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Bi-Metal, Compound Bar Thermal Expansion Demonstration
This Bi-Metal, Compound Bar Thermal Expansion Demonstration tool is designed to showcase the thermal expansion of metals, making it an educational resource for science teachers, students, and enthusiasts. The demonstration compound features a 5-inch (13cm) long bi-metal strip attached to a wooden handle, with an overall length of 9.5 inches (24cm). The product weighs 26 grams and comes in individual packaging. It is for science education, thermodynamics, and physics studies, demonstrating the principles of thermal expansion and its applications in making thermostats and thermometers.
Product Specifications
| Product Name | Bi-Metal, Compound Bar Thermal Expansion Demonstration |
| Material | Bimetal |
| Type | Thermal Expansion Demonstration |
| Length | 5 inches (13cm) |
| Overall Length | 9.5 inches (24cm) |
| Weight | 26 grams |
| Packaging | Individual packaging |
| Application | Making thermostats and thermometers, science education, thermodynamics, and physics studies |
Applications and Benefits
- for science education, thermodynamics, and physics studies
- Demonstrates thermal expansion of metals
- Helps explain the application of bi-metals in making thermostats and thermometers
- Suitable for science teachers, students, and enthusiasts
Key Features and Benefits
- 5-inch (13cm) long bi-metal strip
- Wooden handle for easy handling
- Individual packaging for convenience
- Lightweight design (26 grams)
Caution:
While this product demonstrates thermal expansion of metals, please note that almost all materials, including liquids, are subject to thermal expansion. Use with caution and follow all instructions provided.
Bacteria Growth Science Kit
Are you looking for a reliable and efficient way to perform biology experiments involving bacteria growth? Look no further than the Bacteria Growth Science Kit! This kit includes all the proper essentials to grow bacteria and perform several different science projects and experiments. Growing bacteria is the main experiment for many biology projects, which is why you need proper materials and supplies. With this kit, you can rest assured that you have everything you need to achieve accurate and reliable results. So why wait? Get your Bacteria Growth Science Kit today and start exploring the fascinating world of bacteria growth and science!
Product Specifications:
| Product Name | Bacteria Growth Science Kit |
| Subject | Science |
| Experiment Type | Growing Bacteria |
| Included Supplies | All the proper essentials to grow bacteria |
| Number of Experiments | Several different science projects and experiments |
Perfect For:
- Biology students
- Science enthusiasts
- Teachers and educators
- Parents looking for educational activities for their children
- Individuals interested in microbiology
- Anyone looking to perform science experiments involving bacteria growth
Heat Conductometer AS3223 (Large Brass Hub, printed instructions)
The Heat Conductometer AS3223 is a valuable tool for comparing the heat conductivity of common metals, including steel, copper, aluminum, iron, and brass. With its precise measurements and large brass hub for enhanced durability and heat transfer, it helps ensure the right metal is used for the job, making it suitable for education, research, and industry applications. The instrument includes a central hole designed to accommodate a holding bar, allowing the device to be mounted either horizontally or vertically for greater flexibility in experimental setups. Each unit comes with an individual package, weighs 140g, and contains printed instructions for easy setup and use, allowing users to accurately compare the thermal properties of various materials.
Product Specifications
| Product Name | Heat Conductometer AS3223 |
| Usage | To compare the heat conductivity of common metals including steel, copper, aluminum, iron, and brass. |
| Weight | 140g |
| Package | Individual package (empaque individual) |
| Instructions | Printed instructions for easy setup and use |
| Mounting Feature | Central hole for holding bar, allowing horizontal or vertical mounting |
| Materials | Brass hub, steel, copper, aluminum, iron, and brass |
Applications and Benefits:
- For science students in high school or college studying thermal properties of materials, allowing for hands-on experiments and comparisons.
- Valuable for professionals in the field of metallurgy or materials science researching heat transfer and materials properties, providing accurate and reliable data.
- Useful for manufacturing companies that need to test the heat conductivity of metals for various applications, such as thermal management and energy efficiency.
- Beneficial for research institutions studying heat transfer and materials properties, enabling the exploration of new materials and technologies.
- Essential for engineering firms specializing in thermal management or energy efficiency, providing a precise tool for comparing heat conductivity of common metals.
Key Features and Benefits
- Large brass hub for enhanced durability and heat transfer
- Central hole for holding bar, allowing horizontal or vertical mounting
- Printed instructions for easy setup and use
- Individual package for convenient storage and transportation
- Precise measurements for accurate comparison of thermal properties
Metal Electrodes, Set Of 6
This set of 6 metal electrodes is ideal for use in electrovoltaic cells or various chemistry and physics experiments. Each electrode is made from different metals, including iron, copper, zinc, aluminum, steel, and magnesium. The electrodes are carefully sized at approximately 120mm x 18mm x 0.75mm (5" x 1/2" x 1/32"), making them easy to handle and suitable for classroom or laboratory use. Their consistent dimensions and material composition ensure reliable performance during experiments. These electrodes are perfect for students, educators, or lab technicians looking to demonstrate electrochemical reactions or explore the properties of different metals in practical experiments.
The set of metal electrodes includes various metals that are commonly used in experiments involving electrovoltaic (or galvanic) cells, electrochemistry, and other physics and chemistry experiments. Here's a brief overview of how these metals might be used:
1. Iron (Fe)
- Properties: Iron is a reactive metal and can oxidize easily.
- Use: Commonly used in electrochemical reactions, such as rusting experiments, or as one electrode in electrochemical cells.
2. Copper (Cu)
- Properties: Copper is a good conductor of electricity and is relatively unreactive compared to other metals.
- Use: Frequently used as a positive electrode in electrovoltaic cells, due to its stability and conductive properties.
3. Zinc (Zn)
- Properties: Zinc is highly reactive and easily gives up electrons.
- Use: Commonly used as the negative electrode in electrochemical cells, like in a simple zinc-copper battery.
4. Aluminum (Al)
- Properties: Aluminum is a lightweight, reactive metal with a natural oxide layer that protects it.
- Use: Often used in chemical reactions to produce hydrogen or as an electrode in electrolytic cells.
5. Steel (an alloy of iron)
- Properties: Steel is more resistant to corrosion than pure iron, thanks to the presence of carbon and sometimes other elements.
- Use: Steel can be used in experiments similar to iron, but it is less prone to rusting.
6. Magnesium (Mg)
- Properties: Magnesium is a highly reactive metal, often used in pyrotechnics due to its bright flame when ignited.
- Use: Magnesium is frequently used in electrochemical cells as a very reactive metal, often as a negative electrode.
Applications:
- Electrovoltaic Cells (Galvanic Cells): You can use these metals to build simple electrovoltaic cells, where two different metals act as electrodes and a solution (electrolyte) allows ions to flow, generating electricity.
- Corrosion and Rusting Experiments: The set can be used to observe how different metals react with the environment (such as exposure to water or air).
- Electrolysis: These metals can be used in electrolysis experiments to separate chemical compounds into their elemental forms using an electrical current.
Key Features
- Set of 6 metal electrodes: iron, copper, zinc, aluminum, steel, magnesium
- Ideal for electrovoltaic cells and experiments
- Electrodes Aprox measure 127mm x 18mm x 1mm (5" x 1/2" x 1/32")
- Durable and reliable for laboratory use
- Suitable for chemistry and physics experiments
- Perfect for educators, students, and lab professionals
Product Specifications
| Electrode Material | Iron, Copper, Zinc, Aluminum, Steel, Magnesium |
| Dimensions | 127mm x 18mm x 1mm (5" x 1/2" x 1/32") |
| Applications | Electrovoltaic cells, chemistry experiments, physics experiments |
| Quantity | 6 electrodes (1 of each metal) |
| Usage | Educational labs, classrooms, science experiments |
| Weight | Lightweight, easy to handle |
Perfect for science students, teachers, lab technicians, science hobbyists, educational institutions
Ph Paper Roll, Universal And Special Ranges
Our Ph Paper Roll is a versatile product that can be used for a variety of purposes. Whether you need to test the acidity or alkalinity of a solution, this ph paper roll can help you get accurate results. The paper comes in both universal and special ranges, with multiple ph ranges. This makes it suitable for a wide range of applications, from scientific experiments to industrial processes. The ph paper roll is easy to use and provides quick and reliable results, making it an essential tool for anyone who needs to test ph levels on a regular basis.
Product Specifications
| Product Name: | Ph Paper Roll |
| Type: | Universal and Special |
| Ranges: | 0.3-2.3, 0.0-6, 1.7-14, 1-14, 2-9, 3.6-6.1, 4.5-10, 5.1-7.2, 6.0-7.7, 7-14, 7.5-9.5, 7.9-9.8 |
| Paper: | Universal |
| Special: | Ranges 0.3-2.3 |
| Weight: | 22gr |
Applications and Benefits:
- Laboratory technicians
- Science students
- Chemical engineers
- Research facilities
- Medical professionals
- Water treatment plants
Caution:
Not for direct human consumption. Handle with care.
Slime Science Kit (Polymer)
Get ready to explore the world of science with the Slime Science Kit (Polymer)! This kit is perfect for those who are interested in learning about polymers, chemistry, and material science. With this kit, you'll get to experiment with different materials and create five different types of slime, including Glooze, Wiggly Wonder, Power Putty, Flip-Flop Slime, and more.
You'll also get to learn about various chemicals such as borax, guar gum, starch, and polyvinyl acetate and their properties through hands-on experiments. This kit is designed to provide you with a fun and educational experience that will help you discover your talents in the field of science.
While this set may not come in a colorful box, the instructions are available online for your convenience. So, get ready to dive into the exciting world of slime and science with the Slime Science Kit (Polymer)!
Key Features:
- Learn about the scientific world of slime and polymers
- Discover your talents in chemistry and material science
- Create 5 different types of slime
- Perform hands-on experiments with borax, guar gum, starch and polyvinyl acetate
- Instructions available online
- No colorful box included
Product Specifications:
| Product Name | Slime Science Kit (Polymer) |
| Product Category | Science |
| Included Materials | Materials to make 5 different slimes: Glooze, Wiggly Wonder, Power Putty, Flip-Flop Slime, and more |
| Learning Objectives | Learn about the scientific world of slime, chemistry, polymers, and material science. Discover talents in these areas and understand how scientists connect small molecules of gases and liquids to make solid plastics and rubbers. |
| Chemicals Included | Borax, guar gum, starch, and polyvinyl acetate |
| Packaging | This set does not have a colorful box. Instructions are online. |
Similar Products
- Chemistry Experiment Kit
- Polymers and Plastics Kit
- Science of Materials Kit
- Ultraviolet Experiment Kit
- Slime Making Kit
Note: These are similar products, and each product is different, so research is required to find the best fit for your needs.
CAUTION: This kit involves the use of chemicals such as Borax, Guar Gum, Starch and Polyvinyl Acetate. Please handle with care and follow all instructions carefully to avoid any hazards.
Perfect for:
- Children aged 8-12 who are interested in science and chemistry
- Parents looking for educational and engaging activities for their children
- Teachers who want to incorporate hands-on experiments into their science curriculum
- Science enthusiasts who want to learn more about polymers and material science
Starch Test Science Kit
The Starch Test Science Kit is the perfect tool for detecting and identifying starch in different fruits, vegetables, and other objects around you. With everything you need included in the kit, you can easily conduct experiments and learn about the science behind starch. This kit is ideal for both students and science enthusiasts who want to explore the world of starch and its properties. Get ready to discover the fascinating world of starch with the Starch Test Science Kit!
| Product Name | Starch Test Science Kit |
| Product Type | Science Kit |
| Purpose | Detect and Identify Starch in different fruits, vegetables and other objects |
| Included in the Kit | Everything needed for the test |
| Suitable for | Science enthusiasts of all ages |
| Brand | Science Starch Test Science Kit |
Similar Products
- Protein Test Science Kit
- Sugar Test Science Kit
- Fat Test Science Kit
- DNA Extraction Kit
- Enzyme Activity Assay Kit
Note: These are similar products, and each product is different, so research is required to find the best fit for your needs.
CAUTION: This product contains chemicals and should only be used under adult supervision. Do not ingest or inhale any of the substances included in this kit. Keep out of reach of children.
Perfect for:
- Science enthusiasts
- Students learning about carbohydrates and nutrition
- Teachers looking for hands-on science activities
- Parents looking for educational toys for their children
- Home-schooling families
- Individuals interested in food science and cooking
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