Aerobic and anaerobic. Determined by the availability of oxygen to the cells.
The organism responsible for cellular respiration is the mitochondria.
The kind that does not get lodged in the pharynx to asphyxiate you.
aerobic and anaerobic
The types of cellular respiration are aerobic respiration and anaerobic respiration. Aerobic respiration requires oxygen and produces more ATP, while anaerobic respiration does not use oxygen and produces less ATP.
There are anaerobic and aerobic types of cellular respiration. Anaerobic (including glycolysis) respiration does not involve oxygen. Aerobic (including the Kreb's, or citric acid, cycle and oxidative phosphorylation) respiration requires oxygen, and generates much more energy than anaerobic respiration.
actually there are two types of cellular respiration:aerobic and anaerobic. aerobic cellular respiration only takes place when there is a presence of oxygen, while anaerobic or also called as fermentation takes place even w/out oxygen.
actually there are two types of cellular respiration:aerobic and anaerobic. aerobic cellular respiration only takes place when there is a presence of oxygen, while anaerobic or also called as fermentation takes place even w/out oxygen.
a normal respiration is one in which oxygen is inhaled and carbondioxide is exhaled. There are two types of respiration 1. breathing 2. cellular respiration in breathing we take in oxygen and release carbondioxide in cellular respiration energy is released but not in breathing
Plant and animal cells. which is basically all types of cells.
the two main types of cellular respiration are aerobic cellular respiration and anaerobic cellular respiration.
in the cytoplasm of the cellIt is common to both types of respiration.In aerobic respiration, formed pyruvate und=dergo oxidative phosphorilation
Cellular respiration occurs in eukaryotic cells, which are cells that contain a nucleus and other membrane-bound organelles. It takes place in the mitochondria, where glucose is broken down to generate energy in the form of ATP.