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Science & Technology MCQs

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181.
Which of the following data sources is likely used by an AI-powered transit system to optimize operations?
A Historical weather patterns only.
B Real-time data from sensors, GPS, and passenger feedback.
C Social media trends unrelated to transit.
D Manual surveys conducted annually.
182.
The implementation of AI in public transit can contribute to:
A Increased traffic congestion.
B Reduced carbon emissions and improved air quality.
C Higher operational costs for transit agencies.
D Decreased passenger satisfaction.
183.
AI-driven chatbots in public transit systems are typically used for:
A Driving the buses.
B Providing real-time information and passenger support.
C Designing new bus routes.
D Collecting fares manually.
184.
Which Indian city has launched its first AI-powered public transit system?
A Mumbai
B Delhi
C Bengaluru
D Chennai
185.
What is the primary goal of integrating AI into public transit systems?
A To increase the number of private vehicles on the road.
B To optimize routes, schedules, and passenger flow for efficiency.
C To reduce the frequency of public transport services.
D To encourage manual operation of transit vehicles.
186.
The application of CRISPR-based gene editing for genetic blindness is an example of:
A Traditional surgery.
B Antibiotic treatment.
C Precision medicine.
D Palliative care.
187.
Which of the following is a potential outcome observed in patients undergoing CRISPR-based gene editing for genetic blindness?
A Complete loss of vision.
B Improved visual acuity and light sensitivity.
C Development of new genetic mutations.
D Increased risk of other eye diseases.
188.
The CRISPR-based therapy for genetic blindness involves delivering the gene-editing system directly into:
A The bloodstream.
B The brain.
C The eye.
D The liver.
189.
Inherited Retinal Diseases (IRDs) are caused by:
A Bacterial infections.
B Viral infections.
C Mutations in specific genes affecting the retina.
D Environmental factors only.
190.
What is CRISPR-Cas9 primarily used for in the context of genetic diseases?
A To synthesize new proteins.
B To precisely edit faulty genes.
C To deliver drugs to specific cells.
D To diagnose genetic disorders.
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