Convert 836 Torr to atmospheres

Convert 836 Torr to atmospheres. 836 Torr = Convert 21.5 atm to torr. 21.5 atm Convert 836 mmHg to atmospheres. 836 mmHg = Convert 760 Torr to millimeters of mercury. 760 Torr

The Correct Answer and Explanation is :

Let’s begin by converting each value based on standard conversions between Torr, atmospheres, and millimeters of mercury (mmHg).

1. Convert 836 Torr to atmospheres:

We know that 1 atmosphere (atm) is equivalent to 760 Torr. Therefore, the conversion is:

[
836 \, \text{Torr} \times \frac{1 \, \text{atm}}{760 \, \text{Torr}} = \frac{836}{760} \, \text{atm} \approx 1.1 \, \text{atm}
]

So, 836 Torr is approximately 1.1 atm.

2. Convert 21.5 atm to Torr:

Similarly, to convert atmospheres to Torr, we use the conversion factor (1 \, \text{atm} = 760 \, \text{Torr}):

[
21.5 \, \text{atm} \times \frac{760 \, \text{Torr}}{1 \, \text{atm}} = 21.5 \times 760 \, \text{Torr} = 16,340 \, \text{Torr}
]

So, 21.5 atm is 16,340 Torr.

3. Convert 836 mmHg to atmospheres:

Since the pressure in Torr and mmHg are numerically equivalent (1 Torr = 1 mmHg), we can directly apply the same conversion factor for converting mmHg to atmospheres:

[
836 \, \text{mmHg} \times \frac{1 \, \text{atm}}{760 \, \text{mmHg}} = \frac{836}{760} \, \text{atm} \approx 1.1 \, \text{atm}
]

So, 836 mmHg is approximately 1.1 atm.

4. Convert 760 Torr to millimeters of mercury:

We know that Torr and mmHg are equivalent in value, so:

[
760 \, \text{Torr} = 760 \, \text{mmHg}
]

Thus, 760 Torr is equal to 760 mmHg.

Summary of Answers:

  • 836 Torr = 1.1 atm
  • 21.5 atm = 16,340 Torr
  • 836 mmHg = 1.1 atm
  • 760 Torr = 760 mmHg

Explanation:

The key to these conversions lies in understanding the relationship between pressure units:

  • Torr and mmHg are used interchangeably to represent pressure, and they are numerically equivalent (1 Torr = 1 mmHg).
  • Atmospheres (atm) is a standard unit of pressure in the International System of Units, and 1 atm is defined as being equal to 760 Torr or 760 mmHg.

These conversions are based on simple ratios that allow you to express a pressure in one unit by using a known relationship to convert between them.

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