you to document your observations and findings. By simply pressing a button, you can instantly capture memorable moments as you observe, making it easy to preserve important findings or interesting discoveries. The microscope supports up to a 32G memory card, providing ample space to store all your experimental records and observations. 【Upgraded 2-in-1 Design】:The intelligent microscope features a newly upgraded 2-in-1 design that allows direct observation in nature and converts to a desktop microscope when attached to the base for more professional indoor observations. Whether you're exploring the microscopic world in nature or making professional observations indoors, this microscope is designed to meet your needs. 【Dual Complementary Light Sources Long Endurance Battery】:It features a dual light source design on the machine and base, illuminating the microscopic world for clearer observations. It will intelligently adjust its brightness according to the environment, ensuring clear visibility of both transparent and opaque substances. Built-in a high-capacity lithium battery, the microscope provides long-lasting power for extended use, and features a Type-C interface for fast charging, ensuring that you can quickly recharge the device and continue your exploration without interruption. 【Enhances Discovery Experience】:The microscope allows your child to observe the microscopic world clearly, enhancing the fun of the discovery and making learning fun and engaging. They can share the viewing screen with their friends, adding the fun of interaction and collaborative learning, making it a perfect educational tool for classroom or group study. 【Versatile Use】:Whether you're a student, researcher, or hobbyist, this intelligent microscope is perfect for various applications, including parent-child interaction, scientific research, education, hobbyist exploration, teaching demonstration, observation of specimens, insects and birds, vegetables and fruits, and so on.
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Model Lobes of Brain
Depicts the fissures and sulci that separate the lobes of the brain in a detailed model.The four lobes frontal, parietal, temporal and occipital are named after the skull bone that overlies each lobe.Size 150mm x 130mm x 230mmWeight 500g
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Functioning of Brain Model
Premium quality anatomical model of the functional human brain that provides an incredible amount of realism and detail.Model is colour coded to allow students to study the regions within the cerebral cortex, which are allied to certain
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Hot Air Stirling Engine Electricity Generator Motor Physical Dual Engine Model with LED Bulb Dollar Flywheel Design Science Experiment with CNC Aluminum Alloy Base
Hot Air Stirling Engine Electricity Generator Motor Physical Dual Engine Model with LED Bulb Dollar Flywheel Design Science Experiment with CNC Aluminum Alloy Base
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Is the experiment strange?
Yes, the experiment is strange. The idea of using a virtual reality headset to create a simulated out-of-body experience is not a common or typical experiment. It is an unconventional approach to studying the human brain and consciousness. The experiment challenges traditional methods of studying the mind and perception, making it unusual and intriguing.
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What was Helmont's experiment?
Jan Baptista van Helmont conducted an experiment to determine the source of plant growth. He planted a willow tree in a pot filled with 200 pounds of dry soil and watered it only with rainwater for five years. After five years, he found that the tree had gained 164 pounds in weight, while the soil had lost only 2 ounces. Helmont concluded that plants do not grow by taking up soil, but rather from water alone. This experiment was one of the first to demonstrate the concept of photosynthesis.
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Is the experiment funny?
The experiment is not intended to be funny. It is a serious scientific study designed to investigate a specific hypothesis or research question. The focus is on collecting data and analyzing results to draw meaningful conclusions, rather than on creating humor or entertainment.
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What was Aristotle's experiment?
Aristotle's experiment involved observing the behavior of animals, particularly birds and fish, in order to understand their movement and behavior. He conducted this experiment by carefully observing and documenting the actions and interactions of these animals in their natural environment. Through this experiment, Aristotle sought to gain insight into the natural world and develop a deeper understanding of animal behavior and movement. His observations and findings laid the groundwork for his theories on biology and natural philosophy.
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