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tigry1 [53]
3 years ago
15

Dyspepsia is another name for which common disorder?

Medicine
1 answer:
Stels [109]3 years ago
8 0

Answer:

Indigestion

Explanation:

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Why is a patient who leads a sedentary lifestyle at increased risk for developing a venous thromboembolism (VTE)
Oxana [17]

Because Muscles that are inactive have a higher incidence of venous stasis.

Venous stasis can occur when the muscles of the extremities are inactive. Venous stasis is a risk factor in Virchow's triad.

<h3>What Is Venous Thromboembolism?</h3>

Venous thromboembolism (VTE), additionally called blood clots, is a sickness that consists of deep vein thrombosis and pulmonary embolism. A deep vein thrombosis (DVT) takes place while a blood clot bureaucracy in a deep vein, typically withinside the decrease leg, thigh, or pelvis.

Your risk of developing VTE is highest after major surgery or serious injury, or when you have heart failure, cancer, or a heart attack. Swelling, redness, and pain are some of the symptoms of deep vein thrombosis. Pulmonary embolism can cause sudden chest pain and shortness of breath.

VTE sometimes occurs without any obvious signs. Medicines to help prevent more blood clots from forming or to clear up severe vein blockages are the mainstay of treatment for VTE.

To learn more about venous thromboembolism (VTE) from the given link

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4 0
1 year ago
The thick segment of the ascending limb of the nephron loop is permeable to
Mars2501 [29]

Answer:

The answer is E. Sodium, potassium, and chloride ions but not water.

Explanation:

The thick segment of the ascending limb of the nephron loop is permeable to: sodium, potassium and chloride ions, but not water.

In this ascending branch are specific ionic channels for each of them. This ascending area of the henle handle is continued with the distal contoured tube where reabsorption and ion secretion occur again to further converate the urine.

3 0
3 years ago
What boxing match included one person biting off the other person's ear.
natima [27]

Answer:

mike tyson is the one who bit a persons ear off and that person was evander holyfield

Explanation:

have a good day

4 0
2 years ago
what clinical manifestations does the nurse recognize when a patient has had a right hemispheric stroke? quilzet
jolli1 [7]

The effects of a right hemisphere stroke may include: Left-sided weakness or paralysis and sensory impairment. Denial of paralysis or impairment and reduced insight into the problems created by the stroke (this is called "left neglect") Visual problems.

<h3>What is impacted by a stroke in the right hemisphere?</h3>

A right hemisphere stroke may result in sensory impairment and left-sided weakness or paralysis. Denial about paralysis or impairment as well as diminished awareness of the problems caused by the stroke are referred to as "left neglect." Visual issues., such as an inability to see each eye's left visual field.

<h3>Does a stroke on the right side impact speech?</h3>

Speech and communication issues are typically seen in right-brain injured stroke survivors. Because of their weak or uncontrolled left side facial and mouth muscles, many of these people have trouble pronouncing spoken sounds correctly. Dysarthria is the term for this.

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4 0
1 year ago
Give an example of a 2 x 2 matrix game with exactly three nash equilibria in pure strategies. Explain.
weeeeeb [17]

Answer:

A Nash equilibrium is a profile of strategies (s1,s2) such that the strategies are best responses to each other, i.e., no player can do strictly better by deviating. This helps us to find the (pure strategy) Nash equilibria.

To start, we find the best response for player 1 for each of the strategies player 2 can play. I will demonstrate this by underlining the best responses:

ABCA1–,10,101–,−10B10–––,01,11,10C−10,110–––,11,1

Player 1 is the row player, player 2 is the column player. If 2 plays column A, then player 1's best response is to play either row A or C, which gives him 1 rather than 0 as payoff. Similarly, the best response to column B is row A, and to column C it is row B.

Now we do the same for player 2 by underlining the best responses of the column player:

ABCA1–,1–0,10–––1–,−10B10–––,01,11,10–––C−10,1–10–––,11,1

So, if player 1 plays row A then player 2 best responds either with column A or column C, giving him 1 rather than 0. We also find the best responses for row B and C.

Now a pure strategy Nash equilibrium is a cell where both payoffs are underlined, i.e., where both strategies are best responses to each other. In the example, the unique pure strategy equilibrium is (A,A). (There may also be mixed strategy equilibria.) In all other cells, at least one player has an incentive to deviate (because it gives him a higher payoff).

EDIT: How to compute mixed strategy equilibria in discrete games?

In a mixed Nash strategy equilibrium, each of the players must be indifferent between any of the pure strategies played with positive probability. If this were not the case, then there is a profitable deviation (play the pure strategy with higher payoff with higher probability).

Consider player 2. He plays column A with probability p, B with probability q, and C with probability 1−p−q. We need to find p,q such that player 1 is indifferent between his pure strategies A,B,C. He is indifferent between row A (left hand side) and row B (right hand side) if p,q are such that

p+10q−10(1−q−p)=q+10(1−p−q).

He is indifferent between B and C if

q+10(1−p−q)=p+q+1−q−p=1.

You just have to solve the first condition for q as function of p, substitute q in the second condition and you have p. Inserting p again in the first gives you q.

Now we do the same with strategies for player 1 such that player 2 is indifferent. Player 1 plays A with probability x, B with probability y and C with probability 1−x−y. The two conditions that follow are

1x+10y−10(1−x−y)=x+10(1−x−y)x+10(1−x−y)=1

Solve this again to find x,y. This is a mixed-strategy equilibrium, because neither player has a profitable deviation. Remember, we constructed the profile (x,y;p,q) such that the other player is indifferent between his pure strategies. So, no matter how the other player unilaterally deviates, his expected payoff will be identical to that in equilibrium (x,y;p,q). In general, depending on the game and solutions x,y,p,q, there may be infinitely many mixed Nash equilibria, or none. The more pure strategies there are, the more tedious it is to compute mixed strategy equilibria, since we solve for N−1 variables for each player (N being the number of pure strategies of the other player).

Moreover, to find all equilibria, if there are more than 2 actions for a player, then every possible combination of actions has to be checked. Here, a player has 3 actions, and a mixed strategy equilibrium could entail mixing over all three or just any two of them. Since such a player would not have to be indifferent regarding the strategy played with probability 0, the equations you have to set up are different. In summary, manually checking for all possible mixed strategy equilibria if at least one player has more than two actions can require a lot of effort.

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4 0
2 years ago
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