Explanation:
The anatomical structure that represents the inferior continuation of the head of the caudate nucleus is called the tail of the caudate nucleus. The tail of the caudate nucleus extends inferiorly and curves posteriorly, forming a C-shaped structure within the brain.
The tail of the caudate nucleus is a part of the basal ganglia, which is a group of subcortical structures involved in motor control, cognition, and emotion. The tail of the caudate nucleus is specifically associated with the limbic system, which is involved in emotional processing and memory.
The connections of the tail of the caudate nucleus within the brain's architecture involve both reciprocal connections within the basal ganglia and connections with other brain regions. It receives input from the cortex, particularly the prefrontal cortex, and is connected to other basal ganglia structures such as the putamen and globus pallidus.
The tail of the caudate nucleus also has connections with the hippocampus and amygdala, which are important for memory and emotional processing. These connections allow for the integration of emotional and cognitive information within the basal ganglia circuitry.
Overall, the tail of the caudate nucleus plays a role in the regulation of emotions and the integration of cognitive and emotional processes within the brain.
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The tail of the caudate nucleus represents the inferior continuation of the head of the caudate nucleus. This part of the brain is connected with the lateral ventricles, and is involved in learning, memory, and motor processing.
The anatomical structure that represents the inferior continuation of the head of the caudate nucleus is the tail of the caudate nucleus. The tail of the caudate nucleus is heavily connected with the lateral ventricles, and it plays a crucial role in several functions within the brain's architecture. It is associated with various functions, including learning, memory, and motor processing. The caudate nucleus, including its tail, works with other structures in the brain to enable these complex cognitive functions.
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b. The reaction always spends equal time in the forward and reverse direction.
c. There is equal processing for the concentration of reactants and products.
d. The reaction could spend more time in the reverse direction than in the forward direction.
The statement that is untrue concerning a reversible reaction is The reaction always spends equal time in the forward and reverse direction. The answer is letter B. The reset of the statements are true concerning the reversible reaction.
Answer: grams
Explanation:
According to avogadro's law, 1 mole of every substance weighs equal to the molecular mass and contains avogadro's number of particles.
To calculate the moles, we use the equation:
Now 1 mole of gas weighs = 28 grams
of gas weighs = grams
Thus the mass will be grams.
Hey there!
Molar mass N2 = 28.01 g/mol
Therefore:
28.01 g N2 -------------- 6.02*10²² molecules N2
( mass N2 ?? ) ----------- 25,000 molecules N2
mass N2 = ( 25,000 * 28.01 ) / ( 6.02*10²³ )
mass N2 = 700250 / 6.02*10²³
mass N2 = 1.163*10⁻¹⁸ g
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Answer:
Marie Curie, née Maria Salomea Skłodowska, (born November 7, 1867, Warsaw, Congress Kingdom of Poland, Russian Empire—died July 4, 1934, near Sallanches, France), Polish-born French physicist, famous for her work on radioactivity and twice a winner of the Nobel Prize.
Explanation:
pls give brainlest almost lvled up.
Answer:
Marie Curie is the one who earned the nobel prize twice for her work with radioactivity
During phase transformation Temperature remains same, as the extra heat goes into breaking the force of attraction between the particles. the correct option is option (4) that is 2.26×10⁵ J.
Heat of vaporization is the amount of energy or heat that is required to break the force of attraction between the particles to convert liquid into vapors. Vaporization is an endothermic reaction. So the amount of energy that is required over here is positive. Heat of condensation is negative that is heat is released during reaction.
We know that the heat of vaporization of water is 2260 J/g. So, the total amount of heat required to completely vaporize a 100gram sample of water at its boiling point is 2260×00=2.26×10⁵ J.
Thus the correct option is option (4)
To know Moe about heat of vaporization, here:
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The balanced chemical reaction will be:
C3H8 + 5O2 = 3CO2 +4H2O
We are given the amount of oxygen gas to burn the propane gas. This will be our starting point.
34.0 L O2 ( 1 mol O2 / 22.4 L O2 ) (1 mol C3H8 / 5 mol O2 ) ( 22.4 L C3H8 / 1 mol C3H8) = 6.8 L C3H8