18 g
Explanation:
Remember that 1g is equivalent to 1 ml;
1g = 1 mL
100 g = 100 mL
Therefore in an 18% NaOH solution, for every 100 mL, there is 18 g of dissolved NaOH. This is how we derive the percentage solution;
18 g / 100 g = 18%
Answer:
The answer is B) arachnoid granulations
Explanation:
Arachnoid Mater and CSF Circulation:
- The arachnoid is the middle layer of the meninges which are the membranes covering the brain.
- The arachnoid is characterized by the spider web like projections that extend between it and the pia mater (outer membrane of the meninges).
- These projections are located in the subarachnoid space (space below the arachnoid). These projections contain the circulating cerebrospinal fluid or CSF.
- The arachnoid extends into the dural sinuses through the arachnoid granulations in which the CSF is filtered and added to the blood for drainage from the brain.
Answer:
When frost or freezing conditions are expected, you can protect tender plants by covering them with sheets or burlap sacks.
Explanation:
the answer is cirrus.
this is because cirrus clouds are very high and mosty thin.
they can be called "curly" and there are beautiful!
answer A should be your option.
Hoped this helped.
Pharmacodynamics is what you think about when you consider how a medicine will affect the human body.
<h3>What can you say about pharmacodynamics?</h3>
The term "pharmacodynamics" describes the connection between drug concentration at the site of action and the effect that follows, including the progression and severity of therapeutic and unfavorable effects. The interaction of a drug with a receptor at the site of action determines the drug's impact.
<h3>What features of pharmacodynamics are there?</h3>
Pharmacodynamics: A General Overview Chemical Reactions Dose-Response Correlations Interactions between drugs and receptors
<h3>What is a pharmacodynamics example?</h3>
The simultaneous injection of an NSAID and phenprocoumon (an additive interaction) or aspirin and ibuprofen are examples of pharmacodynamic interactions (antagonistic interaction).
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