BIO Predict/Calculate Optical Activity Optically active molecules have the property of rotating the direction of polarization of linearly polarized light Many biologically important molecules have this property, some causing a counterclockwise rotation (negative rotation angle), others causing a clockwise rotation (positive rotation angle) For example, a 5.00 gram per 100 mL solution of l -leucine causes a rotation of −0550°; the same concentration of d -glutamic acid causes a rotation of 0.620° (a) If placed between crossed polarizers, which of these solutions transmits the greater intensity? Explain (b) Find the transmitted intensity for each of these solutions when placed between crossed polarizers The incident beam is unpolarized and has an intensity of 12.5 W/m 2 .
BIO Predict/Calculate Optical Activity Optically active molecules have the property of rotating the direction of polarization of linearly polarized light Many biologically important molecules have this property, some causing a counterclockwise rotation (negative rotation angle), others causing a clockwise rotation (positive rotation angle) For example, a 5.00 gram per 100 mL solution of l -leucine causes a rotation of −0550°; the same concentration of d -glutamic acid causes a rotation of 0.620° (a) If placed between crossed polarizers, which of these solutions transmits the greater intensity? Explain (b) Find the transmitted intensity for each of these solutions when placed between crossed polarizers The incident beam is unpolarized and has an intensity of 12.5 W/m 2 .
BIO Predict/Calculate Optical Activity Optically active molecules have the property of rotating the direction of polarization of linearly polarized light Many biologically important molecules have this property, some causing a counterclockwise rotation (negative rotation angle), others causing a clockwise rotation (positive rotation angle) For example, a 5.00 gram per 100 mL solution of l-leucine causes a rotation of −0550°; the same concentration of d-glutamic acid causes a rotation of 0.620° (a) If placed between crossed polarizers, which of these solutions transmits the greater intensity? Explain (b) Find the transmitted intensity for each of these solutions when placed between crossed polarizers The incident beam is unpolarized and has an intensity of 12.5 W/m2.
220 V is supplied to 800 primary turns of an autotransformer. What will the outputvoltage be across 200 secondary turns?
2. A filament transformer has a turns ratio of 1:20. What current must be supplied to theprimary windings if 5 A is required by the filament?
3. The filament transformer in the previous question is supplied with 150 V to theprimary side. What is the secondary voltage?
4. 440 V is supplied to 1000 primary turns of an autotransformer. If the desired outputvoltage is 100 V how many secondary turns must be tapped?
Please solve and answer thw question correctly please. Thank you!!
Please solve and answer the question correctly. Thank you!!
Chapter 25 Solutions
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