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The result of ash, cinders, and bombs building up in a steep pile around a volcano's vent is a cinder cone volcano, so the answer is a.
A cinder cone volcano, also known as a scoria cone volcano, is a type of volcano that forms from explosive eruptions. These eruptions eject lava fragments such as ash, cinders, and bombs into the air.
The fragments cool and solidify in the air before falling back to the ground, forming a cone-shaped hill around the volcano's vent.
Cinder cone volcanoes are typically smaller than other types of volcanoes, and they can be found all over the world. They are usually steep-sided, with a bowl-shaped crater at the top. The height of a cinder cone volcano can vary greatly, ranging from tens to hundreds of meters tall.
One of the defining features of cinder cone volcanoes is their composition. They are made up of loose volcanic material such as ash, cinders, and bombs, which are all fragments of volcanic rock. These materials are typically dark in color and can be very porous, making them easy to erode over time.
In summary, cinder cone volcanoes form from explosive eruptions that produce ash, cinders, and bombs that pile up around the vent, forming a steep cone-shaped hill. These volcanoes are typically smaller than other types of volcanoes and are composed of loose volcanic material.
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When ash, cinders and bombs build up in a steep pile around a volcano's vent, the result is a composite volcano.
Further Explanation:
A volcano is an open pore in the earth's crust from which the molten rocks, gases and debris appear on the surface. The volcanoes can be categorized into four types namely composite volcanoes, cinder cones, dormant volcanoes and shield volcanoes.
Cinder cones are the volcanoes that are made up of particles and lava that escapes out of the crust from one vent. These are the simplest form of volcano. When the lava is erupted out of the earth's crust, it is blown into the air and broken into fragments that can further solid define and fall as cinders around the vent. The shape can either be and oval cone or a circular cone. Most of the cinder cones are in shape of a bowl with an average depth of about 1000 feet or less.
Composite volcanoes are those volcanoes which are very steep and symmetrical. The center vent of the volcano is filled with lava and the crest is composed of layers of lava, cinders, blocks, bombs and volcanic ash. Composite volcanoes become dormant and then the cone is destroyed.
The shield volcanoes are totally made up of the lava flows. The lava that comes out of the vent flows in all directions and a broad gently sloping come is formed.
Thus, when ash, cinders and bombs build up in a steep pile around a volcano's vent, the result is a composite volcano.
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1. Learn more about transformation of North American environment brainly.com/question/4712120
2. Learn more about How environment can affect your level of physical fitness
3. Learn more about two social issues that could lead to environmental injustice
Answer details:
Grade: Middle school
Subject: Biology
Chapter: Environmental Education
Keywords:
Ash, cinders, bombs, steep pile, volcano, composite volcano, dormant volcano, shield volcano, cinder cones volcano, magma, lava, crater, rock fragments, central vent.
Answer:
head of the humerus, Acromial end of the clavicle
Explanation:
The shoulder is made up of three bones: the scapula, the clavicle and the humerus (upper arm bone). Two joints in the shoulder allow it to move: the acromioclavicular joint, where the highest point of the scapula (acromion) meets the clavicle at its acromial end (the sternal end of the clavicle is bounded to the sternon), and the glenohumeral joint. The scapula also bounds to the head of the humerus, it is, the distal superior end.
The Scapula or shoulder blade articulates with the Acromial end of the clavicle, and the head of the humerus, forming the Acromioclavicular and Glenohumeral (Shoulder) joints, respectively.
The Scapula, often referred to as the shoulder blade, forms two primary articulations or joints. These are with the Acromial end of the clavicle and with the head of the humerus.
The Acromial end of the clavicle, or collarbone, connects with the Scapula at the Acromioclavicular joint. The 'head' of the humerus is the ball-like structure at the top of the upper arm bone, which fits into a socket in the Scapula to form the Glenohumeral joint, also known as a Shoulder joint. Therefore, the correct answer is 'Acromial end of the clavicle; head of the humerus'.
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Explanation:
mitosis has 1 stage and meiosis had 2 stages.
Answer:
Mitosis and meiosis are nuclear division processes that occur during cell division.
Mitosis involves the division of body cells, while meiosis involves the division of sex cells.
The division of a cell occurs once in mitosis but twice in meiosis.
Two daughter cells are produced after mitosis and cytoplasmic division, while four daughter cells are produced after meiosis.
Daughter cells resulting from mitosis are diploid (46 chromosomes), while those resulting from meiosis are haploid (23 chromosomes).
Daughter cells that are the product of mitosis are genetically identical. Daughter cells produced after meiosis are genetically diverse (genes swap during division).
Mitosis has 1 parent and meiosis produces 2 types of sex cells which fuse at fertilisation.
1.) medicine
2.) lumber
3.) fuel
4.) clothes
5.) tires
6.) disinfectants
7.) paper
The type of mutation that causes sickle cell anemia is called a point mutation.
A point mutation in both copies of the HBB gene results in the hereditary illness sickle cell disease (SCD).
An element of hemoglobin, the protein in red blood cells that carries oxygen, is encoded by this gene. Because of the mutation, hemoglobin molecules clump together to form red blood cells with a sickle shape.
About 100,000 people in the US have the rare disease sickle cell anemia. It primarily affects persons who have ancestors in regions of the world where malaria is common and who also have a gene that offers some protection against anemia. Additionally, this gene causes sickle cell anemia.
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B.Open meadows help to filtr out pollutants in the water.
C. Dense vegetation allows for biological magnification in the water.
D. Open meadows allow for biological magnification in the water.
Answer:
a
Explanation: