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ANTISHOCK Screen protector for Hisense U912A

(1 customer review)

$5.99

1. Antishock screen protector provides high resistance to bumps and scratches.
2. High light transmission ratio of 99.99% transparency, keeping your screen in Full HD.
3. 0.32mm thickness maintains the original touch sensitivity.
4. Easy installation, dust free, bubble free.
5. All Antishock protectors are exclusively designed for each model.

500 in stock

Cantidad Precio
1 - 49 $5.99
50 - 99 $2.99
100 - 499 $1.99
500+ $0.99

Description

Antishock resistance

Video will open in a new window


Anti-Shock – Anti-Scratch – Anti-sliding – Transparent – HD

¡¡¡IMPORTANT!!! 

“DUE TO THE CURVED EDGE DESIGN OF SOME MODELS, OUR SCREEN PROTECTOR IS MADE TO BE A LITTLE SMALLER THAN YOUR DEVICE’S SCREEN. THIS IS TO PREVENT THE PROTECTOR FROM OVERLAPPING THESE CURVED EDGES, WHICH MAY CAUSE BUBBLES OR PEELING AROUND OF THE BORDERS.


THE ANTISHOCK IS NOT TEMPERED GLASS

 

ANTISHOCK is an innovative and advanced ANTI-SHOCK and ANTI-SCRATCH screen protector. Composed of several layers of nano-supramolecular materials designed to absorb, disperse and withstand accidental bumps and scratches with the advantage that it does not break being much more durable and maintaining a transparency of 99.9% de    Its thickness is 0.32mm which provides a perfect balance between protection and tactile sensitivity.

We invite you to watch our video with all the resistance tests in which you will be able to verify the effectiveness of this Antishock protector in extreme conditions.

 

5 LAYERS DESIGNED TO ABSORB IMPACTS

 

– Adhesive layer with air bubble release

– Layer of shock absorption

– Impact dispersion layer

– Ultra resistant elastic layer

– Anti-scratch silicone coating.

 

                ANTISHOCK – ANTISHOCK – SENSITIVITY TACTILE – FULL HD – WATER REPELLENT – ANTI- SCRATCH               

Additional information

Weight 0.2 kg

1 review for ANTISHOCK Screen protector for Hisense U912A

  1. Terry

    Performance-Enhancing Substances

    Performance-enhancing substances (PES) are chemicals or drugs intended to improve physical or mental performance in individuals, often athletes.

    These substances can be used to enhance strength,
    speed, endurance, or recovery time.

    Types of Performance-Enhancing Substances

    There are various types of PES, including:
    – Stimulants: Caffeine, amphetamines, and cocaine.
    – Anabolic Steroids: Synthetic hormones that mimic the effects
    of testosterone.
    – Beta-Blockers: Used to mask symptoms of anxiety or improve performance in sports.

    – Dietary Supplements: Includes substances like creatine and
    amino acids.

    How Do They Work?

    PES work by altering the body’s physiology. For example, stimulants increase alertness and energy levels, while anabolic
    steroids promote muscle growth and recovery by mimicking male
    hormone effects.

    Uses and Misuses

    While PES can be used legitimately for medical purposes, such as treating conditions like ADHD
    or improving heart function, they are often misused to enhance athletic
    performance in ways that violate sports regulations.

    Health Risks

    Misuse of PES carries significant health risks, including:
    – Cardiovascular Issues: Increased risk of heart attacks and strokes.

    – Organ Damage: Potential for liver, kidney, and other organ damage.

    – Mental Health Effects: Mood swings, paranoia, and anxiety.

    Detection Methods

    Athletes are often tested through urine or blood tests for the presence of PES.

    These tests can identify both banned and legal substances in competitive sports.

    Legal Status

    The possession and use of certain PES are illegal without a valid
    medical prescription. The sale and distribution of these substances
    is strictly regulated under laws like the Controlled Substances Act in the U.S.

    Conclusion

    Performance-enhancing substances offer temporary gains in performance but come
    with substantial health risks and legal consequences.
    Their misuse undermines fair competition and raises ethical
    concerns in sports.

    Performance-enhancing Substances

    Performance-enhancing substances are chemicals or drugs designed to improve physical and mental capabilities beyond
    the limits of natural human performance.
    These substances have been used historically in various forms of sport, art, and intellectual activities to gain a
    competitive edge.

    Definition

    Performance-enhancing substances can be broadly categorized into
    different types based on their mechanisms of action, intended effects, and regulatory classifications.
    The most common categories include anabolic steroids, stimulants, ergogenic aids, and various other substances designed to enhance strength, endurance, or cognitive function.

    Types

    The use of performance-enhancing substances is not a new phenomenon. Ancient athletes
    in Greece and Rome used substances like mushrooms and herbs to boost their performances.
    In modern times, the list of these substances has expanded significantly.
    The following are some common types:

    Anabolic Steroids: Synthetic derivatives of testosterone that
    promote muscle growth and strength.

    Stimulants: Caffeine, amphetamines, and other compounds that increase energy levels and mental
    focus.

    Ergogenic Aids: Substances that improve work output, such as certain herbs and plant extracts.

    Adaptogens: Compounds like ginseng or ashwagandha that help the body adapt to stress and
    improve resilience.

    Actoprotectors: Substances that protect cells from
    damage caused by fatigue or overwork.

    Nootropics: Cognitive enhancers like piracetam, which improve memory and focus.

    CNS Agents: Drugs that affect the central nervous system to enhance alertness and motivation.

    Painkillers: Opioids and other medications used to manage pain during training or competition.

    Sedatives and Anxiolytics: Substances that reduce stress and anxiety, potentially improving performance.

    Blood Boosters: Erythropoietin (EPO) and other agents designed to increase oxygen transport in the blood.

    Gene Doping: Experimental techniques to modify an athlete’s genes
    for enhanced performance.

    Prohormones: Hormone precursors that are converted into anabolic steroids within the body.

    History

    The use of performance-enhancing substances dates back thousands of years, with early examples
    including mushrooms and herbs in ancient civilizations.
    In the 19th and 20th centuries, the development of synthetic hormones like testosterone
    and amphetamines revolutionized the approach to enhancing athletic performance.

    Risk Factors

    While performance-enhancing substances can offer
    significant benefits, they also carry serious risks.

    These include physical health issues such as liver damage,
    kidney failure, and cardiovascular problems.
    Additionally, the misuse of these substances can lead to psychological dependence, addiction, and legal consequences.

    Usage in Sport

    Sport is one of the most common areas where
    performance-enhancing substances are used. Athletes from
    professional leagues to amateur levels have been accused of using these substances to gain a competitive edge.
    The use of these substances has led to numerous controversies, with debates over
    fair competition and the ethics of enhancing natural abilities.

    See Also

    For further reading on performance-enhancing substances, explore:

    Performance-Enhancing Drug

    Anabolic Steroid

    Stimulant

    Erythropoietin

    References

    (1) World Anti-Doping Agency (WADA). (2019). *Prohibited Substances List*.
    Retrieved from WADA official website

    (2) National Institute on Drug Abuse (NIDA). (2020).
    *Performance Enhancing Drugs*. Retrieved from NIDA official website

    External Links

    (1) World Health Organization – Substance Abuse and Addiction

    (2) National Library of Medicine – Drug Abuse

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