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especially when the value vs for x=1 and

These two phrases are not directly comparable as they serve different purposes. "Especially when the value" is used to emphasize a particular condition or situation, while "for x=1 and" is used to specify a condition in a mathematical or programming context. They are not interchangeable.

Last updated: March 15, 2024 • 572 views

especially when the value

This phrase is correct and commonly used in English to emphasize a specific condition or situation.

This phrase is used to highlight a particular circumstance or condition that is significant in a given context.
  • The term is used especially when the value of economic activity in a sector or an economy can be measured or valued either at "factor cost," adding up payments  ...
  • overestimate the real strength of the relationship, especially when the value of ρ is near zero. Calculating the Product-Moment Correlation Coefficient. There are ...
  • of σx, especially when the value of N is low. Much of the time, though, there is little difference between the two forms. If we are unsure of which method to use, the ...
  • An asset with a market value less than its value listed on the company's records, especially when the value is unlikely to recover. The cash flow an impaired ...

for x=1 and

This phrase is correct in a mathematical or programming context to specify a condition where x equals 1.

This phrase is used to indicate a specific condition or constraint in mathematical equations or programming code.
  • Since (x-1)(x+4) = 0 for x=1 and x=-4 , function f is continuous for all values of x EXCEPT x=1 and x=-4 . Click HERE to return to the list of problems. SOLUTION 7  ...
  • for x<-1 and x>1 ;. f is ( $ \downarrow $ ) for -1<x<0 and 0<x<1 ;. f has a relative maximum at x=-1 , y=2 ;. f has a relative minimum at x=1 , y=-2 . FROM f'' :.
  • SOLUTION: Evaluate the expression(2x^17y)^3 for x = –1 and y = 5. for x = –1 and y = 5. Algebra -> Expressions -> SOLUTION: Evaluate the ...
  • increasing for x < −1 and for x > 1, and is decreasing for −1 < x < 1. We recover these results algebrically as well: taking the derivative of f(x) gives f (x) = 3(5x. 4. )  ...

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