The answer is:
O2H is a reactive oxygen species (ROS).
The explanation is:
It is known by different chemical names like:
- Dioxidanide, Oxylatooxygen, HOO anion, hydroperoxyl, Hydrogen dioxide (1-), Hydrogen peroxide (1-), etc.
- ROS show antimicrobial activity, so they can be used as antibiotics.
- O2H is also manufactured as a bacteriostatic antibiotic.
-It is generally available in tablet form.
- It is used in the treatment of many gram-positive and gram-negative bacterial infections, like infections of the skin, eye, lungs (bronchitis), urinary tract, bladder, pelvis, etc. (Note: A bacteriostatic antibiotic is one which damages bacterial DNA. Bacterial replication is hindered, so bacterial infection is combatted).
Answer:
O₂H is Reactive Oxygen Species (ROS)
Explanation:
O₂H has many names including:
1- hydroperoxyl
2- Oxylatooxygen
3- Dioxidanide
4- Hydrogen dioxide or Hydrogen peroxide
This compound exists in stable form only in the aqueous state and is formed by the equation shown in the attached picture.
This compound is used mainly in the manufacture of bacteriostatic antibiotics. This is because it can damage the DNA of the bacteria which leads to the termination of its replication and thus, it can be combated.
Hope this helps :)
Answer:
They are called electrodes
Explanation:
The positive electrode is called the anode, the negatively charged ion move to the anode and are called anions. The negative electrode is called the cathode, the positively charges ions move to the cathode and are called cations.
Explanation:
Wind mill
It consist of shaft pole and blades that can rotate .
It converts wind energy into electrical energy .
The shaft of wind mill is connected to shaft of armature of generator .
When the fast moving wind rotates the blades of windmill its shaft rotates, armature rotates hence electricity is produced which is further used for various purposes .
Advantage of using wing energy
it is natural renewable resource
It is eco friendly
Disadvantage :
1. It cant be established everywhere
2. It requires large area
3. It is an expensive project
4. Wind dosen't blow all the time so win energy cant be produced every time
5. Minimum speed of wind required is 15km per hour .
So, the wind turbine generating electricity involves mechanical energy of wing and blades .
Answer:
A wind turbine generating electricity involves :
1. electromagnetic energy.
2. thermal energy.
3. solar energy.
4. mechanical energy.
Explanation:
this is correct for edge2020
2)An internal combustion engine doesn't have a cylinder and a piston.
3)The burning of fuel occurs inside the cylinder with the piston in an internal combustion engine.
4)An external combustion engine doesn't have a cylinder and a piston
Answer: The correct answer is option (3).
Explanation:
Internal combustion engine: An engine which generates motive power by burning the fuel with air inside the engine. Heat produced is used to move piston or to perform other work as they expand.
External combustion engine : An engine where motive power is generated by providing the heat to the fluid present inside the engine from the external source. Here combustion of the fuel is not inside the engine.
Hence,the correct answer is option (3).
The answer is 3) The burning of fuel occurs inside the cylinder with the piston in an internal combustion engine.
Explanation: I took the test :)
The wave speed of a wave consist of frequency of 100 Hz and a wavelength of 0.30 m is 30 m/s.
Wave speed is referred to the distance a wave travels in a particular amount of time, such as the number of meters it travels per second.
Speed = wavelength (λ) × frequency (ν).
Given wavelength = 0.30 m and frequency= 100 Hz
Wave speed = 0.30 × 100 = 30 m/s
So, the wave speed of the wave is 30 m/s.
Learn more about wavelength, here:
Answer: The wave speed of the wave is 30 m/s
Explanation:
Wave speed is defined as the product of its wavelength and frequency.
Mathematically,
where,
= wavelength of the wave = 0.30 m
= frequency of the wave = 100 Hz =
Putting values in above equation, we get:
Hence, the wave speed of the wave is 30 m/s