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Semmelweis University – Medical Biophysics Final Exam Study Guide with Questions and Verified Answers (2025–2026 Update)

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This document provides a comprehensive review for the Semmelweis University Medical Biophysics final exam, including practice questions and verified answer explanations. It covers essential biophysics concepts such as membrane physiology, bioelectric phenomena, thermodynamics, radiation physics, fluid dynamics, molecular interactions, medical imaging principles, and physiological measurement techniques commonly assessed in medical science coursework. The study guide is designed to support exam preparation by reinforcing foundational and applied medical biophysics concepts and helping students strengthen analytical understanding through structured question-and-answer review.

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SEMMELWEIS UNIVERSITY, MEDICAL
BIOPHYSICS - FINAL EXAM ACTUAL 2026
QUESTIONS AND 100% CORRECT DETAILED
ANSWERS GRADED A+
Coulter principle. - answer-The ability to count and measure the size of particles using
an electric circuit. Particles are moved through a small aperture, their presence causes
a narrowing of the aperture, which leads to an increase in resistance.By using constant
I, According to Ohms law (U= I * R), when R increases, U increases and pulse is
generated.



Parts and functions of the Coulter-counter - answer-- Two spaces with a small aperture
in between, capillary (contains the electrolyte solution with the cells)

- Measuring electrode, one in each of the spaces (closing the circuit and measuring
voltage between the two spaces)

- Pump (draws the solution into the smaller space, and out

again, through the capillary)

- Auxiliary electrode (signals when certain volume is

reached, to initiate pumping out of the solution)

- Integral Discriminator (filter out noise)

- Differential Discriminator (mapped of the size distribution

of the particles)



How does the voltage pulse amplitude depend on particle size in the Coulter-counter? -
answer-Its proportional, bigger particle will form higher resistance, higher voltage pulse.



How do you separate the red-blood-cell versus white-blood-cell signals in a Coulter-
counter? - answer-when you want to measure RBC, it's not necessary to separate them
from the RBC b.c. the number of WBC is negligible (less than error of the measurement)

,By hemolyze RBC and measured them separately photochemically and subtracted the
result from the coulter-counting measurement



How do you separate the red-blood-cell versus platelet signals in a Coulter-counter? -
answer-By integral discrimination (the size of the platelets is much

smaller)



What is the role of differential discriminator in Coulter-counting? - answer-Mapping the
size distribution of the particle



Why is dilution of blood is necessary in Coulter-counting? - answer-Because the cells
themselves do not conduct well, and so we dilute them with an electrolyte solution so
changes in resistivity are noticed. Also, for practical reasons (e.g. we don't want the
solution to dry up.)



What solution is used for blood dilution in Coulter-counting? - answer-Saline solution,
for optimal osmotic pressure (keep the RBCs in their natural size) and for good
conduction (NaCl)



How does the matter flow density (flux) change if the concentration gradient is doubled?
- answer-It doubles, due to flicks first law: Jv=-Dxdeltac/deltax



Name the parameters influencing the value of diffusion coefficient. - answer-Size and
shape of the particle as well as the temperature and viscosity of the medium. Can be
calculated for spherical particles: D=kT/6 pi n r



What diffuses faster: a potassium ion or a virus particle? - answer-K+ ion due to smaller
diffusion coefficient (smaller size)



How does the average distance travelled by a diffusing particle depend on time? -
answer-Square root function (Distance average ^2 =6 * D * t)

,On what length scale is diffusion an effective transport process? - answer-On a small
scale



How does the minimum wavelength of the x-ray spectrum change with increasing
anode voltage? - answer-Decreases (higher voltage higher kinetic energy higher
frequency spectrum) - Duane-hunt law



How does the minimum wavelength of the x-ray spectrum change with increasing
anode current? - answer-Does not change



What is the maximum x-ray photon energy at 50 kV anode voltage? - answer-50 keV



What elements are suitable as x-ray-tube anode material? - answer-High melting point
and high atomic number materials molybdenum

(more common in medical diagnosis) and tungsten.



What are the x-ray spectral lines characteristic of? - answer-Anode material



Why do we need to cool the x-ray-tube anode? - answer-Because it heats up due to low
efficiency in the conversion of high

kinetic energy to x-ray.



How does x-ray absorbance depend on the atomic number of

absorber? - answer-Photo Effect is the dominant attenuation process: photoeffect =
micro m - Z^3



Which part of the x-ray spectrum is attenuated by filtering? - answer-The long
wavelengths (to avoid unnecessary radiation absorption, these photons and may hurt
resolution due to scattering)

, Which is a better x-ray absorber: Al or Ag? - answer-Element with the higher atomic
number: Ag



Which attenuation mechanism dominates in x-ray diagnostics? - answer-Photoeffect



What are the parts of a gamma-radiation pulse amplitude spectrum. - answer-Noise,
Compton region and photo-peak.



Effect of activity on the pulse amplitude spectrum of a gamma- radiating isotope. -
answer-Increase the value of the pulse rate (y axis)



Effect of anode voltage on the pulse amplitude spectrum of a gamma-radiating isotope.
- answer-The pulse-amplitude spectrum shifts to the right to higher values (x axis)



Compare the pulse amplitude spectra of two different gamma- radiating isotopes. -
answer-



How can you determine the gamma energy of a radioactive isotope with a scintillation
counter? - answer-The location of the photo-peak on the x-axis indicates the energy of
the gamma photon. The voltage of the photo-peak is proportional to the energy of the
gamma radiation. Because during the photo-effect all the energy of the photon is
converted to the primary electron.



What type of discriminator is used for acquiring the pulse amplitude spectrum? -
answer-Differential discriminator (allows us to differentiate the pulse rate

values): which allows us to find the photo-peak



Define the human hearing range (thereshold of hearing, threshold of pain, frequency
limits). - answer-Threshold of hearing is the minimum intensity at various frequencies
that a human can hear. The threshold for pain is the highest intensity that a human can
hear for a short time without damage to the ear (10 W/m^2). The frequency range is
between 20Hz-20kHz.

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