96.3FM WBBM-FM (B96) Background and History Officially dubbed ‘B96’ toward the end of 1982‚ WBBM-FM (owned and operated by CBS Radio) is currently one of the longest running Top 40/CHR stations in the United States. Originally beginning as nothing more than the FM simulcast of WBBM-AM‚ the station played a very conservative mix of music appealing to a semi broad demographic. As time went on‚ WBBM (both AM and FM) began playing towards a younger audience until 1969 when WBBM-FM broke away from the
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What Women Want in a Man Brian neil For as long as man has walked the earth‚ he has always been in search of the answer to the almighty and mysterious question. What does a woman want in a man? For as long as the question has existed‚ there have been studies‚ researches‚ movies‚ magazine articles‚ you name it and it has been done. So why after thousands of years‚ do men really have no idea what it is that women want from them? Maybe there is no answer to this question‚ maybe there is! After close
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friction‚ anchor/protect organs 2. Alimentary‚ digestive 3. It can expand and contract; number of layers 4. Replaced by smooth muscle 5. Large intestine breaks stuff down‚ colon is where it becomes broken into waste 6. 1) L‚2) Y‚ 3) O‚ 4) C‚ 5) N‚ V‚ 6) W‚ 7) H‚ 8) D‚ T‚ Y‚ 9) B‚ 10) S‚ 11) H‚ 12) P‚ 13) I‚ 14) V‚ 15) E‚ 16) J‚ 17) X‚ 18) B‚ 19) V‚ 20) K‚ 21) T‚ 22) R‚ 23) U‚ 24) F‚ 25) Z‚ 26) Y‚ 27) A‚ 28) G 7. Left side (top to bottom): oral cavity‚ mouth‚ sublingual gland‚
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Skeletal Muscle Physiology Student instructions: Follow the step-by-step instructions for this exercise found in your lab manual and record your answers in the spaces below. Submit this completed document by the assignment due date found in the Syllabus. Rename this document to include your first and last name prior to submitting‚ e.g. Exercise2_JohnSmith.doc. Please make sure that your answers are typed in RED. (You may delete these instructions before submission.) Grading: True/False
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Respiratory System Mechanics Simulation Lab Activity 1: MRV __7500__ ml/min =500 tv x 15bmp Does expiratory reserve volume include tidal volume? Explain. Expiratory reserve volume (ERV) does not include tidal volume. Expiratory reserve volume is the amount of air that can be expelled after a normal tidal exhalation. This means that tidal volume is not included in the ERV measurement. Activity 2: FEV1‚ as % of VC Radius FEV1 Vital Capacity FEV1% 5.00 3541 4791 73.90 4.50
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Physioex 8.0 R E V I E W S H E E T E X E R C I S E 10 Acid-Base Balance Respiratory Acidosis and Alkalosis The following questions refer to Activity 1: Normal Breathing. 1. What was the pH level during normal breathing? 2. Was this pH within the normal pH range? 2. Was this pH within the normal pH range? The following questions refer to Activity 2: Hyperventilation. 3. In run 1‚ what was the maximum pH recorded with hyperventilation? 4. What acid-base imbalance occurred with hyperventilation
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Activity 1 Pre-Lab Quiz K+ inside a cell = 150 mM; K+ outside a cell = 5 mM Na+ inside a cell = 5 mM; Na+ outside a cell = 150 mM Stop & Think question What is the polarity of the resting membrane potential (voltage)? Negative What does it mean that the voltage just inside the membrane is negative? B Membrane of most cells contains K+ leak channels…..b What will happen to the resting membrane potential if the extracellular K+ concentration is increase? Less negative What happens
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PHYSIO EX 1 Simulating Dialysis (Simple Diffusion) 1. Describe two variables that affect the rate of diffusion. The temperature of the solutions and the difference in concentration of the ion or molecule between the sides of the membrane 2. Why do you think the urea was not able to diffuse through the 20 MWCO membrane? How well did the results compare with your prediction? Since the chemical formula for urea is (NH2)2CO and its molecular weight is about 60. It will not diffuse through the
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Activity 1 1. Increasing extracellular K+ reduces the net diffusion of K+ out of the neuron through the K+ leak channels because the membrane is permeable to K+ ions. Therefore‚ the K+ ions will diffuse down its concentration gradient from a region of higher concentration to a region of lower concentration. 2. Increasing extracellular K+ causes the membrane potential to change to a less negative value because the K+ ions diffuse out across the membrane. My results went well compared to my prediction
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Activity 1: Electrical Stimulation 1. Do you see any kind of response on the oscilloscope screen? NO 2. What was the threshold voltage‚ or the voltage at which you first saw an action potential? 3.0 V 3. How does this tracing compare to the one that was generated at the threshold voltage? The tracing travel in the same fashion but the tracing were different with an increase threshold voltage 4. What reason can you give for the change? Increase voltage 5. Record this maximal voltage here:
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