💜Hooks law (stress direct proportional to strain)
♥️Youngs modulus (slope of linear portion expressesيعبر عن stiffnes or softness مال مواد صلبة بوحدة dynes per centmeter)
اذن من يجيبلي امسكيو انو dyne/(cm) 2شنو تقيس؟!!!! اكلة softness or stiffnes of solid
هذا stress-strain يصير non linear مو خطي عند ال yield point
#شنو فائدة ال yield point ➡️تقيس مقاومة تغير بالشكل resistance to permanent deformation
ب greater stress نوصل لمرحلة
irreversible plastic deformation
يعني المادة بعد مترجع لاصلهة elastic لا حتبقة ثابتة plastic
من يجي امسكيو ب greater stress شيصير نكلة irreversible plastic deformation
اخر شي عدنة ال area under curve
هاي تعبر عن represent ➡️energy of fracture
Measure تقيس ➡️impact stength of material قوة تأثر المادة يعني بشنو حتتأثر
♥️Youngs modulus (slope of linear portion expressesيعبر عن stiffnes or softness مال مواد صلبة بوحدة dynes per centmeter)
اذن من يجيبلي امسكيو انو dyne/(cm) 2شنو تقيس؟!!!! اكلة softness or stiffnes of solid
هذا stress-strain يصير non linear مو خطي عند ال yield point
#شنو فائدة ال yield point ➡️تقيس مقاومة تغير بالشكل resistance to permanent deformation
ب greater stress نوصل لمرحلة
irreversible plastic deformation
يعني المادة بعد مترجع لاصلهة elastic لا حتبقة ثابتة plastic
من يجي امسكيو ب greater stress شيصير نكلة irreversible plastic deformation
اخر شي عدنة ال area under curve
هاي تعبر عن represent ➡️energy of fracture
Measure تقيس ➡️impact stength of material قوة تأثر المادة يعني بشنو حتتأثر
Filtration – Sterile/Aseptic Operations:
---
1. Why is filtration used in sterile pharmaceutical operations?
A. To improve color and taste
B. To reduce viscosity
C. To clarify and sterilize heat-labile solutions
D. To dissolve active ingredients
Answer: C
---
2. What is the typical porosity rating for membrane filters used in sterile filtrations?
A. 1.0 μm
B. 0.8 μm
C. 0.45 or 0.2 μm
D. 0.05 μm
Answer: C
---
3. Why is a pre-filter used before membrane filtration?
A. To reduce cost
B. To speed up the filtration
C. To remove colloidal matter and extend filter life
D. To heat the solution
Answer: C
---
4. When does the FDA allow the use of 0.45 μm filters in sterile filtration?
A. For all intravenous solutions
B. Only for dry powder formulations
C. For colloidal solutions where 0.2 μm filters clog rapidly
D. For solutions containing alcohol
Answer: C
---
5. Which types of products may be directly filtered through membranes without pre-treatment?
A. Protein-rich emulsions
B. Heat-labile oils
C. Ophthalmic and intravenous aqueous solutions
D. Powder suspensions
Answer: C
---
6. What is the main purpose of centrifugation or conventional filtration before membrane filtration of some liquids?
A. To sterilize the solution completely
B. To increase the temperature
C. To remove gross contamination
D. To mix the solution thoroughly
Answer: C
---
7. What type of filtration process is preferred for sterile filtration to avoid contamination?
A. Gravity filtration
B. Vacuum filtration
C. Pressure filtration
D. Magnetic filtration
Answer: C
---
8. What is a risk of using vacuum in sterile filtration?
A. It causes membrane melting
B. It can pull bacteria in through leaky joints
C. It reduces porosity
D. It blocks air flow
Answer: B
9. What is a key challenge when selecting filters for sterile operations?
A. Availability of plastic housings
B. Temperature control
C. The sterility requirement imposes strict limitations
D. pH variation in solutions
Answer: C
---
10. Why do membrane filters clog rapidly at 0.2 or 0.45 μm porosity?
A. Because they absorb moisture
B. Due to large pore size
C. Due to fine particulate and colloidal matter
D. Because they are too thin
Answer: C
---
11. In serial filtration, which unit must be sterile?
A. All units must be sterile
B. Only the first unit
C. Only the final unit
D. Sterility is not required
Answer: C
---
12. What increases the reliability of the total sterile filtration process?
A. Adding preservatives
B. High-speed stirring
C. Minimal contamination in prior steps
D. Using thicker membranes
Answer: C
---
13. What gases are commonly filtered in pharmaceutical manufacturing?
A. Oxygen and helium
B. Hydrogen and methane
C. Nitrogen and carbon dioxide
D. Ammonia and sulfur dioxide
Answer: C
---
14. Why should filtration be placed as close as possible to the point of use or final packaging?
A. To reduce the need for electricity
B. To simplify documentation
C. To minimize contamination risk
D. To increase viscosity
Answer: C
15. What kind of formulations require pre-treatment like centrifugation before sterile filtration?
A. Simple sugar solutions
B. Aqueous eye drops
C. Heat-labile oils and protein-containing liquids
D. Alcohol-based disinfectants
Answer: C
---#clarification 😭👇👇🫀💔
---
1. Why is filtration used in sterile pharmaceutical operations?
A. To improve color and taste
B. To reduce viscosity
C. To clarify and sterilize heat-labile solutions
D. To dissolve active ingredients
Answer: C
---
2. What is the typical porosity rating for membrane filters used in sterile filtrations?
A. 1.0 μm
B. 0.8 μm
C. 0.45 or 0.2 μm
D. 0.05 μm
Answer: C
---
3. Why is a pre-filter used before membrane filtration?
A. To reduce cost
B. To speed up the filtration
C. To remove colloidal matter and extend filter life
D. To heat the solution
Answer: C
---
4. When does the FDA allow the use of 0.45 μm filters in sterile filtration?
A. For all intravenous solutions
B. Only for dry powder formulations
C. For colloidal solutions where 0.2 μm filters clog rapidly
D. For solutions containing alcohol
Answer: C
---
5. Which types of products may be directly filtered through membranes without pre-treatment?
A. Protein-rich emulsions
B. Heat-labile oils
C. Ophthalmic and intravenous aqueous solutions
D. Powder suspensions
Answer: C
---
6. What is the main purpose of centrifugation or conventional filtration before membrane filtration of some liquids?
A. To sterilize the solution completely
B. To increase the temperature
C. To remove gross contamination
D. To mix the solution thoroughly
Answer: C
---
7. What type of filtration process is preferred for sterile filtration to avoid contamination?
A. Gravity filtration
B. Vacuum filtration
C. Pressure filtration
D. Magnetic filtration
Answer: C
---
8. What is a risk of using vacuum in sterile filtration?
A. It causes membrane melting
B. It can pull bacteria in through leaky joints
C. It reduces porosity
D. It blocks air flow
Answer: B
9. What is a key challenge when selecting filters for sterile operations?
A. Availability of plastic housings
B. Temperature control
C. The sterility requirement imposes strict limitations
D. pH variation in solutions
Answer: C
---
10. Why do membrane filters clog rapidly at 0.2 or 0.45 μm porosity?
A. Because they absorb moisture
B. Due to large pore size
C. Due to fine particulate and colloidal matter
D. Because they are too thin
Answer: C
---
11. In serial filtration, which unit must be sterile?
A. All units must be sterile
B. Only the first unit
C. Only the final unit
D. Sterility is not required
Answer: C
---
12. What increases the reliability of the total sterile filtration process?
A. Adding preservatives
B. High-speed stirring
C. Minimal contamination in prior steps
D. Using thicker membranes
Answer: C
---
13. What gases are commonly filtered in pharmaceutical manufacturing?
A. Oxygen and helium
B. Hydrogen and methane
C. Nitrogen and carbon dioxide
D. Ammonia and sulfur dioxide
Answer: C
---
14. Why should filtration be placed as close as possible to the point of use or final packaging?
A. To reduce the need for electricity
B. To simplify documentation
C. To minimize contamination risk
D. To increase viscosity
Answer: C
15. What kind of formulations require pre-treatment like centrifugation before sterile filtration?
A. Simple sugar solutions
B. Aqueous eye drops
C. Heat-labile oils and protein-containing liquids
D. Alcohol-based disinfectants
Answer: C
---#clarification 😭👇👇🫀💔
هذه الاسئله تعتبر مراجعه الكم من تخلصون الموضوع حلو عليه اسئله
https://t.me/c/1895080991/167
اسئله mixing👆
https://t.me/c/1895080991/229
اسئلهmilling👆
https://t.me/c/1895080991/278
اسئله drying 👆
https://t.me/c/1895080991/305
اسئله sterilization 👆
https://t.me/c/1895080991/345
اسئله sterile product👆مهم
https://t.me/c/1895080991/374
هذه همين رابط يحتوي اسئله على sterile product👆
https://t.me/c/1895080991/376
اسئله Clarification and filtration👆
https://t.me/c/1895080991/415
الاسئله الوزاريه 👆👆
https://t.me/pharmacy_11111/441
اسئله مهمه كلش
https://t.me/pharmacy_11111/437
https://t.me/pharmacy_11111/433
اسئله الذكاء الاصطناعي👆👆
اتمنى ماتنسونا بدعواتكم🙏🌹
لي ولوالدي كلش محتاجين دعائكم
#صناعية
https://t.me/c/1895080991/167
اسئله mixing👆
https://t.me/c/1895080991/229
اسئلهmilling👆
https://t.me/c/1895080991/278
اسئله drying 👆
https://t.me/c/1895080991/305
اسئله sterilization 👆
https://t.me/c/1895080991/345
اسئله sterile product👆مهم
https://t.me/c/1895080991/374
هذه همين رابط يحتوي اسئله على sterile product👆
https://t.me/c/1895080991/376
اسئله Clarification and filtration👆
https://t.me/c/1895080991/415
الاسئله الوزاريه 👆👆
https://t.me/pharmacy_11111/441
اسئله مهمه كلش
https://t.me/pharmacy_11111/437
https://t.me/pharmacy_11111/433
اسئله الذكاء الاصطناعي👆👆
اتمنى ماتنسونا بدعواتكم🙏🌹
لي ولوالدي كلش محتاجين دعائكم
#صناعية
شبابنا مرحلة رابعة؛؛؛ سويت كوزات لمادة الصناعية شاملة المادة كلها، اعتقد تستفيدون منها، شوفوها وحولوها لزملائكم للفائدة
كوزات الصناعية:
Chapter 1 Sterilization
https://docs.google.com/forms/d/1hyyKH7U8T4KbcF9Ox777ULoF6gnmHGoq3IMvQoly3Qc/edit?chromeless=1
Chapter 2 Sterile Products
https://docs.google.com/forms/d/1e_ZbYlI-kFaJBFus3XP60MO-KKS6p81PRNAUv8tyzvI/edit?chromeless=1
Chapter 3 Drying
https://docs.google.com/forms/d/1dqsoNI6RMlUzJx2yArx5yp9GnywEQUZhiv3Rml46rQg/edit?chromeless=1
Chapter 1 Mixing
https://docs.google.com/forms/u/1/d/1gjChH3Lmwwuq1zeEnp8JzrPIleC0SITtjbNsg3mdU4c/edit?usp=drivesdk&chromeless=1
Chapter 2 Milling
https://docs.google.com/forms/u/1/d/1kWjoniw2-EE7-3sdScH4lcSbvcLWFvjkXxR0BtMRwxw/edit?usp=drivesdk&chromeless=1
Chapter 3 Clarification anf Filtration
https://docs.google.com/forms/u/1/d/1vICsDCRAtBEUEUAUH1SwFcFpNVsdS33F78eMLO0zTQI/edit?usp=drivesdk&chromeless=1
كوزات الصناعية:
Chapter 1 Sterilization
https://docs.google.com/forms/d/1hyyKH7U8T4KbcF9Ox777ULoF6gnmHGoq3IMvQoly3Qc/edit?chromeless=1
Chapter 2 Sterile Products
https://docs.google.com/forms/d/1e_ZbYlI-kFaJBFus3XP60MO-KKS6p81PRNAUv8tyzvI/edit?chromeless=1
Chapter 3 Drying
https://docs.google.com/forms/d/1dqsoNI6RMlUzJx2yArx5yp9GnywEQUZhiv3Rml46rQg/edit?chromeless=1
Chapter 1 Mixing
https://docs.google.com/forms/u/1/d/1gjChH3Lmwwuq1zeEnp8JzrPIleC0SITtjbNsg3mdU4c/edit?usp=drivesdk&chromeless=1
Chapter 2 Milling
https://docs.google.com/forms/u/1/d/1kWjoniw2-EE7-3sdScH4lcSbvcLWFvjkXxR0BtMRwxw/edit?usp=drivesdk&chromeless=1
Chapter 3 Clarification anf Filtration
https://docs.google.com/forms/u/1/d/1vICsDCRAtBEUEUAUH1SwFcFpNVsdS33F78eMLO0zTQI/edit?usp=drivesdk&chromeless=1
topic Laboratory Filtration Equipment:
---
1. What is the most common laboratory filtration device?
A. Plate and frame press
B. Filter bag
C. Filtering funnel
D. Immersion stick
Answer: C
---
2. What is typically used with a filtering funnel in laboratory filtration?
A. Glass beads
B. Filter paper
C. Sand
D. Metal mesh
Answer: B
---
3. Why has the use of glass beads and sand in gravity filtration become limited?
A. They are expensive
B. They cause chemical reactions
C. They are not reusable
D. They may not provide adequate clarification
Answer: D
---
4. What type of filtration uses a Buchner funnel?
A. Pressure filtration
B. Vacuum or suction filtration
C. Gravity filtration
D. Centrifugal filtration
Answer: B
---
5. What is another name for immersion filter tubes?
A. Filter plates
B. Leaf filters
C. Filter sticks
D. Filter bags
Answer: C
---
6. What form is most common for laboratory filter paper?
A. Rectangular sheets
B. Circular
C. Powdered form
D. Rolled tubes
Answer: B
---
7. Which of the following is NOT a common form of laboratory filter paper?
A. Folded
B. Circular
C. Granular
D. Sheet
Answer: C
---
8. What is the function of filter paper impregnated with activated carbon?
A. To increase pH
B. To remove metals
C. To adsorb colors and odors
D. To neutralize acidity
Answer: C
---
9. What is the purpose of diatomaceous earth in some filter papers?
A. To add flavor
B. To remove large particles
C. To remove colloidal haze
D. To reduce foam
Answer: C
---
10. What is considered part of minimum laboratory filtration equipment?
A. UV filter and chromatography column
B. Plate and frame press, membrane filter holder, and disposable cartridge housing
C. Incubator and laminar airflow
D. Syringe and test tube
Answer: B
---
---
1. What is the most common laboratory filtration device?
A. Plate and frame press
B. Filter bag
C. Filtering funnel
D. Immersion stick
Answer: C
---
2. What is typically used with a filtering funnel in laboratory filtration?
A. Glass beads
B. Filter paper
C. Sand
D. Metal mesh
Answer: B
---
3. Why has the use of glass beads and sand in gravity filtration become limited?
A. They are expensive
B. They cause chemical reactions
C. They are not reusable
D. They may not provide adequate clarification
Answer: D
---
4. What type of filtration uses a Buchner funnel?
A. Pressure filtration
B. Vacuum or suction filtration
C. Gravity filtration
D. Centrifugal filtration
Answer: B
---
5. What is another name for immersion filter tubes?
A. Filter plates
B. Leaf filters
C. Filter sticks
D. Filter bags
Answer: C
---
6. What form is most common for laboratory filter paper?
A. Rectangular sheets
B. Circular
C. Powdered form
D. Rolled tubes
Answer: B
---
7. Which of the following is NOT a common form of laboratory filter paper?
A. Folded
B. Circular
C. Granular
D. Sheet
Answer: C
---
8. What is the function of filter paper impregnated with activated carbon?
A. To increase pH
B. To remove metals
C. To adsorb colors and odors
D. To neutralize acidity
Answer: C
---
9. What is the purpose of diatomaceous earth in some filter papers?
A. To add flavor
B. To remove large particles
C. To remove colloidal haze
D. To reduce foam
Answer: C
---
10. What is considered part of minimum laboratory filtration equipment?
A. UV filter and chromatography column
B. Plate and frame press, membrane filter holder, and disposable cartridge housing
C. Incubator and laminar airflow
D. Syringe and test tube
Answer: B
---
Types of Filter Aids:
---
1. What is a key structural requirement for a filter aid?
A. High density
B. Formation of a pervious cake
C. Compressibility
D. Solubility in water
Answer: B
---
2. Why should a filter aid remain suspended in the liquid?
A. To increase flow rate
B. To reduce cost
C. To ensure uniform pre-coat formation
D. To prevent crystallization
Answer: C
---
3. Which of the following is NOT a desired characteristic of filter aids?
A. Inertness to the liquid
B. Presence of impurities
C. Free from moisture (when necessary)
D. Proper particle size distribution
Answer: B
---
4. What is the most important filter aid?
A. Cellulose
B. Perlite
C. Diatomite
D. Asbestos
Answer: C
---
5. Diatomite forms what kind of cake?
A. Sticky and flexible
B. Rigid and incompressible
C. Soft and compressible
D. Thin and soluble
Answer: B
---
6. What is the main chemical component of diatomite?
A. Calcium carbonate
B. Silica
C. Magnesium sulfate
D. Cellulose
Answer: B
---
7. Which filter aid is reserved for liquids incompatible with silica?
A. Diatomite
B. Asbestos
C. Perlite
D. Cellulose
Answer: D
---
8. Which of the following is true about cellulose filter aids?
A. They are insoluble and inert
B. They are highly compressible and more expensive
C. They are mostly silica-based
D. They leach fibers into filtrate
Answer: B
---
9. What is a typical application of cellulose in filtration?
A. Fine polishing
B. Final membrane filtration
C. Coarse pre-coat
D. Sterilizing filtration
Answer: C
---
10. Which filter aid has limited pharmaceutical use due to toxicity concerns?
A. Diatomite
B. Cellulose
C. Asbestos
D. Silica gel
Answer: C
---
11. Why is asbestos use restricted in filtration?
A. It is too cheap
B. It dissolves in water
C. It leaches potentially toxic fibers
D. It increases porosity
Answer: C
---
12. What filtration step must follow asbestos use in pharmaceuticals?
A. Sand filtration
B. Membrane filtration
C. Gravity filtration
D. Vacuum drying
Answer: B
---
---
1. What is a key structural requirement for a filter aid?
A. High density
B. Formation of a pervious cake
C. Compressibility
D. Solubility in water
Answer: B
---
2. Why should a filter aid remain suspended in the liquid?
A. To increase flow rate
B. To reduce cost
C. To ensure uniform pre-coat formation
D. To prevent crystallization
Answer: C
---
3. Which of the following is NOT a desired characteristic of filter aids?
A. Inertness to the liquid
B. Presence of impurities
C. Free from moisture (when necessary)
D. Proper particle size distribution
Answer: B
---
4. What is the most important filter aid?
A. Cellulose
B. Perlite
C. Diatomite
D. Asbestos
Answer: C
---
5. Diatomite forms what kind of cake?
A. Sticky and flexible
B. Rigid and incompressible
C. Soft and compressible
D. Thin and soluble
Answer: B
---
6. What is the main chemical component of diatomite?
A. Calcium carbonate
B. Silica
C. Magnesium sulfate
D. Cellulose
Answer: B
---
7. Which filter aid is reserved for liquids incompatible with silica?
A. Diatomite
B. Asbestos
C. Perlite
D. Cellulose
Answer: D
---
8. Which of the following is true about cellulose filter aids?
A. They are insoluble and inert
B. They are highly compressible and more expensive
C. They are mostly silica-based
D. They leach fibers into filtrate
Answer: B
---
9. What is a typical application of cellulose in filtration?
A. Fine polishing
B. Final membrane filtration
C. Coarse pre-coat
D. Sterilizing filtration
Answer: C
---
10. Which filter aid has limited pharmaceutical use due to toxicity concerns?
A. Diatomite
B. Cellulose
C. Asbestos
D. Silica gel
Answer: C
---
11. Why is asbestos use restricted in filtration?
A. It is too cheap
B. It dissolves in water
C. It leaches potentially toxic fibers
D. It increases porosity
Answer: C
---
12. What filtration step must follow asbestos use in pharmaceuticals?
A. Sand filtration
B. Membrane filtration
C. Gravity filtration
D. Vacuum drying
Answer: B
---
text about Filter Aids:
---
1. What is the primary function of a filter aid?
A. Increase pore size of the filter medium
B. Reduce the resistance to flow caused by solid accumulation
C. Enhance the chemical reaction in filtration
D. Decrease the porosity of the filter cake
Answer: B
---
2. What happens to the resistance to flow as a solid layer builds up on the filter medium?
A. It remains constant
B. It decreases
C. It increases
D. It fluctuates randomly
Answer: C
---
3. Which type of solids offer higher resistance to flow?
A. Flocculated solids
B. Solids with high porosity
C. Poorly flocculated solids
D. Soluble solids
Answer: C
---
4. In cake filtration, how does the rate vary?
A. Linearly with volume
B. Independently of volume
C. With the square of the volume of liquid
D. With the cube of the volume
Answer: C
---
5. What may happen when the volume of filter cake solids per unit volume of filtrate is low?
A. Filter medium becomes more porous
B. Solids penetrate void spaces, increasing resistance
C. Flow rate increases significantly
D. Filtration stops immediately
Answer: B
---
6. At high concentrations of solids, which phenomenon is more likely?
A. Dissolution of solids
B. Blinding of the openings
C. Bridging over of openings
D. Complete removal of solids
Answer: C
---
7. What happens to the filter medium over time with the accumulation of solids?
A. It becomes clearer
B. It becomes more absorbent
C. It becomes plugged or slimy
D. It remains unaffected
Answer: C
---
1. How does a filter aid ideally act during filtration?
A. By dissolving solids in the liquid
B. By plugging the filter medium
C. By forming a fine surface deposit that screens out solids
D. By compressing the filter cake
Answer: C
---
2. What type of cake does a filter aid usually form?
A. Compressible and dense
B. Porous and non-compressible
C. Slimy and absorbent
D. Impervious and brittle
Answer: B
---
3. Which of the following factors influence the filtration cycle and clarity?
A. Pressure and temperature only
B. Time and volume of filtrate only
C. Density, type, particle size, and quantity of filter aid
D. Concentration of solids only
Answer: C
---
4. What happens if too little filter aid is used?
A. Filtration becomes faster
B. The resistance of the filter cake increases
C. The cake becomes thinner
D. Solids are completely removed
Answer: B
---
5. What is the result of using too much filter aid?
A. Improves filtration speed
B. Reduces cake thickness
C. Adds thickness without improving porosity
D. Completely eliminates resistance
Answer: C
---
6. How are filter aids typically selected?
A. Based on standard values
B. Through computer simulation
C. By trial and error in lab or plant
D. From a universal filter aid list
Answer: C
:
1. What are the two main goals when selecting a filter aid in general applications?
A. Low cost and chemical reactivity
B. Acceptable filtrate and highest flow rate
C. Bright color and fast mixing
D. Maximum thickness and low porosity
Answer: B
2. In pharmaceutical operations, which type of filter aid is usually preferred?
A. Coarse grades with high flow rates
B. Fine grades with low flow rates
C. Absorbent types with color retention
D. Cheap and reactive types
Answer:
3. What is the most important factor for a filter aid in pharmaceutical use?
A. Absorbency
B. Reactivity
C. Inertness
D. Color
Answer: C
4. What can be a negative effect of using highly absorbent filter aids?
A. They increase filtration speed too much
B. They prevent solid separation
C. They may remove desired colored substances and active ingredients
D. They clog the filter instantly
Answer: C
5. Even if the total quantity of an ingredient absorbed by the filter aid is small, why might this be significant?
A. It can cause the cake to collapse
B. It may represent a large proportion of the original concentration
C. It improves the appearance of the filtrate
D. It increases the medium’s porosity
Answer: B
---
1. What is the primary function of a filter aid?
A. Increase pore size of the filter medium
B. Reduce the resistance to flow caused by solid accumulation
C. Enhance the chemical reaction in filtration
D. Decrease the porosity of the filter cake
Answer: B
---
2. What happens to the resistance to flow as a solid layer builds up on the filter medium?
A. It remains constant
B. It decreases
C. It increases
D. It fluctuates randomly
Answer: C
---
3. Which type of solids offer higher resistance to flow?
A. Flocculated solids
B. Solids with high porosity
C. Poorly flocculated solids
D. Soluble solids
Answer: C
---
4. In cake filtration, how does the rate vary?
A. Linearly with volume
B. Independently of volume
C. With the square of the volume of liquid
D. With the cube of the volume
Answer: C
---
5. What may happen when the volume of filter cake solids per unit volume of filtrate is low?
A. Filter medium becomes more porous
B. Solids penetrate void spaces, increasing resistance
C. Flow rate increases significantly
D. Filtration stops immediately
Answer: B
---
6. At high concentrations of solids, which phenomenon is more likely?
A. Dissolution of solids
B. Blinding of the openings
C. Bridging over of openings
D. Complete removal of solids
Answer: C
---
7. What happens to the filter medium over time with the accumulation of solids?
A. It becomes clearer
B. It becomes more absorbent
C. It becomes plugged or slimy
D. It remains unaffected
Answer: C
---
1. How does a filter aid ideally act during filtration?
A. By dissolving solids in the liquid
B. By plugging the filter medium
C. By forming a fine surface deposit that screens out solids
D. By compressing the filter cake
Answer: C
---
2. What type of cake does a filter aid usually form?
A. Compressible and dense
B. Porous and non-compressible
C. Slimy and absorbent
D. Impervious and brittle
Answer: B
---
3. Which of the following factors influence the filtration cycle and clarity?
A. Pressure and temperature only
B. Time and volume of filtrate only
C. Density, type, particle size, and quantity of filter aid
D. Concentration of solids only
Answer: C
---
4. What happens if too little filter aid is used?
A. Filtration becomes faster
B. The resistance of the filter cake increases
C. The cake becomes thinner
D. Solids are completely removed
Answer: B
---
5. What is the result of using too much filter aid?
A. Improves filtration speed
B. Reduces cake thickness
C. Adds thickness without improving porosity
D. Completely eliminates resistance
Answer: C
---
6. How are filter aids typically selected?
A. Based on standard values
B. Through computer simulation
C. By trial and error in lab or plant
D. From a universal filter aid list
Answer: C
:
1. What are the two main goals when selecting a filter aid in general applications?
A. Low cost and chemical reactivity
B. Acceptable filtrate and highest flow rate
C. Bright color and fast mixing
D. Maximum thickness and low porosity
Answer: B
2. In pharmaceutical operations, which type of filter aid is usually preferred?
A. Coarse grades with high flow rates
B. Fine grades with low flow rates
C. Absorbent types with color retention
D. Cheap and reactive types
Answer:
3. What is the most important factor for a filter aid in pharmaceutical use?
A. Absorbency
B. Reactivity
C. Inertness
D. Color
Answer: C
4. What can be a negative effect of using highly absorbent filter aids?
A. They increase filtration speed too much
B. They prevent solid separation
C. They may remove desired colored substances and active ingredients
D. They clog the filter instantly
Answer: C
5. Even if the total quantity of an ingredient absorbed by the filter aid is small, why might this be significant?
A. It can cause the cake to collapse
B. It may represent a large proportion of the original concentration
C. It improves the appearance of the filtrate
D. It increases the medium’s porosity
Answer: B
صناعية نظري MCQ
Mixing chapter
Part1
https://t.me/chemistryeverywhere/4068
Part2
https://t.me/chemistryeverywhere/4084
Milling chapter
https://t.me/chemistryeverywhere/4272
Drying chapter
https://t.me/chemistryeverywhere/4478
Filtration chapter
https://t.me/chemistryeverywhere/4359
Sterilization chapter
https://t.me/chemistryeverywhere/4099
Sterile products chapter
https://t.me/chemistryeverywhere/4491
#صناعية
Mixing chapter
Part1
https://t.me/chemistryeverywhere/4068
Part2
https://t.me/chemistryeverywhere/4084
Milling chapter
https://t.me/chemistryeverywhere/4272
Drying chapter
https://t.me/chemistryeverywhere/4478
Filtration chapter
https://t.me/chemistryeverywhere/4359
Sterilization chapter
https://t.me/chemistryeverywhere/4099
Sterile products chapter
https://t.me/chemistryeverywhere/4491
#صناعية
Telegram
Exams
1) The opposite of mixing is:
a) Blending. / b) Segregation. / c) Both of them. / d) None of them.
a) Blending. / b) Segregation. / c) Both of them. / d) None of them.
Forwarded from 𝐌𝐮𝐧𝐭𝐞𝐝𝐡𝐞𝐫 𝐀𝐥-𝐡𝐮𝐬𝐬𝐚𝐢𝐧𝐲
🔥 Rate of drying
A-B \ Initially Adjustment, StaBlizes temp. gradually (Cooling rate = Heating rate)
B \ StaBilized temperature
B-C \ Constant rate period
(Evaporation rate = Diffusion rate)
C \ Critical moisture content (dry spots appear)
C-D \ First falling rate period
D \ Second critical point
(complete evaporation of surface film)
D-E \ Second falling period
E \ Eqiulibrium moisture content (Drying rate = 0)
⚕︎ᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔ⚕︎
➥ @muntedher_Alhussainy
A-B \ Initially Adjustment, StaBlizes temp. gradually (Cooling rate = Heating rate)
B \ StaBilized temperature
B-C \ Constant rate period
(Evaporation rate = Diffusion rate)
C \ Critical moisture content (dry spots appear)
C-D \ First falling rate period
D \ Second critical point
(complete evaporation of surface film)
D-E \ Second falling period
E \ Eqiulibrium moisture content (Drying rate = 0)
⚕︎ᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔᚔ⚕︎
➥ @muntedher_Alhussainy
Forwarded from Pharma/Clinical/Therapeutics (Sarmad Pharma🖤)
مهمات كلش بخصوص مادة الصناعية الرابع
Non-thermal Methods (Cold sterilization
Aseptic processing
FORMULATIONSO ophthalmic Preparation
@ppharma9
MECHANISMS OF FILTRATION
Barrel Type Continuous Mixer
Batch mixing
https://t.me/ppharma9
Non-thermal Methods (Cold sterilization
Aseptic processing
FORMULATIONSO ophthalmic Preparation
@ppharma9
MECHANISMS OF FILTRATION
Barrel Type Continuous Mixer
Batch mixing
https://t.me/ppharma9
Forwarded from Pharma/Clinical/Therapeutics (Sarmad Pharma🖤)
مهمات كلش
https://t.me/ppharma9
https://t.me/ppharma9
spray drying?😏
Drying heat-sensitive materials, changing the physical form of materials, and encapsulating
materials can spray dryers handle?
Fluid materials🤪
stage of freeze drying does sublimation occur?
pre freez😉
Which drying method is most suitable for drying heat-sensitive materials?
Freeze❤️
Drying heat-sensitive materials, changing the physical form of materials, and encapsulating
materials can spray dryers handle?
Fluid materials🤪
stage of freeze drying does sublimation occur?
pre freez😉
Which drying method is most suitable for drying heat-sensitive materials?
Freeze❤️
Here is the content you provided, organized and presented in English only:
---
Non-Thermal Drying Methods
Expression
Extraction
Absorption
Adsorption
Desiccation
---
Psychrometry Basics
Psychrometry determines vapor concentration and carrying capacity of gas.
Water vapor in a gas = humidity.
CDE curve = saturation humidity = 100% RH.
FCA = 78 grains water/pound dry air.
Dew point (60°F) = temperature at which air is fully saturated.
GK = 50% relative humidity.
Wet-bulb temperature = equilibrium between heat and moisture transfer; measured by a thermometer with a wet wick.
Dry-bulb temperature = actual air temperature; measured by a standard thermometer.
---
Drying Theory
Based on heat and mass transfer.
Driving force for heat transfer = temperature differential.
---
Evaporation & Diffusion Rates
Rate of evaporation:
Rate of diffusion:
Heat transfer methods: convection, radiation, conduction.
---
How to Increase Drying Rate
Convection: increase air flow rate, raise inlet air temperature.
Radiation: increase radiation rate.
Conduction: reduce material thickness.
Air velocity: increase to boost mass transfer coefficient.
Dehumidification: lower RH to increase humidity gradient.
---
Moisture Expression in Solids
Based on wet weight or dry weight.
LOD (Loss on Drying) = (wet weight) * 100%
MC (Moisture Content) = (dry weight) * 100%
---
Drying Phases
Initial (A-B): Heating = Cooling
Point B: Surface moisture only
Constant Rate (B-C): Evaporation = Diffusion
Critical Moisture (C): Dry spots appear; drying rate drops
First Falling Rate (C-D): Drying slows down
Second Critical Point (D): Diffusion-limited drying
Second Falling Rate (D-E): Rapid drop in drying rate
Equilibrium Moisture (E): Zero drying rate; temp and moisture constant
---
Solids Drying
Crystalline solids: Easy to dry
Amorphous solids: Hard to dry
Dryers classified by heat transfer method or sample handling
---
Drying Methods & Applications
Turbo vs. Tunnel: Turbo is faster due to continuous exposure to air.
Partially suspended in gas stream: Fluidized
Used for granular materials: Fluidized
Granules in fluidized bed are neither wet nor dry: Prevent cracking
Produces spherical, free-flowing particles: Fluidized
High and uniform drying rate: Fluidized (uniform heat exposure)
Used for fluids: Spray drying
Spray dryin, Congealing : penumatic dryer
For heat-sensitive materials; used in tablets & capsules: Spray drying
For taste masking & sustained-release: Chilling spray
High speed & temperature, short time: Flash Dryers
Uses lyophilization/sublimation: Freeze drying
Used for plasma, blood, vaccines: Freeze drying
Flash dryer: It consists of Freez +microwave
---
Freeze Drying Details
Pre-freezing: Avoid foam formation
Rotary pumps: Reduce pressure
Primary drying: Remove unbound water via sublimation (latent heat)
Secondary drying: Remove bound water
---
Microwave Drying
Converts energy to internal heat
Offers rapid heat and drying
Turns moisture into vapor (not liquid)
Does not depend on mass concentration gradients or slow liquid diffusion
__
Static_Bed
tray
bulk motion no particles movement
exposed surface
--#drying
🙂↔️👇🏻
A) Static-Bed System Dryers (Tray)
b) Moving-Bed System Dryers (Turbo-Tray)
C) Fluidized-Bed System Dryers
D) Pneumatic dryers It consists of 🙂↔️👇
Spray congealing
Flash Dryers
Spray Drye
مهمات
Fluidized bed dryer has --------than static bed dryer.
A- Rapid heat and mass transfe
non movement of the solid particles
Tray dryer
---
Non-Thermal Drying Methods
Expression
Extraction
Absorption
Adsorption
Desiccation
---
Psychrometry Basics
Psychrometry determines vapor concentration and carrying capacity of gas.
Water vapor in a gas = humidity.
CDE curve = saturation humidity = 100% RH.
FCA = 78 grains water/pound dry air.
Dew point (60°F) = temperature at which air is fully saturated.
GK = 50% relative humidity.
Wet-bulb temperature = equilibrium between heat and moisture transfer; measured by a thermometer with a wet wick.
Dry-bulb temperature = actual air temperature; measured by a standard thermometer.
---
Drying Theory
Based on heat and mass transfer.
Driving force for heat transfer = temperature differential.
---
Evaporation & Diffusion Rates
Rate of evaporation:
Rate of diffusion:
Heat transfer methods: convection, radiation, conduction.
---
How to Increase Drying Rate
Convection: increase air flow rate, raise inlet air temperature.
Radiation: increase radiation rate.
Conduction: reduce material thickness.
Air velocity: increase to boost mass transfer coefficient.
Dehumidification: lower RH to increase humidity gradient.
---
Moisture Expression in Solids
Based on wet weight or dry weight.
LOD (Loss on Drying) = (wet weight) * 100%
MC (Moisture Content) = (dry weight) * 100%
---
Drying Phases
Initial (A-B): Heating = Cooling
Point B: Surface moisture only
Constant Rate (B-C): Evaporation = Diffusion
Critical Moisture (C): Dry spots appear; drying rate drops
First Falling Rate (C-D): Drying slows down
Second Critical Point (D): Diffusion-limited drying
Second Falling Rate (D-E): Rapid drop in drying rate
Equilibrium Moisture (E): Zero drying rate; temp and moisture constant
---
Solids Drying
Crystalline solids: Easy to dry
Amorphous solids: Hard to dry
Dryers classified by heat transfer method or sample handling
---
Drying Methods & Applications
Turbo vs. Tunnel: Turbo is faster due to continuous exposure to air.
Partially suspended in gas stream: Fluidized
Used for granular materials: Fluidized
Granules in fluidized bed are neither wet nor dry: Prevent cracking
Produces spherical, free-flowing particles: Fluidized
High and uniform drying rate: Fluidized (uniform heat exposure)
Used for fluids: Spray drying
Spray dryin, Congealing : penumatic dryer
For heat-sensitive materials; used in tablets & capsules: Spray drying
For taste masking & sustained-release: Chilling spray
High speed & temperature, short time: Flash Dryers
Uses lyophilization/sublimation: Freeze drying
Used for plasma, blood, vaccines: Freeze drying
Flash dryer: It consists of Freez +microwave
---
Freeze Drying Details
Pre-freezing: Avoid foam formation
Rotary pumps: Reduce pressure
Primary drying: Remove unbound water via sublimation (latent heat)
Secondary drying: Remove bound water
---
Microwave Drying
Converts energy to internal heat
Offers rapid heat and drying
Turns moisture into vapor (not liquid)
Does not depend on mass concentration gradients or slow liquid diffusion
__
Static_Bed
tray
bulk motion no particles movement
exposed surface
--#drying
🙂↔️👇🏻
A) Static-Bed System Dryers (Tray)
b) Moving-Bed System Dryers (Turbo-Tray)
C) Fluidized-Bed System Dryers
D) Pneumatic dryers It consists of 🙂↔️👇
Spray congealing
Flash Dryers
Spray Drye
مهمات
Fluidized bed dryer has --------than static bed dryer.
A- Rapid heat and mass transfe
non movement of the solid particles
Tray dryer
❤2
Forwarded from Note s4
🔹الأرقام اللي تخص جابتر الميلنك والدراينك
🔸Coarse / size large 20-mesh
🔸intermediate / 20-200mesh
(74-840) micron
🔸Fine for particles /smaller than 200 - mesh
🔸Hammer mill used for
granulation (16-mesh) ,miling crystalline (120-mesh)
🔸Cutter mill
Horizontal rotor with 2 to 12 knives
Turning from 200 to 900
🔸Roller mile / two to five smooth roller
Two cylindrical rolls mounted horizontally
🔸Hammer Miill / using high speed rotor(10.000 rpm )
Size reduction of 20-40
🔸Fluid energy mill
At pressure of 100 to 150 pound per square inch (psi)
🔸Moisture content/more than 5%water hinder comminution and produce a sticky mass
🔸Greater than 50% / slurry or
fluid suspension
🔹جابتر الدراينك
🔺Moving bed system / rotating slowly at ( 0.1 to 1.0 ) rpm
🔺Flash dryer / velocity 3000-6000 at temperature / 300-1300 air stream
🔺Pre - freezing below or at -20 C
#drying
#milling
🔸Coarse / size large 20-mesh
🔸intermediate / 20-200mesh
(74-840) micron
🔸Fine for particles /smaller than 200 - mesh
🔸Hammer mill used for
granulation (16-mesh) ,miling crystalline (120-mesh)
🔸Cutter mill
Horizontal rotor with 2 to 12 knives
Turning from 200 to 900
🔸Roller mile / two to five smooth roller
Two cylindrical rolls mounted horizontally
🔸Hammer Miill / using high speed rotor(10.000 rpm )
Size reduction of 20-40
🔸Fluid energy mill
At pressure of 100 to 150 pound per square inch (psi)
🔸Moisture content/more than 5%water hinder comminution and produce a sticky mass
🔸Greater than 50% / slurry or
fluid suspension
🔹جابتر الدراينك
🔺Moving bed system / rotating slowly at ( 0.1 to 1.0 ) rpm
🔺Flash dryer / velocity 3000-6000 at temperature / 300-1300 air stream
🔺Pre - freezing below or at -20 C
#drying
#milling