Примери за използване на Electrons from other на Английски и техните преводи на Български
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Therefore, they collect missing electrons from other molecules that are nearby.
These chemicals roam freely throughout the rest of the body stealing electrons from other cells.
NAD+ is an oxidizing agent;it accepts electrons from other molecules and becomes reduced.
These are unstable because they contain unpaired electrons and in order tobecome stable they try to steal these electrons from other molecules.
Free radicals“take” electrons from other molecules and thus contribute to the damage or death of the cells with which the body is built.
To return to their stable condition they must steal electrons from other molecules.
Free radicals come with an extra electron, making them prone to steal electrons from other molecules- which they tend to do frequently.
Its high chemical reactivity results from its unstable electron configuration that seeks electrons from other molecules.
A free radical is an unstable molecule that tries to steal electrons from other molecules, thus causing damage.
Ozone's high chemical reactivity is due to the fact that ozone possesses an unstable electron configuration,which forces it to find electrons from other adjacent molecules.
A free radical is an unstable molecule that attempts to carry away electrons from other molecules, hence, resulting in damage.
It has four electrons that are willing to pair up with electrons from other molecules.
Free radicals are unstable atoms with unpaired electrons that steal electrons from other atoms, causing them in turn to become free radicals.
These free radicals, being extremely reactive,have the capability to extract electrons from other molecules.
A"radical" is an atom with an unbalanced electrical charge, andit will seek to steal electrons from other atoms- such as the atoms of our body cells!
When our bodies are exposed to carcinogens,free radicals form that try to steal electrons from other body molecules.
Free radicals have an extra electron which makes them more capable of stealing electrons from other molecules which they tend to do frequently.
When a body is exposed to carcinogens,free radicals are formed that try to steal electrons from other molecules in the body.
When our bodies are exposed to these substances,free radicals are formed that try to steal electrons from other molecules in the body.
When our bodies are exposed to carcinogens, free radicals are formed, andthey try to steal electrons from other molecules in the body.
Free radicals are endowed with an extra electron which makes them more capable of stealing electrons from other molecules which they tend to do frequently.
They can either donate an electron to or accept an electron from other molecules, therefore behaving as oxidants or reductants.”.
They can either donate an electron to or accept an electron from other molecules, therefore behaving as oxidants or reductants.”.
It wants to attach itself to somethingto balance out the missing electron, so it robs an electron from other molecules, thus damaging cells- including bone cells- and creating more free radicals.
Because electrons are found in pairs, the molecule must scavenge its missing electron from other molecules, causing a chain reaction the can damage cells at the molecular level.
Because electrons are found in pairs, the molecule needs to eliminate the lost electron from other molecules, causing a chain reaction that can damage cells at the molecular level.
They have an electrically unbalanced charge,which makes them want to"steal" an electron from other atoms- like our body cells!
Free radicals are“electronically unstable atoms ormolecules capable of stripping electrons from any other molecules they meet in an effort to achieve stability.
The combination that we call a molecule has a need, or more precisely, a voltage,that will draw 5 electrons from certain other molecules.
These include free radicals- electronically unstable atoms of molecules capable of stripping electrons from any other molecules they meet in an effort to achieve stability.