Five traits of natural crystal

Five traits of natural crystal Crystal Rock Quartz's main element is SiO2 (silicon dioxide), which is Quartz. We often refer to transparent quartz as crystals. In fact, they are the same elements. The chemical composition of quartz is silica SiO2, a hexagonal system, a hardness of 7, a specific gravity of 2.66, a refractive index of 1.54-1.55, and a birefringence of 0.0009 with a glass sheen (glass has no birefringence). The common quartz is mostly a bulk body, but occasionally there is a good and transparent crystal. All kinds of crystals contain different trace metals, so that a variety of crystals have their own unique colors. Amethyst contains a small amount of iron and citrine with a small amount of golden sand and a small amount of titanium. SiO2 (silicon dioxide) is generally divided into two types - low-temperature quartz and high-temperature quartz. The crystal growth temperature is about 550-600°C. The low-temperature quartz generated between 550-573°C is the common crystal. The crystal column is hexagonal (hexagonal); 573-600 The high-temperature quartz generated between °C and agate is a common high-temperature quartz.

The most common crystal type of quartz is hexagonal asymmetric sharp-cylindrical low-temperature quartz, which is quartz formed at the surface temperature range. Another type of quartz crystallizes at a higher temperature, known as high-temperature quartz, and is shaped like a six-toed column on a scale. There is also a quartz formed in a high-pressure environment. Usually, deep crystals or celestial impacts can be found. The crystal frequency of this high-temperature quartz crystal releases an average of eight million oscillations per second. In ancient times, people already knew that crystal was full. Energy, but in the past, science was underdeveloped, and crystals could not be studied scientifically. In the modern two centuries, science took off and people gradually discovered the physical properties of crystals. In the late nineteenth century, scientists have discovered that quartz has Piezoelectricity, which exerts pressure on one end of the quartz and releases charge on the other.

In the 1920s, scientists discovered that the quartz has a phenomenon of oscillation. When the crystal is energized, the crystal expands, and when it cuts off the current, it shrinks to its original size; continuously and quickly repeats power supply and power failure, and the crystal continuously swells. Shrinking oscillations, but the frequency of oscillation is extremely preserving. Because the oscillation frequency is high and hidden, the crystal is made into a chip, which is an indispensable raw material for electrical parts. After years of in-depth research on crystals by many experts and scholars, crystal has been identified as having five major functions: focusing refraction, storing data, transmitting information, energy conversion, and energy expansion.

(1) Focused Refraction Focus

In ancient times, humans have discovered that the crystal has a focusing function and can also refract the light. Through this feature, crystals can create convex and concave lenses. In laser applications, the combination of the chip and the speed of light makes it possible to measure the distance between the Earth and the moon in the sound of the countdown, use the characteristics of the crystal to excite the high-energy beam, be powerful and highly parallel, and the precision can be used in ophthalmology. For surgery, giants can be used in destroying incoming missiles in the "Star Wars Plan."

(2) Storage data storage

When a message passes through the crystal, the information is recorded in the crystal. The chip in the computer memory has this function. In the modern times, the spectrometer lenses, prisms, etc. were manufactured. The piezoelectric under the piezoelectric will have positive and negative charges, which is also 0 and 1 in computer binary. That's right, this is the basis of the computer. Ever since its inception, the storage capacity of this kind of memory is amazing, and it can input all the information of the Encyclopedia Britannica in a smaller volume than the eraser.

(3) Delivery message Transfer

The transmission of information in many electrical appliances also depends on the chip, because the frequency of crystal oscillations is fixed, and it is used to transmit signal errors. Since the oscillation of the crystal chip is extremely precise and extremely regular, besides the time control that can be used as an electronic watch, it is also possible to perform the computer's precise calculation, and it can also be used for the transmission of great messages between a computer and a computer. "Crystal" on all kinds of computer cards is to use crystal as a frequency generator.

(4) Energy Conversion Transform

Crystal can convert different energy sources into other energy sources, such as converting electrical energy into light energy, heat energy, sound energy, and magnetic energy, and converting these energy sources into electricity. The conversion of solar energy into electricity requires a collector chip. The energy type can be converted, such as a solar collector chip, which can convert light, electricity, and magnetics. Sound, light, electricity, heat, and magnetism are all energy sources. Energy is immortal, but it is only converted to different types. Crystal is the best matchmaker.

(5) Energy Expansion Amplify

Energy can be enhanced by the crystal and the frequency does not change. For example, when using a loudspeaker, the current is converted into sound energy by quartz (energy conversion), and then the sound wave (enlargement of energy) is enhanced, and there is no occurrence of audible noise (frequency unchanged ). The same frequency electronic signal can be expanded with the same frequency, like the crystal in the radio will receive the air wave, and will be expanded and converted, that is, the sound waves heard by people's ears. And the multiple between this is more than ten million times.

After introducing the scientific analysis and verification of crystals, let's take a look at the classification of crystals. The classification of crystal is various, usually can be roughly divided into three categories: 1. Crystalline Varieties (clear crystal type); 2. Crypto crystalline Varieties (cryptic crystal); 3. Special Varieties (special category).

A. Crystalline Varieties:

Usually we see crystal clusters formed by a series of hexagonal crystals (hexagonal crystals) that belong to Crystalline Varieties, such as white crystal, amethyst, citrine, pink crystal, hair crystal, tiger's eye. Stones are such.

2. Crypto crystalline Varieties:

The appearance of cryptocrystalline crystals is monolithic, not hexagonal crystal clusters, but they also belong to the hexagonal crystal system. However, we cannot observe their hexagonal crystals with the naked eye, because the crystallized bodies are very small and they need to be assisted by a microscope to see the hexagonal crystals. And this kind of crystal is very smooth, because the crystals are filled with "hydrated silica". Agate belongs to this category.

Synthetic citrine jewelry Special Varieties (special category):

This type of crystal and general crystal are large, and they are difficult to classify as crystals or cryptocrystals, so they are classified as special types. For example, Skeleton Crystal (crystal skeleton) with a strange crystal pattern and Phantom Crystal with a pattern of landscape stars in the crystal ( Phantom Crystal) etc. are summarized as such.

Difference between natural crystal and artificial crystal:

Natural crystals spread all over the world. They are prolific in South America such as Brazil and Uruguay, and also in the Qinghai-Tibet Plateau. They grow underground or in deep caves. The pressure needs to be about two to three times the pressure of the ground, and there must be saturated carbon dioxide. The source of groundwater for silicon is continuously supplied, and the temperature needs to be between 550-600°C. After tens of thousands of years, or even more than 10 million years, the silica will form a crystal, waiting for people to explore and discover. This is natural. Crystal expensive reason.

But now, science and technology are developed, and the demand for crystals is increasing even more. (In the past, the scientific function of crystals has been generally described). Therefore, we simulate the growth environment of quartz in the factory and mass-produce crystals to cut chips to meet industrial applications (for example, quartz watches and CPUs in computers require chips). This is artificial crystal, commonly known as crystal.

The crystal produced at the factory grows at a surprising speed, reaching 0.8mm a day. 3cm thick quartz for general industrial use can be produced in about 38 days, so it is far less valuable than natural crystals. The value of artificial crystal is low, and the growth rate is fast. A piece of quartz that is to be ground into a crystal ball can be generated without using half a year, while the beads of other crystal chains have a shorter growth time, but natural crystals have to be used for tens of millions of years. time. Therefore, many profiteers also sell artificial crystals as natural crystals. Be careful! Natural crystals absorb tens of millions of years of energy in nature. This is absolutely unmatched by artificial crystals. We often bring crystals to change our own energy. And magnetic fields.

Science has proven that natural crystals have Piezoelectricity, and natural crystals can release an average of eight million oscillations per second, which is a powerful and abundant energy. In addition, natural crystals have experienced thousands of years of crushing in the earth, and have long-term resonance and interaction with nature, and their forward magnetic fields have hidden huge and infinite energy waves. For us who are exposed to a negative magnetic field for a long period of time, wearing natural crystals helps to transfer their own energy frequency to a stronger positive magnetic field and release them, which affects our ordinary life, work, friends, or academic performance.

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