B.They are members of the same population.
C.They have identical physical characteristics.
D.They live in the same geographical location.
B) Broad ligament
C) Suspensory ligament
D) Ovarian ligament
Answer:
D) Ovarian ligament
The ligament that connects the ovary to the uterus is called the ovarian ligament.
Explanation:
The ovarian ligament is attached to the ovary inferiorly. It connects the ovary to the side of the uterus. Structurally, it is a fibrous band of tissue that lies within the broad ligament.
The Ovarian ligament is the cylindrical band that connects the ovary to the uterus. Other ligaments like the Round ligament, Broad ligament, and Suspensory ligament have other roles within the female reproductive system.
The ligament that connects the ovary to the uterus in a cylindrical band is the Ovarian ligament (option D). The ovarian ligament is a fibrous cord that connects the ovary to the lateral surface of the uterus. This plays an important role in the female reproductive system by helping to keep the ovary in place.
Just to clarify further, the Round ligament is a ligament that connects the front of the uterus to the groin area; the Broad ligament is a broad fold of peritoneum that envelops the uterus, associated structures, and adjacent parts of the abdominal wall; the Suspensory ligament is a peritoneal ligament extending from the hilum of the ovary to the wall of the pelvis and contains the ovarian vessels.
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According to cell theory, all cells carry out the function needed to sustain life.It means all cells must contain DNA as it is a molecule that holds biological instructions to develop, survive, and reproduce.
Thus, option A is correct.
DNA is deoxyribonucleic acid made up of two polynucleotide chains that arranged in a double helical structure.
The main functions of DNA are replication, uncoding information,recombination and gene expression.
DNA plays a vital role and it is considered as primary unit of heredity in all types of organisms.
Therefore,According to cell theory, all cells carry out the function needed to sustain life.It means all cells must contain DNA as it is a molecule that holds biological instructions to develop, survive, and reproduce.
Thus, option A is correct.
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B. Continental drift
C. Magnetic reversal
D. Magnetic minerals
E. Fossils
Answer;
-Sea-floor spreading
Sea floor spreading is process that takes place at mid-ocean ridges, evidence is found in magnetic minerals on the ocean floor.
Explanation;
-Seafloor spreading is a geologic process in which tectonic plates; large slabs of Earth's lithosphere; split apart from each other.
-Seafloor spreading and other tectonic activity processes are the result of mantle convection. Mantle convection is the slow, churning motion of Earth’s mantle. Seafloor spreading occurs at divergent plate boundaries. As tectonic plates slowly move away from each other, heat from the mantle’s convection currents makes the crust more plastic and less dense.
A) a defect in the synthesis of the glucose-6-phosphate dehydrogenase
B) a defect in the mannose-6-phosphate receptor in the Golgi apparatus
C) a defect in the releasing small molecules from digested materials into the cytosol
D) a defect in a hydrolytic enzyme that breaks down polysaccharide
E) a defect in the process of adding a mannose-6-phosphate signal to lysosomal hydrolases
F) a defect in the mannose-6-phosphate receptor in the mitochondria
Answer:
B); D) and E)
Explanation:
B) a defect in the mannose-6-phosphate receptor in the Golgi apparatus.
Explanation: The mannose-6-phosphate receptors (MPR's) in the Golgi apparatus are essential for targeting the mannose-6-phosphate tagged lysosomal proteins to the lysosome.
D) a defect in a hydrolytic enzyme that breaks down polysaccharide.
Explanation: Lysosomes contain enzymes that hydrolyze polysaccharides, therefore any defects in these enzymes causes malfunctioning of the lysosome.
E) a defect in the process of adding a mannose-6-phosphate signal to lysosomal hydrolases.
Explanation: In the Golgi apparatus lysosomal proteins are tagged with mannose-6-phosphate so that they are specifically transported to the lysosomes.