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Q: Increase in partial pressure of carbon dioxide and decrease in pH below 7.35
A: Respiratory acidosis
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Increase in bicarbonate concentration and increase in blood pH above 7.45
metabolic alkalosis
respiratory acidosis
respiratory alkalosis
respiratory alkalosis
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- Decrease in bicarbonate concentration and decrease of blood pH below 7.35 metabolic acidosis metabolic alkalosis respiratory acidosis respiratory alkalosisIncrease in partial pressure of carbon dioxide and decrease in pH below 7.35 metabolic acidosis metabolic alkalosis respiratory acidosis respiratory alkalosisDecrease in partial pressure of carbon dioxide and increase in blood pH above 7.45? metabolic acidosis metabolic alkalosis respiratory acidosis respiratory alkalosis
- 1)dentify the lab value of Corbin's bicarbonate ion level in mEq/Liter. Only type in numbers no letters (type out your number to zero places after the decimal point. i.e 8 or 18) pH = 7.52 PaCO2 = 48 mm 2) Corbin's condition is determined to be> 3 answers required: respiratory or metabolic acidosis or alkalosis uncompensated or partial compensation Group of answer choices respiratory metabolic acidosis alkalosis uncompensated partial compensationA patient presents to the emergency department unconscious, after ingesting a bottle of temazepam. What acid–base disturbance would you expect to see? Increased anion gap metabolic acidosis Respiratory alkalosis Normal gap metabolic acidosis Respiratory acidosis1) Identify the lab value of Yusef's bicarbonate ion level in mEq/Liters. Only type in numbers, no letters (type out your number to zero places after the decimal point. i.e 8 or 18) pH = 7.68 PaCO2 = 21 mmHg 2) His condition is : 3 answers required: respiratory or metabolic acidosis or alkalosis uncompensated or partial compensation Group of answer choices respiratory metabolic acidosis alkalosis uncompensated partial compensation
- given the pCO2 and pH of systemic arterial blood, be able to identify the type of acid-base imbalance (respiratory acidosis, respiratory alkalosis, metabolic acidosis, metabolic alkalosis). After identifying the type of acid-base imbalance, be able to determine what type of compensation will occur to restore pHWhat do the following arterial blood values indicate? pH = 7.59 PCO2 = 45 mm Hg HCO3- = 35 mEq/L Question 47 options: Respiratory acidosis without compensation Metabolic alkalosis without compensation Respiratory alkalosis without compensation Respiratory acidosis with partial compensation Mixed disturbanceIncrease in partial pressure of carbon dioxide and decrease in pH below 7.35 Group of answer choices metabolic acidosis metabolic alkalosis respiratory acidosis respiratory alkalosis
- A patient exhibits the following blood characteristics. pH = 7.49 P co2 = 50 HCO3- = 29 mEq/L What is the likely condition? respiratory acidosis respiratory alkalosis metabolic acidosis metabolic alkalosisMicky Mango is a 64-year-old male admitted to the emergency room for asthma. His laboratory results are as follows: pH 7.31, pCO2 higher than normal, and total HCO3– also higher than normal. Classify his acid-base balance as acidosis or alkalosis, and as metabolic or respiratory. Is there evidence of compensation? Propose the mechanism by which asthma contributed to the lab results seen.Exposure to air containing 600 ppm CO for 30 minutes results In an actual HbCO blood concentration of 10%. Estimate the percentage of the equilibrium saturation value of HbCO.