Q
What role does Java play in improving application performance?

Answer & Solution

Answer: Option A
Solution:
Java's efficient runtime environment, including features like Just-In-Time (JIT) compilation and garbage collection, enhances application performance by optimizing code execution and managing memory efficiently.
Related Questions on Average

Why is Java a preferred choice for building cloud-native applications?

A). Scalability and Portability

B). Limited Integration Capabilities

C). Proprietary Licensing

D). Slow Performance

What advantage does Java offer for developers switching from C++?

A). Ease of Memory Management

B). Complex Syntax

C). Lack of Standard Libraries

D). Limited Community Support

How does Java contribute to reduced development costs?

A). Code Reusability

B). Code Duplication

C). Code Complexity

D). Code Confusion

What makes Java suitable for building high-performance server applications?

A). Multithreading Support

B). Limited Standard Library

C). Proprietary Licensing

D). Limited Community Support

Why is Java considered suitable for cross-platform development?

A). Platform Independence

B). Platform Dependence

C). Platform Compatibility

D). Platform Integration

Why is Java considered suitable for enterprise application development?

A). Scalability and Performance

B). Limited Integration Capabilities

C). Inflexible Architecture

D). High Maintenance Cost

How does Java contribute to improved code maintainability?

A). Object-Oriented Principles

B). Procedural Programming

C). Spaghetti Code

D). Copy-Paste Approach

What advantage does Java offer for developers transitioning from C#?

A). Similar Syntax and Principles

B). Different Syntax and Principles

C). Limited Interoperability

D). No Advantage

What makes Java suitable for large-scale enterprise applications?

A). Scalability and Performance

B). Limited Community Support

C). Proprietary Licensing

D). Incompatibility with Legacy Systems

How does Java contribute to code reliability?

A). Strong Type Checking

B). Weak Type Checking

C). Dynamic Typing

D). Static Typing