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Metalloids

63 Sentences | 8 Meanings

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The presence of metalloids like antimony in water can be harmful to human health.
Metalloids can exhibit both metallic and nonmetallic characteristics.
The properties of metalloids like boron and silicon make them essential components in the development of advanced ceramics.
Metalloids like arsenic are used in wood preservation to protect against insects and decay.
Metalloids like boron and silicon are used in the production of glass.
The presence of metalloids like antimony in the environment can have negative effects on ecosystems.
Metalloids are important elements for scientific research, as their unique properties make them useful in a variety of experiments.
The properties of metalloids are intermediate between those of metals and nonmetals.
Metalloids like bismuth have low toxicity and are used in some medical applications, such as in antacids.
Metalloids like arsenic and antimony have a wide range of industrial applications.
Many semiconductors, such as germanium and silicon, are metalloids.
The study of metalloids and their properties is important in materials science and electronics.
Metalloids are used in the production of electronic components such as computer chips.
Metalloids can be used to create alloys that have unique properties.
Metalloids are semiconducting elements, meaning they can conduct electricity to some extent.
Some metalloids like selenium are essential micronutrients for human health.
Metalloids can be used to create alloys with desirable properties.
Metalloids like silicon and germanium are used in electronic devices because of their unique properties.
Metalloids like tellurium are important components of some solar cells.
Metalloids have a unique combination of properties that make them useful in a wide range of applications.
Metalloids can be found on the periodic table between metals and nonmetals.
Metalloids are elements with unique properties.
Metalloids such as tellurium and selenium are used in the production of photovoltaic cells.
Metalloids are sometimes referred to as semimetals.
Some metalloids, like tellurium, are used to make alloys with metals such as copper and stainless steel.
Metalloids such as boron and silicon are used in the production of various ceramics.
Some metalloids like selenium are essential micronutrients for animals and humans.
The unique properties of metalloids make them useful in a variety of applications.
Metalloids have varying degrees of electrical conductivity.
The unique properties of metalloids make them useful in a variety of applications, from solar cells to electronic components.
The semiconductor industry relies heavily on metalloids like gallium.
The unique properties of metalloids make them useful in a variety of industries.
Metalloids can conduct electricity, but not as well as metals.
Metalloids like polonium have been used in nuclear reactors for their ability to absorb neutrons.
Metalloids have a unique combination of physical and chemical properties.
Some metalloids, like selenium, have important biological functions in trace amounts.
The semiconductor industry heavily relies on metalloids such as silicon and germanium.
The properties of metalloids like arsenic make them useful for the production of pesticides.
Metalloids like silicon and germanium are used extensively in electronics.
Metalloids are found in groups 13 to 17 of the periodic table.
The properties of metalloids make them useful in a variety of industries, from manufacturing to electronics.
The properties of metalloids make them useful in many industrial applications.
Some metalloids like boron are used in the production of super-strong materials.
Metalloids like silicon are used to make microchips, which are the basis of modern electronics.
Many metalloids have properties that make them useful in the production of glass and ceramics.
The periodic table shows the location of metalloids between metals and nonmetals.
The properties of metalloids can be fine-tuned to create new materials with unique properties.
Metalloids such as germanium are used in infrared technology to detect radiation.
The properties of metalloids, such as their conductivity and luster, are intermediate between those of metals and nonmetals.
The periodic table lists metalloids, such as boron and silicon, between metals and nonmetals.
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